Manage Your Attention

“There are things that attract human attention, and there is often a huge gap between what is important and what is attractive and interesting." - Yuval Noah Harari
Observations of a Non-Scientist about Sustainable Living, Renewable Energy and the Power of the Sun.

Get Organized

WHEN SPIDERS UNITE THEY CAN TIE DOWN A LION.
-Ethiopian proverb

Save some for the next guy.


“Earth provides enough to satisfy every man’s need, but not every man’s greed.”
- Mahatma Gandhi

Friday, October 16, 2015

Virus could boost Solar Cell Efficiency

 



Nature World News ‏@NatureWorldNews 6 hours ago
Genetically Engineered Virus Could Boost Solar Cell Efficiency, New Study Shows [VIDEO]  




Tuesday, October 6, 2015

CLEARING THE WAY FOR SOLAR


2013

TODAY’S STUDY: CLEARING THE WAY FOR SOLAR



A Beautiful Day in the Neighborhood; Encouraging Solar Development through Community Association Policies and Processes

Philip Haddix, June 2013 (The Solar Foundation)

Abstract

Community associations play a vital role in protecting a homeowner’s investment in their residence and property. In the case of solar energy, association covenants, conditions, and restrictions (CC&Rs) and architectural guidelines can dissuade some owners from pursuing an opportunity to enhance the value of their property while reaping important environmental benefits. Recognizing this, many state legislatures have enacted “solar rights” policies limiting associations’ ability to prohibit or restrict solar energy devices. Often, these state-level provisions are a necessary, but not in themselves sufficient, means of ensuring homeowners have access to solar energy and its benefits. Fortunately, there are a number of relatively simple actions an association can take to encourage solar development without further ceding their authority to impose and enforce rules designed to protect the value and quality of the communities they govern. This guide, written for association boards of directors and architectural review committees, discusses the advantages of solar energy and examines the elements of state solar rights provisions designed to protect homeowner access to these benefits. It then presents a number of recommendations associations can use to help bring solar to their communities, including: (1) improving processes and rules through understanding the technical aspects of solar energy and how restrictions can negatively affect a system’s performance; (2) improving the clarity and specificity of association solar guidelines and making them easily accessible to homeowners, and; (3) convening stakeholder meetings to produce practical guidelines that accurately reflect the needs and values of the community.




I. Introduction

Community associations play a vital role in protecting a homeowner’s investment in their residence and property. Through established rules and guidelines governing whether and how certain activities can take place in the communities they manage, associations work to protect and enhance property values and ensure residents are able to enjoy a high quality of life. In the case of solar energy, however, the covenants, conditions, and restrictions (CC&Rs) limiting residents’ rights of ownership can have the opposite effect – depriving homeowners of an opportunity to enhance the value of their property, preventing them from fully embracing a clean energy technology that helps protect human health and the environment, and negatively impacting the economic value of their investment in an alternative means of meeting their energy demand. Given this, several states have adopted measures restricting or clarifying the restrictions associations may place on solar energy systems in their communities. On their own, these state laws (or “solar rights provisions”) are often not sufficient for striking the balance between association and homeowner interests required to allow solar energy to flourish in these communities. Fortunately, there are a few relatively simple actions associations can take to help facilitate solar development while allowing them to continue to regulate activities that might threaten the value or enjoyment of the communities they govern. This guide provides communities with straightforward recommendations and resources designed to reduce association-based barriers to solar development. Because state solar rights provisions (where they apply) influence which actions an association is permitted to take, a significant portion of this guide is dedicated to examining, classifying, and understanding these laws. Before delving into these topics, however, it is important to understand the basics of solar energy and the benefits it can bring.


click to enlarge

II. Solar Energy: Basics, Benefits, and Barriers

The Opportunity

Association-governed communities hold immense potential for solar energy development. According to the Community Associations Institute, associations represent over 25 million housing units. Of these, approximately 13 million (52%) are structures most suitable for residential solar installations – such as townhouses and homes in gated communities or subdivisions (i.e., properties governed by homeowners associations as opposed to condominiums or cooperatives).2 If only 5% of these homes were to invest in an average-sized residential solar energy system, it would add 3.3 gigawatts (GW) of clean power capacity to the electric grid – as much solar energy as was added in the entire U.S. in 2012.3 This figure represents an annual reduction in carbon dioxide (CO2) emissions of over 6 million tons,4or the equivalent of taking over 1.1 million vehicles off the road.5

Photovoltaic (PV) arrays are by far the most common form of residential solar installation. These systems collect photons from the sun and convert the energy they contain into useful solar electricity. The fundamental unit of a PV array is a solar cell, composed primarily of a semiconductor material, where the conversion of light to electricity takes place. As the output of these cells is relatively small they are packaged together into larger units called modules (or panels), which in turn are combined to form PV arrays. Apart from the PV modules, there are a number of “balance of system” components required for the array to function – including inverters, mounting or racking equipment, disconnect switches, combiner boxes, and wires and connectors.i Figure 1 below provides a basic illustration of how these components fit together to form a residential solar electric system.


click to enlarge

The Benefits of Solar Energy

Solar energy, like many renewable energy technologies, is highly regarded for its ability to produce electricity with limited environmental impacts. A national poll, conducted in fall 2012, showed that over 90% of Americans support solar energy development.6 Despite this strong level of support, many may not be fully aware of the broad range of benefits solar energy provides or that residential solar energy is a highly advantageous application of the technology…

Association Motivations to Restrict Solar

Despite the value of these benefits and the availability of the technological means to obtain them, solar energy continues to face significant barriers (both public and private) at the local level. In community and homeowners associations, these barriers typically take the form of CC&Rs and guidelines limiting solar development. It is important to keep in mind, however, that an association is not necessarily acting arbitrarily in developing and enforcing these restrictions. In fact, there are a number of legitimate reasons an association would want to restrict solar energy development in the communities they govern. As later sections of this guide will show, it is possible for a solar-savvy association to develop carefully crafted and clearly worded guidelines that promote solar energy development while protecting other community interests, including:

Community Aesthetics

Planned communities are often designed with a particular aesthetic theme or appeal in mind. Subsequent development or property improvements that are incongruous with established community aesthetics can diminish property values or threaten owners’ ability to use and enjoy their property. Prioritizing aesthetics over solar development often means restricting a solar energy system’s size, placement, tilt, or orientation (or all of these). As discussed in Section IV of this guide, such restrictions can have a negative impact on a solar array’s electricity production, which in turn reduces the economic value of the solar investment.


click to enlarge

Tree Preservation and Planting

Tree coverage can not only contribute to a community’s aesthetic appeal, but can provide important environmental and economic benefits as well. Trees absorb carbon dioxide (CO2), a harmful greenhouse gas, and help trap other pollutants that can threaten human health. These and other plants help manage stormwater runoff and reduce soil erosion. Shade produced by trees can increase comfort both inside the home (reducing the amount of sunlight entering through windows – thereby helping to manage cooling demands) and outdoors. Unfortunately, shade from trees can block a solar collector’s access to sunlight and impair its ability to function as designed.

Health and Safety

Associations may also wish to control the placement of solar energy systems in order to ensure residents’ health and safety. Fortunately, industry certifications, product safety standards, and local and national codes governing electrical and structural work have greatly reduced the need for associations to assume this responsibility.

III. Solar Rights Provisions

The economic feasibility of a homeowner’s investment in solar energy hinges on the amount of solar electricity a system is able to produce, which in turn depends upon the amount of solar radiation (i.e., sunlight) the system collects. As noted above, the control some CC&Rs give to associations over whether and how a solar energy system can be installed can negatively impact a system’s access to sunlight and result in a significant reduction in the value of the homeowner’s investment. Recognizing this, many states have chosen to ensure solar access through legislation containing either a provision protecting solar rights –the ability of a homeowner to install a solar energy system on his or her property – or allowing for the creation of solar easements, which are legally binding agreements that protect a system from future obstructions.

Solar rights provisions target public and/or private prohibitions or restrictions on the installation of solar energy systems, and are therefore the aspect of solar access law of greatest interest (or concern) to community and homeowners associations. As of the writing of this guide, 22 states have adopted solar rights provisions that expressly limit (to varying degrees) associations’ abilities to exercise control over solar energy installations through their CC&Rs.

Common Elements

Solar rights provisions pertaining to community or homeowners associations vary significantly between states. Some add only a few lines of broad language to existing state statutes, while others are much more specific on which policies or practices are permissible and on the roles and responsibilities of the parties to which the laws apply. Despite this diversity, a review of current solar rights provisions reveals a number of common elements that help protect citizens’ rights to go solar.


click to enlarge

Statement of Legislative Intent…Voiding Prohibitions Against Solar…Allowable Restrictions…Applicability to Structures…Awarding of Attorney’s Fees…Grandfathering Clause…HOA Policy Creation Mandate…No Avoidance or Delay…Provisions for Ground Mounted Systems…

Typology of Solar Rights Provisions…Type I: No Limits on Restrictions…Type II: Undefined “Reasonable” Restrictions…Type III: Qualified “Reasonable” Restrictions…Type IV: Quantified Restrictions…

How Associations Can Facilitate Solar Development…Advance Community Education on Solar Energy…Array Size…Array Orientation...Array Tilt…System Shading…Clearly Define what is Permissible…Community Aesthetics…Tree Preservation and Planting…Health and Safety…


click to enlarge

Coproduce a Lasting Solar Solution

While borrowing or adapting language from existing examples of solar guidelines will suffice for some associations, others may have difficulty in identifying current standards that both conform to applicable solar access laws and reflect the unique values and preferences of the communities they govern. In these cases, associations may wish to convene a meeting of relevant stakeholders in order to coproduce a set of design guidelines for solar. Such gatherings would provide a forum for community members to communicate their values and preferences, forming the basis for standards that are meaningful and uncontroversial. These ideas can then either be tempered or strengthened through the participation of a diverse set of professionals whose expertise will help define the limits of what is technically practical, legally permissible, or most impactful in terms of balancing competing interests and serving the needs of the community.

Though it may be difficult to bring all stakeholders to the table, there are several advantages to taking a coproduction approach. Obtaining the direct participation of a wide variety of stakeholders helps ensure the standards produced by the effort reflect the diverse perspectives of the groups they impact. Such a strategy allows all stakeholders to have access to the same relevant information and can help break down communication barriers between homeowners and association representatives through its encouragement of face-to-face discussions…


Source: http://www.NewEnergyNews.net/


B.C. hunter wants to help save these bears

Friday, October 17, 2014

Global Warming


We haven't hit the global warming pause button

Recent articles about a global warming 'pause' miss that the planet as a whole is still rapidly warming



                          90 percent of global warming heats the oceans. Photograph: Alamy



When you hear the term "global warming," do you think of the warming of air temperatures at the Earth's surface, or the warming of the planet as a whole?

Only about 2 percent of the planet's overall warming heats the atmosphere, so if we focus only on surface air temperatures, we miss 98 percent of the overall warming of the globe. About 90 percent of the warming of the planet is absorbed in heating the oceans. However, until the past few years, our measurements of ocean temperatures (especially of the deep oceans) were somewhat lacking. Our measurements of surface air temperatures were much more accurate, and so when people spoke of "global warming," they tended to focus on air temperatures.

In the 1980s and 1990s when air temperatures were warming in step with the overall warming of the planet, that was fine. However, over the past decade, the warming of surface air temperatures has slowed. At the same time, the overall warming of the planet has continued, and if anything it has accelerated. This has been difficult to reconcile for those who previously focused on surface air temperatures – what do we say about "global warming" now?

The result is a spate of articles from the New York Times, Washington Post, The New Republic, and Der Spiegel, all of which get most of the facts right (including noting the warming of the oceans), but that all begin from the premise that "global warming" has slowed. It would be more accurate to say that global surface air warming has slowed, but the overall warming of the Earth's climate has sped up.

                                            Global heat accumulation from Nuccitelli et al. (2012)


This is the conclusion of several papers published in the past year, including studies led by Sydney Levitus of the National Oceanic and Atmospheric Administration (NOAA), Magdalena Balmaseda of the European Centre for Medium Range Weather Forecast, Virginie Guemasof the Catalán Institute of Climate Science, and myself. When the warming of the Earth's entire climate system is considered, global warming continues to rise at a rate equivalent to about 4 Hiroshima atomic bomb detonations per second, faster over the past 15 years than the prior 15 years.

The small fraction of that warming that's expressed by changes in surface air temperature does appear to have slowed over the past decade. Research by Masahiro Watanabe of the Japanese Atmosphere and Ocean Research Institute suggests this is mainly due to more efficient transfer of heat to the deep oceans. Consistent with model simulations led by NOAA's Gerald Meehl, Watanabe finds that we sometimes expect "hiatus decades" to occur, when surface air temperatures don't warm because more heat is transferred to the deep ocean layers.

Research on the causes of slowed surface air warming is of course ongoing. The question remains how much other factors have contributed to the surface warming slowdown. For example, aerosols (particulates released from volcanoes and from burning coal and diesel that cause cooling by reflecting sunlight) and low solar activity over the past decade likely played a role as well. However, Watanabe's research suggests that these factors can't explain most of the slowed surface warming, which his study attributes mainly to a more efficient transfer of heat to the deep oceans.

Unfortunately that isn't a permanent solution for those of us living on the Earth's surface. A post from a political blog for The Economist naively argued that we should just wait a couple of decades to see if surface air warming resumes. The Watanabe, Guemas, Balmaseda, and Meehl research teams all concluded that the faster warming of the oceans is only a temporary effect. Sooner or later the cycle is bound to reverse, at which point we will experience accelerated global surface air warming when the ocean heat comes back to haunt us. We can't escape the physical reality that as long as we continue to increase the greenhouse effect, it will continue to trap more and more heat, and the planet will continue to warm.

Even if the climate is not quite as sensitive to the increased greenhouse effect as current best estimates suggest, we're still not doing enough to reduce greenhouse gas emissions if we want to avoid dangerous and potentially catastrophic climate change. Taking a 'wait and see' approach for another decade or two, as recommended by the Economist political blog, would be a recipe for certain disaster. Fortunately that recommendation is at odds with the approach suggested by The Economist's correspondents, who agree that in any case we're not doing nearly enough to decarbonize the economy if we want to avoid dangerous climate change.

The key take-home point is that we now have better measurements of ocean and global heat accumulation. We no longer have to settle for focusing on the 2 percent of global warming represented by surface air temperatures. Consider the analogy offered by Greg Laden, that the planet is a dog and surface temperatures are his tail. In the past we only had a GPS locator on his tail. It wags around a lot, sometimes accurately representing the movement of the dog, sometimes not. Now we've got a second GPS locator on his body – should we continue focusing on the movement of the tail for old times' sake, or should we shift our focus to the more representative measurements?

Ideally people will begin using the term "global warming" to refer to the planet's overall heat accumulation. Or use the term "global heating" or "climate change" or "climate disruption." Whatever term is chosen, we need to stop misleading people by saying that global warming has "paused." The overall warming of the planet has not and will not pause until we stop increasing the greenhouse effect through our reliance on fossil fuels. Until we hit that 'pause button,' the warming will only continue to grow.


Source: http://www.guardian.co.uk/environment/climate-consensus-97-per-cent/2013/jun/24/global-warming-pause-button

Dana Nuccitelli Monday 24 June 2013 04.09 BSTguardian.co.uk

The World’s Deadliest Drug: Inside a Krokodil Cookhouse




Russia, Yekaterinburg. A stage of  Krokodil's preparation. Pills of codeine are crushed and mixed with iodine, hydrochloric acid and other chemicals.
Emanuele Satolli—Parallelozero

A stage of krokodil preparation. Pills of codeine are crushed and mixed with iodine, hydrochloric acid and other chemicals.




A stage of Krokodil's preparation.
Emanuele Satolli for TIME

A stage of krokodil's preparation.


Alexey is injecting the Krokodil.  The effect of the drug is about 40 minutes.
Emanuele Satolli for TIME
Alexey injects krokodil. The effect of the drug lasts about 40 minutes.
 

About a decade ago, Russian doctors began to notice strange wounds on the bodies of some drug addicts—patches of flesh turning dark and scaly, like a crocodile’s—in the hospitals of Siberia and the Russian Far East. It didn’t take them long to discover the cause: the patients had begun injecting a new drug they called, predictably, “krokodil.” (Some accounts suggest the name was derived from one of the drug’s precursor chemicals, alpha-chlorocodide.)

Videos showing the effects of the “flesh-eating” drug—christened desomorphine when it was invented for medical use in 1932—quickly went viral online. There are now alarming stories that the monster could be at large in the U.S.


American drug-enforcement officials say fears of an imminent krokodil epidemic are overblown. But it’s hard not to be frightened of a drug that leaves a reptilian mark on its victims. Especially when it is so easy to make: an addict can cook up krokodil using ingredients and tools bought from the local pharmacy and hardware store. 

The active ingredient, codeine, is a mild opiate sold over the counter in many countries. Users mix codeine with a brew of poisons such as paint thinner, hydrochloric acid and red phosphorus scraped from the strike pads on matchboxes. The result—a murky yellow liquid with an acrid stink—mimics the effect of heroin at a fraction of the cost. 
In Europe, for example, a dose of krokodil costs just a few dollars, compared with about $20 for a hit of heroin.

But addicts pay dearly for krokodil’s cheap high. 
Wherever on the body a user injects the drug, blood vessels burst and surrounding tissue dies, sometimes falling off the bone in chunks. 
That side effect has earned krokodil its other nickname: the zombie drug. The typical life span of an addict is just two or three years.

The drug quickly became popular among Russian addicts. In 2005, the country’s counter narcotics agency reported catching only “one-off” instances of the drug; six years later, in the first three months of 2011, the agency confiscated 65 million doses, up 23-fold from two years earlier.
At its peak that year, krokodil use had spread to as many as a million addicts in Russia.

A ban on over-the-counter codeine sales that was introduced on June 1, 2012, has brought numbers down sharply, but Emanuele Satolli, an Italian photographer who has been chronicling a group of Russian addicts, says many now score that key ingredient on the black market.

For the past year, Satolli has focused on the industrial city of Yekaterinburg in the Ural Mountains, a place notorious in Russia for drug abuse, photographing about a dozen krokodil addicts.

The krokodil epidemic may have peaked in Russia, but the drug’s use has already been reported elsewhere. 

In October, a report published online in the American Journal of Medicine confirmed the case of a 30-year-old addict in Richmond Heights, Mo., whose finger “fell off” and whose skin began to rot after he began injecting krokodil. 

The monster has crossed the ocean.

Emanuele Satolli is an Italian photojournalist based in Milan.


Simon Shuster is TIME’s Moscow correspondent. Follow him on Twitter @shustry.


Translation by Eugene Reznik.
















Wildlife Art

 Curtis Wilson Canadian Native Artist, Campbell River .




 http://bianson.files.wordpress.com/2010/09/mg_8131.jpg?w=590&h=471

 

 

 


 



 

 

 2013 Projects | Curtis Wilson Canadian Native Artist, Campbell River ..



 
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2013 Projects | Curtis Wilson Canadian Native Artist, Campbell River


 
 Soft Island Above Water" Creamy Lotus Blossoms and Reflection





 

vancouver island marmot the vancouver island marmot is one of the most ...



 





Story of how the Raven stole the sun and his once white feathers were ... More









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Story of how the Raven stole the sun and his once white feathers were ... More



Vancouver Island Bird Photos comox valley birds wildlife estuary ... More



Geoffrey West on COMPLEXITY


Geoffrey West at the FQXi SETTING TIME ARIGHT conference, an interdisciplinary meeting investigating the nature of time.



Geoffrey West: The surprising math of cities and corporations

http://www.ted.com Physicist Geoffrey West has found that simple, mathematical laws govern the properties of cities -- that wealth, crime rate, walking speed and many other aspects of a city can be deduced from a single number: the city's population. In this mind-bending talk from TEDGlobal he shows how it works and how similar laws hold for organisms and corporations.




Thursday, October 16, 2014

Rethinking the Meat-Guzzler


This article was published in January, 2008 but the issues remain pretty much the same now.

........................

Livestock’s High Energy Costs

THE WORLD

Rethinking the Meat-Guzzler

By MARK BITTMAN



A SEA change in the consumption of a resource that Americans take for granted may be in store — something cheap, plentiful, widely enjoyed and a part of daily life. And it isn’t oil.

It’s meat.

The two commodities share a great deal: Like oil, meat is subsidized by the federal government. Like oil, meat is subject to accelerating demand as nations become wealthier, and this, in turn, sends prices higher. Finally — like oil — meat is something people are encouraged to consume less of, as the toll exacted by industrial production increases, and becomes increasingly visible.

Global demand for meat has multiplied in recent years, encouraged by growing affluence and nourished by the proliferation of huge, confined animal feeding operations. These assembly-line meat factories consume enormous amounts of energy, pollute water supplies, generate significant greenhouse gases and require ever-increasing amounts of corn, soy and other grains, a dependency that has led to the destruction of vast swaths of the world’s tropical rain forests.

Just this week, the president of Brazil announced emergency measures to halt the burning and cutting of the country’s rain forests for crop and grazing land. In the last five months alone, the government says, 1,250 square miles were lost.

The world’s total meat supply was 71 million tons in 1961. In 2007, it was estimated to be 284 million tons. Per capita consumption has more than doubled over that period. (In the developing world, it rose twice as fast, doubling in the last 20 years.) World meat consumption is expected to double again by 2050, which one expert, Henning Steinfeld of the United Nations, says is resulting in a “relentless growth in livestock production.”

Americans eat about the same amount of meat as we have for some time, about eight ounces a day, roughly twice the global average. At about 5 percent of the world’s population, we “process” (that is, grow and kill) nearly 10 billion animals a year, more than 15 percent of the world’s total.

Growing meat (it’s hard to use the word “raising” when applied to animals in factory farms) uses so many resources that it’s a challenge to enumerate them all. But consider: an estimated 30 percent of the earth’s ice-free land is directly or indirectly involved in livestock production, according to the United Nation’s Food and Agriculture Organization, which also estimates that livestock production generates nearly a fifth of the world’s greenhouse gases — more than transportation.

To put the energy-using demand of meat production into easy-to-understand terms, Gidon Eshel, a geophysicist at the Bard Center, and Pamela A. Martin, an assistant professor of geophysics at the University of Chicago, calculated that if Americans were to reduce meat consumption by just 20 percent it would be as if we all switched from a standard sedan — a Camry, say — to the ultra-efficient Prius. Similarly, a study last year by the National Institute of Livestock and Grassland Science in Japan estimated that 2.2 pounds of beef is responsible for the equivalent amount of carbon dioxide emitted by the average European car every 155 miles, and burns enough energy to light a 100-watt bulb for nearly 20 days.

Grain, meat and even energy are roped together in a way that could have dire results. More meat means a corresponding increase in demand for feed, especially corn and soy, which some experts say will contribute to higher prices.

This will be inconvenient for citizens of wealthier nations, but it could have tragic consequences for those of poorer ones, especially if higher prices for feed divert production away from food crops. The demand for ethanol is already pushing up prices, and explains, in part, the 40 percent rise last year in the food price index calculated by the United Nations’ Food and Agricultural Organization.

Though some 800 million people on the planet now suffer from hunger or malnutrition, the majority of corn and soy grown in the world feeds cattle, pigs and chickens. This despite the inherent inefficiencies: about two to five times more grain is required to produce the same amount of calories through livestock as through direct grain consumption, according to Rosamond Naylor, an associate professor of economics at Stanford University. It is as much as 10 times more in the case of grain-fed beef in the United States.

The environmental impact of growing so much grain for animal feed is profound. Agriculture in the United States — much of which now serves the demand for meat — contributes to nearly three-quarters of all water-quality problems in the nation’s rivers and streams, according to the Environmental Protection Agency.

Because the stomachs of cattle are meant to digest grass, not grain, cattle raised industrially thrive only in the sense that they gain weight quickly. This diet made it possible to remove cattle from their natural environment and encourage the efficiency of mass confinement and slaughter. But it causes enough health problems that administration of antibiotics is routine, so much so that it can result in antibiotic-resistant bacteria that threaten the usefulness of medicines that treat people.

Those grain-fed animals, in turn, are contributing to health problems among the world’s wealthier citizens — heart disease, some types of cancer, diabetes. The argument that meat provides useful protein makes sense, if the quantities are small. But the “you gotta eat meat” claim collapses at American levels. Even if the amount of meat we eat weren’t harmful, it’s way more than enough.

Americans are downing close to 200 pounds of meat, poultry and fish per capita per year (dairy and eggs are separate, and hardly insignificant), an increase of 50 pounds per person from 50 years ago. We each consume something like 110 grams of protein a day, about twice the federal government’s recommended allowance; of that, about 75 grams come from animal protein. (The recommended level is itself considered by many dietary experts to be higher than it needs to be.) It’s likely that most of us would do just fine on around 30 grams of protein a day, virtually all of it from plant sources.

What can be done? There’s no simple answer. Better waste management, for one. Eliminating subsidies would also help; the United Nations estimates that they account for 31 percent of global farm income. Improved farming practices would help, too. Mark W. Rosegrant, director of environment and production technology at the nonprofit International Food Policy Research Institute, says, “There should be investment in livestock breeding and management, to reduce the footprint needed to produce any given level of meat.”

Then there’s technology. Israel and Korea are among the countries experimenting with using animal waste to generate electricity. Some of the biggest hog operations in the United States are working, with some success, to turn manure into fuel.

Longer term, it no longer seems lunacy to believe in the possibility of “meat without feet” — meat produced in vitro, by growing animal cells in a super-rich nutrient environment before being further manipulated into burgers and steaks.

Another suggestion is a return to grazing beef, a very real alternative as long as you accept the psychologically difficult and politically unpopular notion of eating less of it. That’s because grazing could never produce as many cattle as feedlots do. Still, said Michael Pollan, author of the recent book “In Defense of Food,” “In places where you can’t grow grain, fattening cows on grass is always going to make more sense.”

But pigs and chickens, which convert grain to meat far more efficiently than beef, are increasingly the meats of choice for producers, accounting for 70 percent of total meat production, with industrialized systems producing half that pork and three-quarters of the chicken.

Once, these animals were raised locally (even many New Yorkers remember the pigs of Secaucus), reducing transportation costs and allowing their manure to be spread on nearby fields. Now hog production facilities that resemble prisons more than farms are hundreds of miles from major population centers, and their manure “lagoons” pollute streams and groundwater. (In Iowa alone, hog factories and farms produce more than 50 million tons of excrement annually.)

These problems originated here, but are no longer limited to the United States. While the domestic demand for meat has leveled off, the industrial production of livestock is growing more than twice as fast as land-based methods, according to the United Nations.

Perhaps the best hope for change lies in consumers’ becoming aware of the true costs of industrial meat production. “When you look at environmental problems in the U.S.,” says Professor Eshel, “nearly all of them have their source in food production and in particular meat production. And factory farming is ‘optimal’ only as long as degrading waterways is free. If dumping this stuff becomes costly — even if it simply carries a non-zero price tag — the entire structure of food production will change dramatically.”

Animal welfare may not yet be a major concern, but as the horrors of raising meat in confinement become known, more animal lovers may start to react. And would the world not be a better place were some of the grain we use to grow meat directed instead to feed our fellow human beings?

Real prices of beef, pork and poultry have held steady, perhaps even decreased, for 40 years or more (in part because of grain subsidies), though we’re beginning to see them increase now. But many experts, including Tyler Cowen, a professor of economics at George Mason University, say they don’t believe meat prices will rise high enough to affect demand in the United States.

“I just don’t think we can count on market prices to reduce our meat consumption,” he said. “There may be a temporary spike in food prices, but it will almost certainly be reversed and then some. But if all the burden is put on eaters, that’s not a tragic state of affairs.”

If price spikes don’t change eating habits, perhaps the combination of deforestation, pollution, climate change, starvation, heart disease and animal cruelty will gradually encourage the simple daily act of eating more plants and fewer animals.

Mr. Rosegrant of the food policy research institute says he foresees “a stronger public relations campaign in the reduction of meat consumption — one like that around cigarettes — emphasizing personal health, compassion for animals, and doing good for the poor and the planet.”

It wouldn’t surprise Professor Eshel if all of this had a real impact. “The good of people’s bodies and the good of the planet are more or less perfectly aligned,” he said.

The United Nations’ Food and Agriculture Organization, in its detailed 2006 study of the impact of meat consumption on the planet, “Livestock’s Long Shadow,” made a similar point: “There are reasons for optimism that the conflicting demands for animal products and environmental services can be reconciled. Both demands are exerted by the same group of people ... the relatively affluent, middle- to high-income class, which is no longer confined to industrialized countries. ... This group of consumers is probably ready to use its growing voice to exert pressure for change and may be willing to absorb the inevitable price increases.”

In fact, Americans are already buying more environmentally friendly products, choosing more sustainably produced meat, eggs and dairy. The number of farmers’ markets has more than doubled in the last 10 years or so, and it has escaped no one’s notice that the organic food market is growing fast. These all represent products that are more expensive but of higher quality.

If those trends continue, meat may become a treat rather than a routine. It won’t be uncommon, but just as surely as the S.U.V. will yield to the hybrid, the half-pound-a-day meat era will end.

Maybe that’s not such a big deal. “Who said people had to eat meat three times a day?” asked Mr. Pollan.


The Huge Flow of Animal Waste









Mark Bittman, who writes the Minimalist column in the Dining In and Dining Out sections, is the author of “How to Cook Everything Vegetarian,” which was published last year. He is not a vegetarian.

From: January 27, 2008


Source:  http://www.nytimes.com/2008/01/27/weekinreview/27bittman.html?_r=0







Solar Power catches on with Mongolia Nomads


Mongolia's nomads warm to solar power



Portable solar panels are helping the sunny country's nomads - without disrupting their way of life. 
Philippa H Stewart
Last updated: 16 Dec 2013


In Mongolia, often known as the land of the blue skies, the sun shines for 250 days on average each year. It beats down on the sparse plains and on the Gobi desert that spans the country's southern border with China.

It shines, even during the frigid winter days, on the hundreds of thousands of nomads who still roam the steppes, herding animals and living in dome-like tents calling gers.

About 800,000 of Mongolia's 2.8 million inhabitants still live the traditional nomadic lifestyle that has remained largely unchanged for generations. Apart from the addition of motorbikes, the occasional petrol generator, and a passing trade from intrepid tourists wanting to stay in a ger for the night, life is almost the same as that of many nomads' grandparents and great-grandparents.

Almost, but not exactly.

Dotted across the steppes, glints of light can be seen as the sun bounces off the solar panels that have been installed on the sides of gers made of felt and yak's wool. At the start of this millennium, Mongolia's herders and nomads had little or no access to modern electric power and its potential benefits.

But as of 2013, thanks to a concerted push by the Mongolian government, almost 70 percent of nomadic people have access to electricity. Bor, a herder who mainly travels around western Mongolia's Arkhangai province, is one of the people whose family benefits from portable solar home systems (SHS).

"We use it for generating the power for lighting in the ger, charging phones, we can also generate a fridge to keep food longer and we can run a television. That is very useful for us because we can get the most recent weather forecast, which is important for our work and keeping our animals safe. Before we had power it was very difficult. Now it is almost like living in the city."

The ability to charge mobile phones is also important for the herders, who often have children staying at boarding schools. "Most countryside children stay in dorms, because their parents are nomads and it is the only way they can get an education," said Bor. "We can call our children who are in the dorms and speak to them. I also have children working in Ulaanbaatar [Mongolia's capital] and I can speak to them as well. The solar panels are a very useful thing in our lives."

Capturing the sun

Access to electricity also allows families to contact emergency health-care and doctors for advice without having to make the often arduous journey to the nearest village or town.

Herder electrification can help ensure that this important community, which connects the country to its rich history, can maintain their way of life without being left behind.

- World Bank report, "Capturing the Sun in the Land of the Blue Sky"

The solar systems were distributed and installed with the help of the World Bank, after the Mongolian government's National 100,000 Solar Ger Electrification Programme ran into difficulties.

A World Bank report, Capturing the Sun in the Land of the Blue Sky, describes the difficulties faced by the Mongolian government on its ambitious project.

By 2005, five years into the plan, 30,000 families had been kitted out with an SHS, but then the programme began to stagnate. "The government of Mongolia recognised that considerably more effort was necessary not only to keep the programme on track, but to scale-up implementation in order to achieve the National 100,000 Solar Ger Electrification Program target," the report said.

In 2006, the World Bank agreed to cover half of the initial outlay costs for each family as well as after-sales maintenance, with 50 centres set up across the country, including at least one in each of its 21 provinces, so that the herders would not have to travel to Ulaanbaatar every time the solar panels needed maintenance.

Migara Jayawardena, a senior energy specialist at the World Bank and lead author of the World Bank report, told Al Jazeera that more than half the nomadic people in rural Mongolia now have access to modern electricity services thanks to the programme - exceeding the original target by 35 percent.

"The overall project structure, including the private dealers and sales and service centres, also remain in operation, and could possibly serve any herders who remain un-electrified, or those who may want to purchase upgraded SHS that can support a larger variety of appliances," he said.

Too expensive?

Despite the financial help, the solar panels can still be prohibitively expensive. The cost depends on where the SHS is produced. The most expensive are from Germany, Japan or China, and can cost from between 150,000-800,000 togrog ($88-467).

Batsaikhan, a nomadic herdsman from Huvsgul province, said cost is a major factor for him. "I would very much like to be able to have the solar panels," he said, "but I cannot because I do not have enough money. It is difficult to save when there are things we need urgently. We see them on sale and one day I want to be able to afford this."

The SHS project also offers environmental benefits to a country where the ratio of carbon dioxide emissions to economic output is ten times higher than the world average, because of the increase in mining over the past decade as the true extent of Mongolia's mineral wealth became apparent.

"SHS is a clean energy source and does not have emissions that would result from using candles, kerosene or diesel," said Jayawardena. "These latter forms of lighting would have local pollution impacts. SHS result in reduced indoor smoke pollution that often leads to respiratory and other illnesses. The utilisation of renewable energy from an early stage of modernising do provide a low emission path from the onset, which can have longer-term implications as the country moves forward."

The solar systems are slowly replacing the diesel generators used by some nomads as a means of generating power, although they are still using stoves for heating, burning wood coal and dung throughout the year.

Jayawardena's paper emphasises the importance of minimising disruption to Mongolian nomads' traditional way of life, which could easily have died out with the onset of globalisation.

Accommodating the nomadic life

"The availability of electricity has, of course, improved the quality of life of the herder communities," he told Al Jazeera. Seventy percent of the herders reported "increased productivity" as a result of access to electricity, with 90 percent using mobile phones (compared with a pre-project level of 0 percent). Seventy percent own a colour TV, which have become the most widely used source of information.

"Of course, since they are nomads, traditional electrification of fixed lines are not compatible with their nomadic ways. They would need to change their lifestyles in order to acquire a typical electricity connection," said Jayawardena.

"However, with the availability of portable SHSs that can be easily assembled and disassembled, the technology is adapting to accommodate the herder's nomadic lifestyle rather than the other way around. This enables those who wish to remain herders to continue their nomadic lifestyle while still acquiring access and the benefits of modern electricity - thereby preserving their traditional lifestyle."

Follow Philippa Stewart on Twitter: @Flip_Stewart

Philippa H Stewart
@Flip_Stewart
Qatar-based reporter, sporadic blogger, Sheffield lass, sword-wielder, has tiny hands, likes hats. Views my own, or stolen from those more intelligent than me.
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Honeybees struggling

Pathogenic plant virus jumps to honeybees
Honeybee
Honeybee. Credit: Adam Siegel
A viral pathogen that typically infects plants has been found in honeybees and could help explain their decline. Researchers working in the U.S. and Beijing, China report their findings in mBio, the online open-access journal of the American Society for Microbiology. 
 
The of bees for frequent and rare "resulted in the serendipitous detection of Tobacco Ringspot Virus, or TRSV, and prompted an investigation into whether this plant-infecting virus could also cause in the bees," says Yan Ping Chen from the U.S. Department of Agriculture's Agricultural Research Service (ARS) laboratory in Beltsville, Maryland, an author on the study.

"The results of our study provide the first evidence that honeybees exposed to virus-contaminated pollen can also be infected and that the infection becomes widespread in their bodies," says lead author Ji Lian Li, at the Chinese Academy of Agricultural Science in Beijing.

"We already know that honeybees, Apis melllifera, can transmit TRSV when they move from flower to flower, likely spreading the virus from one plant to another," Chen adds.

Notably, about 5% of known plant viruses are pollen-transmitted and thus potential sources of host-jumping viruses. RNA viruses tend to be particularly dangerous because they lack the 3'-5' proofreading function which edits out errors in replicated genomes. As a result, viruses such as TRSV generate a flood of variant copies with differing infective properties.

One consequence of such high replication rates are populations of RNA viruses thought to exist as "quasispecies," clouds of genetically related variants that appear to work together to determine the pathology of their hosts. These sources of genetic diversity, coupled with large population sizes, further facilitate the adaption of RNA viruses to new selective conditions such as those imposed by novel hosts. "Thus, RNA viruses are a likely source of emerging and reemerging infectious diseases," explain these researchers.

Toxic viral cocktails appear to have a strong link with honey bee Colony Collapse Disorder (CCD), a mysterious malady that abruptly wiped out entire hives across the United States and was first reported in 2006. Israel Acute Paralysis Virus (IAPV), Acute Bee Paralysis Virus (ABPV), Chronic Paralysis Virus (CPV), Kashmir Bee Virus (KBV), Deformed Wing Bee Virus (DWV), Black Queen Cell Virus (BQCV) and Sacbrood Virus (SBV) are other known causes of honeybee viral disease.

When these researchers investigated bee colonies classified as "strong" or "weak," TRSV and other viruses were more common in the weak colonies than they were in the strong ones. Bee populations with high levels of multiple viral infections began failing in late fall and perished before February, these researchers report. In contrast, those in colonies with fewer viral assaults survived the entire cold winter months.

TRSV was also detected inside the bodies of Varroa mites, a "vampire" parasite that transmits viruses between bees while feeding on their blood. However, unlike , the mite-associated TRSV was restricted to their gastric cecum indicating that the mites likely facilitate the horizontal spread of TRSV within the hive without becoming diseased themselves. The fact that infected queens lay infected eggs convinced these scientists that TRSV could also be transmitted vertically from the queen mother to her offspring.
"The increasing prevalence of TRSV in conjunction with other bee viruses is associated with a gradual decline of host populations and supports the view that viral infections have a significant negative impact on colony survival," these researchers conclude. Thus, they call for increased surveillance of potential host-jumping events as an integrated part of insect pollinator management programs.
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