How to Curb Discharge of the Most Potent Greenhouse Gas: 50-Percent Reduction in Meat Consumption and Emissions

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How to Curb Discharge of the Most Potent Greenhouse Gas: 50-Percent Reduction in Meat Consumption and Emissions

(editor's note: Mainstream science has had a lot of challenges in recent years as they struggle to keep up with changes in social mores. Perhaps the changes we are seeing now are a result of the personal Awakenings of the scientists themselves!    ~All my Love, Boo)
 
In June 2010 evolving scientists tried to introduce their peers to the concept of decreasing global greenhouse emissions by changing our consumption of meat and dairy products. This was presented in a paper, "Conscious Choice of Food Can Substantially Mitigate Climate Change, Research Finds." (http://www.sciencedaily.com/releases/2010/06/100628075744.htm)
 
In January 2011 the subject of a climate tax corresponding to €60 / ton of CO2eq on meat and milk was hoped to reduce greenhouse gas emissions in Europe by around 7%. Read more about "Climate Tax On Meat and Milk Results in Less Greenhouse Gases" at (http://www.sciencedaily.com/releases/2011/01/110125084523.htm)
 

 

How to Curb Discharge of the Most Potent Greenhouse Gas: 50-Percent Reduction in Meat Consumption and Emissions

 


Cleaning out manure. The nitrogen contained in fertilizers and manure is broken down by microbes that live in the soil and released into the atmosphere as N2O. (Credit: © corepics / Fotolia)

ScienceDaily (Apr. 13, 2012) — Meat consumption in the developed world needs to be cut by 50 percent per person by 2050, and emissions in all sectors -- industrial and agricultural -- need to be reduced by 50 percent if we are to meet the most aggressive strategy, set out by the Intergovernmental Panel on Climate Change (IPCC), to reduce the most potent of greenhouse gases, nitrous oxide (N2O).

 

The findings are results of a study by Dr. Eric Davidson and are published April 13 in IOP Publishing's Environmental Research Letters. Dr. Davidson, who is President and a Senior Scientist at the Woods Hold Research Center in Massachusetts, demonstrates the magnitude of changes needed to stabilize N2O concentrations in the atmosphere.

 

N2O is the third highest contributor to climate change behind carbon dioxide (CO2) and methane (CH4); however, it poses a greater challenge for mitigation since nitrogen is an essential element for food production. It is also the most potent of these three greenhouse gases, as it is a much better absorber of infrared radiation. But total anthropogenic emissions are about 6 million metric tons of nitrogen as N2O, compared to 10 billion metric tons of carbon as CO2.

 

The main sources of N2O in the atmosphere are due to the spreading of synthetic nitrogen fertilizers onto agricultural soils and the use and storage of livestock manure. The nitrogen contained in fertilizers and manure is broken down by microbes that live in the soil and released into the atmosphere as N2O. In order to reduce emissions, it will be necessary to apply certain changes to the food production process.

 

Dr. Davidson believes that this can be achieved through improved management of fertilizer and manure sources, as well as through reduction of the developed world's per capita meat consumption that will relieve pressure on fertilizer demand and reduce growth in the amount of manure being produced. "We have the technical know-how and the tools to greatly improve efficiencies of fertilizer use in agriculture," states Davidson, "although several economic and political impediments often stand in the way of their adoption."

 

In a draft of the IPCC's Fifth Assessment Report, four scenarios, known as representative concentration pathways (RCPs), have been adopted, and these represent possible means of reductions for a number of greenhouse gases. Dr. Davidson evaluated the scale of changes needed to meet the predicted N2O pathways.

 

Three of the IPCC's less aggressive scenarios could be met by reducing meat consumption, improving agricultural practices, or reducing emissions from industry. The most aggressive scenario, where atmospheric N2O concentrations stabilize by 2050, can only be met if a 50 percent reduction, or improvement, is achieved for each of the above.

 

To make these calculations, Dr. Davidson relied on data provided by the Food and Agricultural Organization, which assume that the global population will increase to 8.9 billion by 2050 and the daily calorific intake per capita will increase to 3130 kcal. They also assume that the average meat consumption of each person in the developed world will rise from 78 kg per year in 2002 to 89 kg per year in 2030 and from 28 kg per year in 2002 to 37 kg per year for each person in the developing world.

 

Assessing the likelihood of reducing meat consumption in the developed world by 50 percent, Davidson said, "If you had asked me 30 years ago if smoking would be banned in bars, I would have laughed and said that would be impossible in my lifetime, and yet it has come true. Similarly, there would be beneficial health benefits for most Americans and western Europeans to stop 'supersizing' and rather to reduce portion sizes of red meat."

 

Are such changes possible for diet? "That will depend," says Davidson, "not only on education about diet, but also on prices of meat. Some agricultural economists think that the price of meat is going to go way up, so that per capita consumption will go down, but those are highly uncertain projections."

 

Story Source:

http://www.sciencedaily.com/releases/2012/04/120413100859.htm

The above story is reprinted from materials provided by Woods Hole Research Center, viaNewswise.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.

 

A Message from the Elementals:
How exciting to see more widespread acceptance of the detriment of meat consumption among humans. We realize that for some this is a "no-brainer" but for others it seems "unnatural."
 
In a transitionary period we ask for continued efforts to build loving and ethical methods of treatment for those animals you choose to breed simply for their flesh.
Part one of this transition will assist the animals themselves to live a better life that is surrounded by caring humans rather than automated feeders and killing machines.
Part two of this transition will enable human meat-eaters to develop a closer relationship with our children.  To see them in a new gentle and loving light.
Both of these together will lead to the next phase when it becomes globally understood that meat and dairy consumption is no longer necessary or healthy for the new human body and mind.
 
Continue to be as gentle and loving in your dealings with human carnivores as you are with everything else, and view this scientific paper as further proof that our world is indeed healing on so many levels!
~The Elementals (14 April, Year of the Light)