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Soil Conservation Sustainable Agriculture. Major Agricultural Problems-SOIL  Erosion = loss of soil particles due to water and wind action  Over-cultivation.

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Presentation on theme: "Soil Conservation Sustainable Agriculture. Major Agricultural Problems-SOIL  Erosion = loss of soil particles due to water and wind action  Over-cultivation."— Presentation transcript:

1 Soil Conservation Sustainable Agriculture

2 Major Agricultural Problems-SOIL  Erosion = loss of soil particles due to water and wind action  Over-cultivation = repeated cultivation and crop growing, faster than soil can regenerate  Over-grazing = grazing of grassland faster than it can be regenerated  Deforestation = loss of forest cover  Salinization = increase in salt content of the soil, usually due to improper irrigation practices

3 DEFORESTATION

4 Result of overgrazing OR overcultivation

5 EROSION Results in coarse soils with poor nutrient quality WHY??  Clay and silt particles, along with humus, are removed first therefore water and nutrient-holding capacities are poor  Ultimate result of continued erosion is desertification, which leads to declining productivity on a given plot of land (You don’t need to know the types of erosion.)

6 Solutions to Soil Loss Problems Conservation tillage (low or no-till farming) Terracing Contour farming Shelter belts (leave a row of trees around) Agroforestry Strip cropping/polyculture Crop rotation (more for fertility than loss)

7 NO-TILL FARMING

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9 TERRACING

10 CONTOUR FARMING

11 Intercropping

12 Intercropping

13 Agroforestry

14 Fertilizers: Animal Manure Green Manure Compost GREEN OPTIONS for adding nutrients:

15 Big Picture  Industrial agriculture is cheaper – but the inputs and outputs are not sustainable  Polyculture MORE productive than monoculture – more labor intensive but many ecological benefits, such as?  Increasing food production on one plot of land means another isn’t cleared

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18 Reasons for eating less meat:  More than one third of the world's grain harvest is used to feed industrially-farmed livestock. 1  The total cattle population for the world is approximately 1.3 billion occupying some 24% of the usable land of the planet 2  Some 70 to 80% of grain produced in the United States is fed to livestock 3  Half the water consumed in the U.S. is used to grow grain for cattle feed. 4  A gallon of gasoline is required to produce a pound of grain- fed beef. 5  80 million metric tons of CH 4 emitted per year (20% of US CH 4 emissions from cows) 6

19 Global Grain Production

20 Argentina’s Experiment

21 Eight-year cycle (5-6 cattle, 2-3 corn/wheat/soy)

22 Polyface Farm Shenandoah Valley Virginia

23  YouTube - Polyface farm YouTube - Polyface farm  YouTube - GROWING POWER - Will Allen YouTube - GROWING POWER - Will Allen

24 Notes on stats:  Lester Brown, Michael Renner, Brian Halweil Vital Signs 2000, (World Watch Institute) p. 34; Frances Lappe Moore, Joseph Collins, Peter Rosset, World Hunger: 12 Myths, (Food First and Grove Press, Second Edition, 1998) pp.8, 180; Richard Robbins Global Problems and the Culture of Capitalism (Allyn and Bacon, 1999), p. 220  See for example: United Nations Food And Agriculture Organization statistics database on livestock numbers. Note the numbers are from 2001.livestock numbers Devinder Sharma also highlights an interesting point that, “Around 1.5 billion marginal farmers in the developing world live in virtual penury” and yet, “cattle in the industrialised world are reared in luxury, with a cow in the developed world receiving subsidies that amount to almost twice the annual income of an average Third World farmer.” For years, many in the Third World have argued that the North heavily subsidizes and protects it agricultural industry while at the same time telling the poor to liberalize, which has resulted in poverty due to pushing down commoditiy prices and due to lack of market access for the poor. (Above link is from “Western cow vs Southern farmer: The absurdity of inequality”, InfoChangeIndia.org, April 2002)highlights Also see What Price Beef? by Marguerite Hampton, with a list of many, many stats, including statistics on how much land, water, energy and so on is required to support cattle, and the various effects.What Price Beef?  Robbins, p.220; Vandana Shiva, Stolen Harvest (South End Press, 2000), pp. 70-71.  Ibid Robbins, p.220  Ibid  http://www.darrolshillingburg.com/GardenSite/Images/webImages/3sisters/3sistersMain.jpg http://www.darrolshillingburg.com/GardenSite/Images/webImages/3sisters/3sistersMain.jpg  http://www.epa.gov/rlep/faq.html http://www.epa.gov/rlep/faq.html


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