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Bioenergy Cropping Systems Effects on Soil Quality

机译:生物能源种植系统对土壤质量的影响

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Bioenergy cropping systems will supply 16 billion gallons of cellulosic ethanol by the year 2022 in an attempt to reduce U.S. dependence on gasoline. To obtain long-term energy security, bioenergy systems will need to be sustainable, especially with regard to soil. Corn stover, as a bioenergy feedstock, is of great interest due to its immediate availability for harvest with minimal change to current corn-grain cropping systems. However, traditional row crop agriculture of the United States Corn Belthas reduced soil organic matter contents, an indicator of soil quality, by as much as 40 to 60% over the last 150 yr. The harvest of corn stover will directly remove a portion of the soil organic matter input, thus further reducing soil organic matter contents. The reduction in soil organic matter contents produce direct and indirect consequences unfavorable to soil quality and productivity. Therefore, the harvest of corn stover as a long-term bioenergy feedstock is detrimental to soil, impacting soil structure and stability, erodibility, A horizon depth, and physicochemical properties. Perennial biofuel systems, in contrast, have the potential to add soil organic matter to the soil, thus offering long-term enhancement of soil quality, productivity, and formation.
机译:到2022年,生物能源作物种植系统将供应160亿加仑的纤维素乙醇,以减少美国对汽油的依赖。为了获得长期的能源安全,生物能源系统将需要可持续发展,尤其是在土壤方面。玉米秸秆作为一种生物能源原料,由于可以立即收获,而对当前的玉米谷物种植系统的变化却很小,因此备受关注。然而,在过去的150年中,美国玉米带的传统行间农业减少了土壤有机质含量(土壤质量的指标),降低了40%至60%。玉米秸秆的收获将直接去除一部分土壤有机质输入,从而进一步减少土壤有机质含量。土壤有机质含量的减少会直接或间接产生不利于土壤质量和生产力的后果。因此,玉米秸秆作为长期生物能源原料的收成对土壤有害,影响土壤结构和稳定性,易蚀性,视界深度和理化特性。相反,多年生生物燃料系统具有将土壤有机质添加到土壤中的潜力,因此可以长期提高土壤质量,生产力和形成能力。

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