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Biochar: Agronomic and environmental potential in Brazilian savannah soils

机译:生物炭:巴西大草原土壤的农业和环境潜力

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> face="Verdana, Arial, Helvetica, sans-serif" size="2">Due to the high activity of microorganisms, the loss of soil organic matter is high in tropical regions. This loss becomes even greater if the soil is managed improperly or when there is no technology that leverages the permanence of the soil carbon by maintaining appropriate levels of organic matter, providing chemical, physical and biological soil improvements and contributing to reduce CO2 emissions to the atmosphere. Due to its aromatic structure, biochar is a highly stable form of carbon in the soil that may contribute to the reduction of greenhouse gas emissions, such as CO2, N2O and CH4, and act as a soil conditioner, improving the physical and chemical properties of the soil. Biochar may also result in increased productivity due to the improvement of soil attributes or a possible electrophysiological effect. Research over the past decades has demonstrated the potential of biochar as a soil conditioner, improving fertility and nutrient-use efficiency, in addition to maximising the productivity of crops, such as soybean and rice.
机译:> face =“ Verdana,Arial,Helvetica,sans-serif” size =“ 2”>由于微生物的高活性,热带地区土壤有机质的损失很高。如果对土壤的管理不当,或者没有任何技术可以通过保持适当的有机质水平,提供化学,物理和生物土壤改良并有助于减少CO 2来利用土壤碳的持久性,那么这种损失将变得更大。 排放到大气中。由于其芳香结构,生物炭是土壤中碳的高度稳定形式,可能有助于减少温室气体排放,例如CO 2 ,N 2 O和CH 4 ,并充当土壤改良剂,改善土壤的物理和化学性质。由于土壤特性的改善或可能的电生理效应,生物炭还可以提高生产率。过去几十年的研究表明,生物炭除了可以最大程度提高大豆和水稻等农作物的生产力外,还具有潜在的土壤改良剂,改善肥力和养分利用效率的潜力。

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