通过农艺管理实践实现土壤碳固存

S. K. Tanveer, Xingli Lu, Shamim-ul-Sibtain Shah, I. Hussain, Muhammad Sohail
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引用次数: 7

摘要

不当的土壤和作物管理做法导致了土壤碳的流失。在世界范围内,约1417 Pg的土壤碳储存在土壤1米深度,而456 Pg的土壤碳储存在地下植被和死有机质中。健康的土壤有助于应对气候变化,因为有机物质含量高的土壤具有更高的二氧化碳固存潜力。造成土壤碳流失的主要农艺做法包括不适当的耕作操作、作物轮作、残留物管理、施肥,以及同样不使用或较少使用有机肥,这些都导致土壤有机质以二氧化碳的形式流失。农业部门在全球温室气体(co2、n2o和ch4)排放总量中所占的份额约为25-30%。研究表明,通过适当的耕作操作,采用这种可以改善土壤有机质的作物轮作,同样施用有机肥,即FYM、堆肥和其他有机改良剂,如腐植酸、蚯蚓堆肥等,可以有助于土壤固碳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soil Carbon Sequestration through Agronomic Management Practices
Improper soil and crop management practices have resulted in loss of soil carbon. Worldwide, about 1417 Pg of soil carbon is stored in first meter soil depth, while 456-Pg soil carbon is stored in above–below ground vegetation and dead organic matter. Healthy soils can be helpful in combating the climate change because soils having high organic matter can have higher CO 2 sequestration potential. Main agronomic practices responsible for soil carbon loss include improper tillage operations, crop rotations, residue management, fertilization, and similarly no or less use of organic fertilizers that have resulted in the loss of soil organic matter in the form of CO 2 . The share of agriculture sector in the entire emissions of global GHGs in the form of CO 2, N 2 O, and CH 4 is about 25–30%. Studies have shown that by adapting proper tillage operations, the use of such kind of crop rotations that can improve soil organic matter and similarly the application of organic fertilizers, i.e., FYM, compost, and other organic amendments such as humic acid, vermicompost, etc., can be useful in soil carbon sequestration.
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