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Conservation tillage increases carbon sequestration of winter wheat-summer maize farmland on Loess Plateau in China

机译:保护性耕作增加了中国黄土高原冬小麦-夏季玉米农田的固碳能力

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摘要

The idea of mitigating anthropogenic CO2 emissions by increasing soil organic carbon (SOC) is notable. However, the estimation of the net ecosystem carbon balance after conversion from conventional tillage to conservational tillage has been poorly quantified for the Loess Plateau in China. A 2-year field experiment was conducted to estimate the agroecosystem carbon balance of a winter wheat–summer maize rotation system using a full carbon cycle analysis. The results showed that a positive net ecosystem carbon balance value in the cases of rotary tillage with straw incorporation, chisel plow tillage with straw incorporation, and no tillage with straw mulching treatments. Note that a negative value was detected for the conventional moldboard plowing tillage without crop straw treatment. The conversion from conventional tillage to conservational tillage substantially enhanced the carbon sink potential from 0.84 t C ha−1 yr−1 to 2.69 t C ha−1 yr−1 in both years. Our findings suggest that the expansion of conservational tillage could enhance the potential carbon sink of the rain-fed land in China.
机译:通过增加土壤有机碳(SOC)来减轻人为CO2排放的想法是值得注意的。然而,对于中国黄土高原从常规耕作向保护性耕作转化后的净生态系统碳平衡估计,其定量化程度较差。进行了为期2年的田间试验,以使用完整的碳循环分析估算冬小麦-夏季玉米轮作系统的农业生态系统碳平衡。结果表明,在秸秆还田旋耕,秸秆还田凿耕,秸秆覆盖免耕的情况下,生态系统净碳平衡值为正。注意,未进行农作物秸秆处理的传统mold土耕作耕作的检测值为负值。从传统耕作向保护性耕作的转化将碳汇潜力从0.84 t C ha -1 yr -1 大大提高到2.69 t C ha -1 两个年份中的sup> yr −1 。我们的发现表明,保护性耕作的扩大可以增强中国雨养土地的潜在碳汇。

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