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首页> 外文期刊>Archives of Agronomy and Soil Science >Improving cropping systems reduces the carbon footprints of wheat-cotton production under different soil fertility levels
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Improving cropping systems reduces the carbon footprints of wheat-cotton production under different soil fertility levels

机译:改善耕作制度可减少不同土壤肥力水平下小麦棉花生产的碳足迹

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A field experiment was performed to assess the carbon footprint (CF) of four cropping systems to identify the sustainable cropping system. The four cropping systems were cotton monoculture (CM), winter wheat intercropped with cotton (WIC), wheat cropping followed by transplanted cotton (WTC) and direct-seeded cotton after winter wheat harvest (WDC). The CF calculated per unit area (CFa), yield (CFy), biomass (CFb) and economic output (CFe) increased in the order CM < WIC < WTC < WDC in the low-fertility plot and WIC < WTC < WDC < CM in the high-fertility plot. The results indicated that CM was the best cropping system in the low-fertility plot and presented CFa, CFy, CFb and CFe values of 4848.14 kg CO(2)eq ha(-1) a(-1), 0.41 kg CO(2)eq kg(-1) a(-1), 0.17 kg CO(2)eq kg(-1) a(-1) and 0.06 kg CO(2)eq yen a(-1), respectively, whereas WIC was the cropping system with the lowest CFs in the high-fertility plot and presented CFa, CFy, CFb and CFe values of 14,410.70 kg CO(2)eq ha(-1) a(-1), 1.31 kg CO(2)eq kg(-1)a(-1), 0.53 kg CO(2)eq kg(-1) a(-1) and 0.34 kg CO(2)eq yen (-1)a(-1), respectively. Thus, it can be concluded that improving cropping systems provides a good option for reducing CF and consequently mitigating climate change.
机译:进行了田间试验,评估了四种种植系统的碳足迹(CF),以确定可持续种植系统。4种种植制度为棉花单作、冬小麦与棉花间作(WIC)、小麦后移栽棉(WTC)和冬小麦收获后播种棉(WDC)。单位面积CF、产量(CFy)、生物量(CFb)和经济产出(CFe)的计算顺序为低肥力样地的CM

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