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Carbon footprint of dryland winter wheat under film mulching during summer-fallow season and sowing method on the Loess Plateau

机译:黄土高原旱地冬小麦地膜覆盖夏播季的碳足迹及播种方法

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摘要

To identify more carbon (C)-friendly agricultural technology, we studied the coupling impact of film mulching during summer fallow and sowing method on carbon footprint (CF) of dryland winter wheat (Triticum aestivumL.) on the Loess Plateau. From 2011 to 2014, a two-factor split block design was conducted with the following treatments: water-permeable film mulching in the summer fallow season (FM) or no mulching in the summer fallow season (FM0) with either conventional drill sowing (DS) or drill sowing beside a common film (DSF). The greenhouse gases (GHG) emissions associated with agricultural inputs were 7013.3, 5908.3, 5298.5, and 4193.5 kg CO2-eq·ha−1·yr−1for FM × DSF, FM0 × DSF, FM × DS, and FM0 × DS treatments, respectively, which contributed 80% of total GHG emissions during the winter wheat production. Fertilizer, especially P2O5fertilizer, was the largest contributor to GHG emissions from agricultural inputs. The CF of dryland winter wheat was 1.14 to 3.60 kg CO2-eq kg−1, which was the lowest under the FM × DS treatment while the largest under the FM × DSF treatment. Film mulching during summer fallow with drill sowing (FM × DS) could be a C-friendly technology for winter wheat production on the Loess Plateau.
机译:为了确定更多对碳(C)友好的农业技术,我们研究了夏季休耕地膜覆盖和播种方法对黄土高原旱地冬小麦(Triticum aestivumL。)的碳足迹(CF)的耦合影响。从2011年到2014年,采用以下处理方法进行了两因素分块设计:夏季休耕期(FM)进行透水膜覆盖,或者采用常规播种(DS)在夏季休耕期(FM0)不进行覆膜。 )或在普通胶片(DSF)旁边播种播种。对于FM×DSF,FM0×DSF,FM×DS和FM0×DS处理,与农业投入相关的温室气体(GHG)排放为7013.3、5908.3、5298.5和4193.5 kg CO2-eq·ha-1·yr-1。分别占冬小麦生产中温室气体总排放量的80%以上。化肥,特别是P2O5化肥,是农业投入物温室气体排放的最大贡献者。旱地冬小麦的CF值为1.14至3.60 kg CO2-eq kg-1,在FM×DS处理下最低,而在FM×DSF处理下最大。黄土高原冬小麦播种播种(FM×DS)的薄膜覆盖技术可能是黄土高原冬小麦生产的C友好技术。

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