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Conservation tillage and organic farming reduce soil erosion

机译:保护耕作与有机耕作减少土壤侵蚀

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The impact of different arable farming practices on soil erosion is only partly resolved, and the effect of conservation tillage practices in organic agriculture on sediment loss has rarely been tested in the field. This study investigated rainfall-induced interrill sediment loss in a long-term replicated arable farming system and tillage experiment (the FAST trial) with four different cropping systems: (1) organic farming with intensive tillage, (2) organic farming with reduced tillage, (3) conventional farming with intensive tillage, and (4) conventional farming with no tillage. Measurements were carried out under simulated heavy rainfall events with runoff plots in 2014 (fallow land after winter wheat) and 2017 (during maize growth). Organic farming decreased mean sediment delivery compared to conventional farming by 30% (0.54tha(-1)h(-1)). This study demonstrated that reduced tillage in organic farming decreased sediment delivery (0.73tha(-1)h(-1)) compared to intensively tilled organic plots (1.87tha(-1)h(-1)) by 61%. Nevertheless, the combination of conventional farming and no tillage showed the lowest sediment delivery (0.24tha(-1)h(-1)), whereas intensively tilled conventional plots revealed the highest delivery (3.46tha(-1)h(-1)). Erosion rates were much higher in June during maize growth (2.92tha(-1)h(-1)) compared to those of fallow land after winter wheat (0.23tha(-1)h(-1)). Soil surface cover and soil organic matter were the best predictors for reduced sediment delivery, and living plant cover from weeds in reduced organic treatments appeared to protect soil surfaces better than plant residues in conventional, no-tillage plots. Soil erosion rates were significantly lower when soil cover was above 30%. In conclusion, this study demonstrates that both organic farming and conservation agriculture reduce soil losses and showed for the first time that reduced tillage practices are a major improvement in organic farming when it comes to soil erosion control.
机译:不同耕作耕作实践对土壤侵蚀的影响仅部分得到解决,在沉积物损失中有机农业的保护耕作实践的影响很少在该领域进行了测试。本研究调查了在长期复制的耕作耕种系统和耕作实验(快速试验)中的降雨诱导的微型沉积物损失,其中四种不同的种植系统:(1)有机耕作,强化耕作,(2)有机耕作,减少耕作, (3)常规耕种耕种,(4)常规农业,无耕作。在2014年的径流地块(冬小麦之后的休耕土地)和2017年(玉米生长期间)进行测量。与常规耕作相比,有机耕种与常规农业相比减少30%(0.54(-1)H(-1))。该研究表明,与强烈耕种有机图(1.87(-1)H(-1))达61%,减少了有机养殖中的沉积物递送(0.73(-1)H(-1))(0.73〜(-1)h(-1))。尽管如此,常规耕作和耕作的组合显示了最低沉积物递送(0.24〜(-1)H(-1)),而强烈的耕种常规地块显示出最高的递送(3.46℃(-1)H(-1) )。与冬小麦(0.23(-1)H(-1))相比,玉米生长期间肥胖率在玉米生长(2.92〜(-1)H(-1))中侵蚀率高得多。土壤表面覆盖物和土壤有机物是降低沉积物递送的最佳预测因子,并且从常规的无耕作地块中的植物残留物更好地保护土壤表面的生物植物覆盖物。土壤覆盖率高于30%时,土壤侵蚀率明显降低。总之,本研究表明,有机农业和保护农业均可减少土壤损失,并在减少耕作实践时表现出耕作实践的重大改善涉及土壤侵蚀控制。

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