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No-till with high biomass cover crops and invasive legume mulches increased total soil carbon after three years of collard production

机译:没有高生物量封面作物和侵入式豆类覆盖物在三年后的羽毛生产后增加了整个土壤碳

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摘要

Studies have shown that conversion to conservation tillage from conventional tillage does not increase total soil organic carbon (SOC) significantly in the short term (5yrs). While no-till increases total SOC in the medium to long term, it was hypothesized that the inclusion of high biomass cover crops and organic mulches may increase total SOC in the short term. The use of invasive, perennial leguminous species as mulch may sustainably increase SOC during limited-input fall vegetable production. The objective of this study, conducted in Alabama (USA), was to quantify total SOC changes due to organic mulches and forage soybean (Glycine max (L.) Merr. cv. Derry) as a summer cover crop after conversion to no-till during limited-input fall collard (Brassica oleracea L.) production. Forage soybean as a summer cover crop did not increase SOC. No-till without mulch (control treatment) significantly increased SOC at 0-5cm from 6.3 to 14.0gkg(-1) soil in 3yrs, whereas inclusion of cut-and-carry mulches increased SOC to 22.6gkg(-1) soil. Treatments did not affect collard yield, which averaged 17,863kgha(-1) yr(-1). This represents a novel, limited-input system that may help control on-farm invasive species while sustainably increasing SOC in the short term.
机译:研究表明,从常规耕作中转化为常规耕作的蜕膜不会在短期内显着增加土壤有机碳(SoC)(& 5yrs)。虽然NO-PITE在中长期中增加了总体SOC,但是假设包含高生物量覆盖作物和有机覆盖物可能在短期内增加SOC总量。使用侵袭性,多年生豆科物种作为覆盖物可持续地增加在有限投入植物生产期间SOC。在阿拉巴马州(美国)进行的这项研究的目的是量化由于有机覆盖物和饲料大豆(Glycine Max(L.)Merr.CV.Derry)作为夏季覆盖作物的总体变化在限量输入秋季胶水(Brassica Oleracea L.)生产中。牧草大豆作为夏季覆盖作物没有增加SoC。没有覆盖物(控制处理)在3岁的6.3至14.0gkg(-1)土壤中显着增加SOC,而拆卸覆盖物将SOC增加至22.6gkg(-1)土壤。治疗不影响胶林产量,其平均为17,863kga(-1)Yr(-1)。这代表了一种新的有限输入系统,可能有助于控制农场侵入性物种,同时在短期内可持续地增加SOC。

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