加强覆盖作物和闪牧长期免耕小麦制度

Partson Mubvumba , Paul B. DeLaune , Frank M. Hons
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引用次数: 0

摘要

常规耕作(CT)下的单一栽培做法不利于集约化农业下的可持续土壤生态系统功能和服务,最终减少净效益。免耕(NT)和覆盖作物(CC)等保护性措施可以培育可持续的土壤生态系统功能和服务。在3年的时间里,研究了在一个长期的NT连续小麦系统中引入CC、放牧、间作和复耕对土壤性质的影响。处理为连作、连作、连作、放牧和小麦与萝卜、芜菁间作。与所有CC处理(包括放牧和间作)相比,耕作在3年内显著降低了大团聚体(33-39%)、平均重径(21-26%)和大团聚体中的POX-C(21-29%),增加了小团聚体(40-65%)。与所有CC处理相比,NT处理12年后恢复耕作显著增加了19%的容重,减少了21%的总孔隙度和28%的土壤含水量。此外,覆盖作物(包括放牧和间作)提高了NT,显著改善了POX-C(19-32%)、大团聚体(37-51%)、平均重径(22-31%)、容重(8-13%)、总孔隙度(10-18%)和土壤含水量(11-14%)。与所有其他处理相比,快速放牧CC在测量参数方面没有产生任何不良反应。最终,在长期的NT系统中恢复耕作显著降低了土壤的理化性质。相比之下,在长期连续小麦系统中实施CC,在3年的研究期内土壤得到了快速改善,这反映在CC下土壤水分储存比CT提高了39%。快速放牧CC可以成功地在NT系统中实施,而不会对土壤的物理化学性质产生不利影响。间作效果不明显,可能与冬杀有关。
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Enhancing long-term no-till wheat systems with cover crops and flash grazing

Monoculture practices under conventional tillage (CT) are detrimental to sustainable soil ecosystem functions and services under intensive agriculture practices, ultimately diminishing net benefits. Conservation practices, such as no-till (NT) and cover crops (CC) can nurture sustainable soil ecosystem functions and services. The impact of introducing CC, grazing, intercropping, and reverting to tillage in a long-term NT continuous wheat system on soil properties was evaluated in three years of implementation. Treatments were CT and combinations of NT, CC, grazing, and intercropping wheat with radishes and turnips. Tillage significantly decreased large macroaggregates (33–39%), mean weight diameter (21–26%), and POX-C (21–29%) within large macroaggregates and increased small macroaggregates (40–65%) compared to all CC treatments (including grazed and intercropped) within a 3-year period. Reverting to tillage after 12 years of NT significantly increased bulk density by 19%, reduced total porosity by 21% and soil water content by 28% compared to all CC treatments. In addition, Cover crops (including grazed and intercropped) enhanced NT as evident in significant improvements in POX-C (19–32%), large macroaggregates (37–51%), mean weight diameter (22–31%), bulk density (8–13%), total porosity (10–18%), and measured soil water content (11–14%). Flash grazing CC did not result in any adverse effects compared to all other treatments for measured parameters. Ultimately, reverting to tillage in a long-term NT system significantly degraded soil physicochemical properties. In contrast, implementing CC to long-term continuous wheat systems resulted in rapid soil improvements within the 3-year study period which were reflected in enhanced stored soil moisture storage of up to 39% higher under CC compared to CT. Flash grazing CC can be successfully implemented in NT systems without adversely affecting soil physicochemical properties. Intercrops did not show pronounced effects possibly due to winterkill.

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来源期刊
Soil security
Soil security Soil Science
CiteScore
4.00
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0.00%
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审稿时长
90 days
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