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秋季覆盖作物氮素吸收导致冬春季淋洗减少。

Fall cover crop nitrogen uptake drives reductions in winter-spring leaching.

机构信息

Dep. of Environmental Science and Technology, Univ. of Maryland, College Park, MD, 20742, USA.

出版信息

J Environ Qual. 2022 May;51(3):337-351. doi: 10.1002/jeq2.20342. Epub 2022 Apr 6.

DOI:10.1002/jeq2.20342
PMID:35290665
Abstract

Cover crops can reduce nitrate leaching after cash crop harvest. Despite widespread cover crop implementation, there has been a limited effect on water quality in the Chesapeake Bay watershed. We hypothesize that typical timing for Maryland cover crop planting after cash crop harvest is too late to allow roots to take up substantial nitrate from the soil profile before it is leached by winter drainage water. Across four site-years (including sandy and silty soils), we compared various planting dates for a radish (Raphanus sativus L.)-crimson clover (Trifolium incarnatum L.)-triticale (Triticosecale) cover crop mixture. Also, across two site-years we compared early-planted pure rye, radish, and a three-species mixture with no cover. We measured cover crop biomass and N content and used tension lysimeters to measure deep soil porewater nitrate concentrations. Cumulative nitrate leaching was calculated from these concentrations and weather-based drainage estimates. Cover crops were planted on four dates over a 6-wk period. Overall, cover crops planted first, second, third, fourth, and no cover crop (just weeds) resulted in 3,340, 3,160, 1,600, 303, and 164 kg ha of biomass; biomass N accumulation of 65.5, 68.6, 44.0, 9.88, and 4.79 kg N ha ; and mean porewater concentrations of 2.71, 2.57, 4.72, 10.0, 17.1 mg L of nitrate-N, respectively. Over two site-years, the three-species mix performed as well or better than pure rye or radish. Early planting altered cover crop species proportions, increased cover crop productivity, and reduced nitrate leaching from agricultural fields.

摘要

覆盖作物可以减少经济作物收获后硝酸盐的淋失。尽管广泛实施了覆盖作物,但对切萨皮克湾流域的水质影响有限。我们假设马里兰州在经济作物收获后种植覆盖作物的典型时间太晚,无法在冬季排水将土壤剖面中的硝酸盐淋洗之前,让根系吸收大量硝酸盐。在四个田间年份(包括沙质和粉质土壤)中,我们比较了萝卜(Raphanus sativus L.)-红三叶草(Trifolium incarnatum L.)-黑麦草(Triticosecale)覆盖作物混合物的各种种植日期。此外,在两个田间年份,我们比较了早播的纯黑麦、萝卜和无覆盖的三种混合作物。我们测量了覆盖作物的生物量和 N 含量,并使用张力渗滤计测量深层土壤孔隙水硝酸盐浓度。根据这些浓度和基于天气的排水估算,计算了累积硝酸盐淋失量。覆盖作物在 6 周的时间内分四批种植。总的来说,第一批、第二批、第三批、第四批和无覆盖作物(只有杂草)种植后,生物量分别为 3340、3160、1600、303 和 164 公斤/公顷;生物量 N 积累分别为 65.5、68.6、44.0、9.88 和 4.79 公斤 N/公顷;平均孔隙水硝酸盐-N 浓度分别为 2.71、2.57、4.72、10.0 和 17.1 毫克/升。在两个田间年份,三种混合作物的表现与纯黑麦或萝卜一样好或更好。早期种植改变了覆盖作物的物种比例,提高了覆盖作物的生产力,并减少了农田的硝酸盐淋失。

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