覆盖作物与无机氮肥对番茄、菜豆生产及土壤硝态氮分布的影响

R. Dufault, D. Decoteau, J. T. Garrett, K. D. Batal, D. Granberry, Jeanine M. Davis, G. Hoyt, D. Sanders
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引用次数: 4

摘要

商品蔬菜生产几乎完全依赖无机肥料。在一个环境敏感的时代,用绿色肥料和覆盖作物来丰富土壤可以减少对这些肥料的依赖,同时保持和提高作物产量。本研究的目的是确定(1)小麦(Triticum aestivum L.)或深红色三叶草(Trifolium incarnatum L.)冬季覆盖作物后补施60或120 kg·ha - 1氮肥对轮作番茄(Lycopersicon esculentum Mill.)和豆荚(Phaseolus vulgaris L.)产量的影响;(2)氮肥和覆盖作物对土壤剖面中土壤硝酸盐分布和滞留的影响。“Mountain Pride”新鲜市场番茄和“Strike”速食豆轮种了四年。三叶草和小麦覆盖作物在四年中有一年增加了“山地骄傲”番茄的总可销售产量。4年中有2年施氮量增加至60 kg·ha - 1, 1年施氮量增加至120 kg·ha - 1,使总可售番茄产量增加。氮不与覆盖作物互作影响产量。与休耕相比,三叶草地块的“Strike”豆角一年四季的总产量降低了60%。当施氮量为60 kg·ha - 1时,3年中有1年速生豆总产量增加,但3年中有2年速生豆对氮素无反应。苜蓿和小麦后1.2 m深度土壤硝酸盐含量高于休耕后。三叶草和120 kg N·ha−1的土壤硝态氮含量最高。在所有覆盖作物或休耕地,随着施氮量的增加,土壤硝酸盐含量也增加。种植4年后,覆盖作物或施氮肥均未增加1.2 m土壤剖面深度中残留硝酸盐的保留率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Cover Crops and Inorganic Nitrogen Fertilization on Tomato and Snap Bean Production and Soil Nitrate Distribution
ABSTRACT Commercial vegetable production depends almost solely on inorganic fertilizers. In an era of environmental sensitivity, enrichment of soils with green manures and cover crops may reduce the dependence on these fertilizers while maintaining and enhancing crop yields. The objectives of this research were to determine (1) if supplemental nitrogen (N) at 60 or 120 kg · ha−1 following winter cover crops of wheat (Triticum aestivum L.) or crimson clover (Trifolium incarnatum L.) affect yield of tomato (Lycopersicon esculentum Mill.) and snap bean (Phaseolus vulgaris L.) grown in rotation; and (2) the distribution and retention of soil nitrates in the soil profile as affected by N fertilization and cover cropping. ‘Mountain Pride’ fresh market tomato and ‘Strike’ snap bean were grown in rotation for four years. Clover and wheat cover crops increased total marketable yield of ‘Mountain Pride’ tomato in one out of four years. Total marketable tomato yield increased as fertilizer N increased to 60 kg · ha−1 in two out of four years and with 120 kg · ha−1 in one out of four years. N did not interact with cover crops to affect yield. ‘Strike’ snap bean marketable yield summed over all years was 60% lower in clover plots compared with fallow. Total marketable snap bean yield increased with 60 kg N · ha−1 in one out of three years but was unresponsive to N in two out of three years. Soil nitrates to 1.2 m depth were higher after clover and wheat than after fallow. Nitrate level was highest in soil with clover and 120 kg N · ha−1. In all cover crop or fallow plots, as fertilizer N application levels increased, the soil nitrates also increased. Cover crops or fertilizer N application did not increase the retention of residual nitrates in the 1.2 m soil profile depth after four years of cropping.
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