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Effects of Organic Fertilization and Cover Crops on an Organic Pepper System

机译:有机肥和覆盖作物对有机辣椒系统的影响

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With the continuing 20% growth rate in the organic industry, organic vegetable crop production has increased to 98,525 acres in the United States. The requirement for certified organic vegetable producers to implement a soil-building plan has led to the development of soil fertility systems based on combinations of organic fertilizers and cover crops. To determine optimal soil fertility combinations, conventional and organic bell pepper ( Capsicum annuum) production was evaluated from 2001 to 2003 inIowa, comparing combinations of two synthetic fertilizers and three compost-based organic fertilizers, and a cover crop treatment of hairy vetch (Vicia villosa) and rye (Secale cereale) in a strip-tilled or fully incorporated cover crop system. Organicpepper growth and yields equaled or surpassed conventional production when nitrogen (N) was provided at 56 or 112 kg-ha~(-1) from compost-based organic fertilizer. Soil analysis revealed higher N in plots where cover crops were tilled compared with strip-tilled plots, leading to recommendations for sidedressing N in strip-tilled organic pepper production. Increased incidence of disease was also detected in strip-tilled plots. Postharvest weight loss after 6 weeks in storage was similar in organic and conventional peppers. The addition of calcium and sulfur products in conventional or organic fertilizer regimes did not increase pepper production or postharvest storage potential. Despite application challenges, cover crops will remain as critical components of the organic farm plan for their soil-building benefits, but supplementation with approved N sources may be required for optimal pepper production. Organic growers should conduct their own tests of organic-compliant soil amendments to determine cost effectiveness and value for their site before large-scale application.
机译:随着有机产业的20%持续增长,美国有机蔬菜作物的产量已增至98,525英亩。对获得认证的有机蔬菜生产者执行土壤建设计划的要求,导致了基于有机肥料和覆盖作物的土壤肥力系统的发展。为了确定最佳的土壤肥力组合,从2001年到2003年在爱荷华州对常规和有机甜椒(Capsicum annuum)的生产进行了评估,比较了两种合成肥料和三种基于堆肥的有机肥料的组合,以及对毛etch子(Vicia villosa)的覆盖作物处理。 )和黑麦(Secale谷类食品)放在条状倾斜或完全合并的覆盖作物系统中。当以堆肥为基础的有机肥料提供的氮(N)含量为56或112 kg-ha〜(-1)时,有机辣椒的生长和产量将达到或超过常规产量。土壤分析显示,耕作覆盖作物的地块中的氮比带状耕作的地块高,因此建议在带状耕作的有机辣椒生产中补充氮。在带状地块中也发现了疾病发生率的增加。贮藏6周后,有机胡椒和传统胡椒的采后体重减轻相似。在常规或有机肥料制度中添加钙和硫产品不会增加胡椒产量或收获后的储存潜力。尽管存在应用方面的挑战,但覆盖作物仍将是有机农业计划的重要组成部分,以提高土壤建设效益,但为了获得最佳的胡椒产量,可能需要补充经批准的氮源。有机种植者应进行自己的有机兼容土壤改良剂测试,以确定大规模应用前其场地的成本效益和价值。

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