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首页> 外文期刊>Science of the total environment >Fertilizer and pesticide reduction in cherry tomato production to achieve multiple environmental benefits in Guangxi, China
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Fertilizer and pesticide reduction in cherry tomato production to achieve multiple environmental benefits in Guangxi, China

机译:樱桃番茄生产中的肥料和农药减少,实现广西的多种环境效益

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摘要

Cherry tomatoes, as a highly profitable vegetable, consume a substantial amount of fertilizer and pesticide compared with other staple crops, which leads to remarkably negative environmental impacts. The optimization of these agricultural inputs to mitigate these environmental burdens and improve cherry tomato yield has drawn little attention. This study used life cycle assessment (LCA) combined with a field investigation to analyze the environmental benefits under optimized fertilizer and pesticide inputs (i.e., reduction of 24.7% nitrogen, 35.6% phosphorus pentoxide, 18.8% potassium oxide, 17.1% organic fertilizer, and 30.9% pesticides) compared to traditional farmer inputs. Results showed that: (1) compared to traditional farmer management, optimized inputs reduced the energy depletion by 24.7%, water depletion by 6.4%, global warming by 28.8%, acidification by 23.7%, aquatic eutrophication by 34.2%, human toxicity by 34.8%, aquatic eco-toxicity by 34.8%, and soil eco-toxicity by 26.7%, respectively; (2) among them, aquatic eco-toxicity and aquatic eutrophication were the major environmental impacts in cherry tomato production and were mainly attributed to chlorothalonil and phosphate fertilizer use, respectively; and (3) optimized inputs decreased the total environmental index and environmental damage cost by 33.8% and 28.1%, respectively, without compromising the yield. These findings provide insight into optimizing fertilizer and pesticide usage to alleviate multiple environmental impacts while maintaining cherry tomato yield and improving economic benefits. Further studies should focus mainly on less harmful pesticide utilization and phosphate use efficiency improvement, which may achieve vegetable production system sustainability in China and also provide a reference value for vegetable production systems in the Global South.
机译:与其他主食作物相比,樱桃番茄作为一种高利润的蔬菜,消耗了大量的肥料和农药,这导致对抗极性的环境影响。这些农业投入的优化减轻了这些环境负担,提高了樱桃番茄产量,这一兴趣略有关注。本研究使用了生命周期评估(LCA)与实地调查相结合,以分析优化肥料和农药输入下的环境效益(即减少24.7%氮,磷五氧化磷,18.8%氧化钾,17.1%的有机肥料,和与传统农民投入相比,30.9%的农药。结果表明:(1)与传统农民管理相比,优化的投入将能量耗竭降低24.7%,水耗水量为6.4%,全球变暖率为28.8%,酸化率为23.7%,水生富营养化34.2%,人体毒性34.8% %,水生生态毒性34.8%,土壤生态毒性分别为26.7%; (2)其中,水生生态毒性和水生富营养化是樱桃番茄生产中的主要环境影响,主要归因于氯洛尼洛尼洛尼尔和磷肥用途; (3)优化的投入分别降低了总环境指数和环境损害的成本33.8%和28.1%,而不会损害产量。这些调查结果提供了优化肥料和农药的洞察力,以减轻多种环境影响,同时保持樱桃番茄产量和提高经济效益。进一步的研究应主要关注较少有害的农药利用和磷酸盐利用效率改善,这可能在中国达到蔬菜生产系统可持续性,并为全球南方的蔬菜生产系统提供参考价值。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|148527.1-148527.10|共10页
  • 作者单位

    College of Resources and Environmental Sciences National Academy of Agriculture Green Development Key Laboratory of Plant-Soil Interactions Ministry of Education China Agricultural University Beijing 100193 China;

    College of Resources and Environmental Sciences National Academy of Agriculture Green Development Key Laboratory of Plant-Soil Interactions Ministry of Education China Agricultural University Beijing 100193 China;

    College of Resources and Environmental Sciences National Academy of Agriculture Green Development Key Laboratory of Plant-Soil Interactions Ministry of Education China Agricultural University Beijing 100193 China;

    College of Resources and Environmental Sciences National Academy of Agriculture Green Development Key Laboratory of Plant-Soil Interactions Ministry of Education China Agricultural University Beijing 100193 China;

    College of Resources and Environmental Sciences National Academy of Agriculture Green Development Key Laboratory of Plant-Soil Interactions Ministry of Education China Agricultural University Beijing 100193 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cherry tomato; Fertilizer; Pesticide; Life cycle assessment; Environmental impact;

    机译:圣女果(小西红柿;肥料;农药;生命周期评估;对环境造成的影响;

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