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Optimal rice-crab co-culture system as a new paradigm to air-water-food nexus sustainability

机译:最佳的稻蟹共培制度作为空气 - 食品Nexus可持续性的新范式

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摘要

Rice production, despite its important role in food security, could bring about environmental problems such as methane emissions and polluting water resources. To decrease such negative environmental impacts, the co-culture of rice with ecologically friendly aquatic animals such as crabs has shown promising results. However, there are still serious concerns about the proper implementation of rice coculture systems. Having considered rice-crab systems, crab stock density and the amount of crab feed, among others, are two important factors which regulate the performance of the system and the associated environmental pollution. However, their optimal values and their underlying relationship with enviro-economic parameters (e.g. methane emissions, nitrous oxide emissions, ammonia volatilization, yield, N uptake, nitrate in drainage water, and profit) have not been scrutinized yet. Accordingly, a set of farm experiments has been performed to measure enviro-economic parameters under monoand cocultivation of rice. Moreover, the attempts were made to explore the underlying correlations between crab stock density and the amount of crab feed as two independent variables and measured parameters such as yield and greenhouse gas emissions. Furthermore, an appropriate optimization model was developed to find the optimal crab density and crab feed in order to minimize the environmental pollution and maximize crab and rice yield as well as net profit. At the end, a farm survey was also conducted to evaluate the shortages in co-culture systems. The results showed that, under optimal ricecrab co-culture system, the improvements in nutrient uptakes ranged from 5.2% to 23.3%, with the lowest for Zn uptake and the highest for N uptake. Under such circumstances, 355% lower global warming impact would be attained compared to rice mono-culture showing a significant contribution to greenhouse gas mitigation. Furthermore, farmers would benefit from 122% higher profit under co-culture systems. The results achieved herein also have policy implications because it would help to decrease national greenhouse gas emissions and avoid deterioration of water resources while help farmers to ensure earning a high profit.(c) 2021 Elsevier Ltd. All rights reserved.
机译:尽管在粮食安全方面具有重要作用,但粮食生产可能会导致甲烷排放等环境问题,如甲烷排放和污染水资源。为了减少这种负面的环境影响,与螃蟹等生态友好的水生动物的水稻的共同培养表明了有希望的结果。但是,关于水稻共核系统的正确实施仍有严重的担忧。考虑过米蟹系统,蟹股票密度和蟹饲料的量,是调节系统性能和相关环境污染的两个重要因素。然而,它们的最佳价值观及其与环境的潜在关系(例如甲烷排放,氧化亚氮排放,氨挥发,产率,N吸收,硝酸盐,尚未仔细审查)。因此,已经进行了一组农场实验,以测量米的单声道群组下的环境经济参数。此外,尝试探讨蟹群密度与蟹饲料量作为两个独立变量的潜在相关性,以及测量的参数,如产量和温室气体排放。此外,开发了适当的优化模型以找到最佳的蟹密度和蟹饲料,以最大限度地减少环境污染,最大化​​蟹和水稻产量以及净利润。最后,还进行了一个农场调查,以评估共同文化系统的短缺。结果表明,在最佳的Ricecrab共同培养系统下,营养增值的改善范围为5.2%至23.3%,最低用于Zn吸收,最高的N吐痰。在这种情况下,与水稻单型文化相比,将达到355%的全球变暖影响,显示对温室气体缓解的重大贡献。此外,农民将在共同培养系统下受益于122%的利润。此处实现的结果也具有政策影响,因为它将有助于减少国家温室气体排放,并避免水资源的恶化,同时帮助农民确保获得高利润。(c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第1期|125936.1-125936.14|共14页
  • 作者单位

    Chinese Acad Agr Sci Inst Agr Resources & Reg Planning Key Lab Nonpoint Source Pollut Control Minist Agr Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Agr Resources & Reg Planning Key Lab Nonpoint Source Pollut Control Minist Agr Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Agr Resources & Reg Planning Key Lab Nonpoint Source Pollut Control Minist Agr Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Agr Resources & Reg Planning Key Lab Nonpoint Source Pollut Control Minist Agr Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Agr Resources & Reg Planning Key Lab Nonpoint Source Pollut Control Minist Agr Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Agr Resources & Reg Planning Key Lab Nonpoint Source Pollut Control Minist Agr Beijing 100081 Peoples R China;

    China Agr Univ Coll Water Resources & Civil Engn Lab Environm Enhancing Energy E2E Minist Agr Beijing 100083 Peoples R China|China Agr Univ Coll Water Resources & Civil Engn Key Lab Agr Engn Struct & Environm Minist Agr Beijing 100083 Peoples R China;

    Chinese Acad Agr Sci Inst Agr Resources & Reg Planning Key Lab Nonpoint Source Pollut Control Minist Agr Beijing 100081 Peoples R China;

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

    Rice co-culture; Greenhouse gas emissions; Sustainable rice-crab farming;

    机译:大米共同培养;温室气体排放;可持续稻瘟病养殖;

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