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Nitrogen recovery via aquaponics in Nepal: current status, prospects, and challenges

机译:尼泊尔通过水培法氮素回收的现状,前景和挑战

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Aquaponics is a bio-integrated system that couples recirculating aquaculture with hydroponics. Existing aquaculture has been a continuous source of environmental degradation; however, minimal concern has been documented toward its waste management. This paper aims to review the fundamental aspects of aquaponics, its components, types and influencing factors, and also to estimate potential nitrogen recovery from aquaponics. This review also explores the nitrogen transformation pathway and discusses potential challenges for aquaponics in Nepal. The estimated the nitrogen recovery potential of aquaponics in Nepal are 3509 tonnes (t) and 7157t, equivalent to 7628t and 15558t of urea fertilizer for the years 2020 and 2030, respectively. Globally, nitrogen loss from aquaculture was estimated to be 7.52 × 106 t for 2016. Developing countries like India, Bangladesh, Nigeria, etc. are also major source of existing nitrogen loss from aquaculture. For environmental and production sustainability, wastewater utilization via aquaponics is crucial, therefore, needs global attention and policy formulation. Identification of isotopic signature or abundance of stable isotopes in aquaponics helps find the exact pathway of nitrogen transformation in the system.
机译:Aquaponics是将循环水产养殖与水培耦合的生物集成系统。现有的水产养殖一直是环境恶化的根源。但是,有关废物管理的文献很少。本文旨在综述共生植物的基本方面,其组成,类型和影响因素,并估计共生植物中潜在的氮回收率。这篇综述还探讨了氮的转化途径,并讨论了尼泊尔水培技术的潜在挑战。尼泊尔水培植物的氮回收潜力估计为3509吨(t)和7157t,分别相当于2020年和2030年的7628t和15558t尿素肥料。在全球范围内,2016年水产养殖的氮损失估计为7.52×106吨。印度,孟加拉国,尼日利亚等发展中国家也是水产养殖现有氮损失的主要来源。对于环境和生产的可持续性,通过鱼菜共生利用废水至关重要,因此需要全球关注和政策制定。在水培植物中鉴定同位素特征或稳定同位素的丰度有助于找到系统中氮转化的确切途径。

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