鱼菜共生的最新进展,特别强调其可持续性

IF 2.3 3区 农林科学 Q2 FISHERIES
Chythra Somanathan Nair, Ramya Manoharan, Drishya Nishanth, Radhakrishnan Subramanian, Elke Neumann, Abdul Jaleel
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引用次数: 0

摘要

水培系统是水培与水产养殖相结合的一种可持续、生态友好、高效利用不可再生资源的水培系统。鱼菜共生研究的增长趋势表明,人们越来越认识到它在解决粮食安全、水资源保护和可持续农业等关键全球问题方面的潜力,特别是在易受气候变化和资源限制影响的地区。近年来,它取得了显著的进步,出现了各种方法和变化,以增强其功能和生产力。这篇综述的目的是统一关于鱼菜共生的零散研究,并提供一个全面的资源,强调其在各种环境中广泛采用和成功实施的潜力。本文综述了不同气候条件下水培系统设计的最新创新,并探讨了关键领域的关键进展,包括微生物群落、生物过滤、饲料管理、水质和养分循环,强调了水培的跨学科性质。耦合系统适合具有高资源效率的温和气候,而解耦系统通过允许每个组件的独立控制,在不同的气候条件下提供灵活性。沙培法、海藻培植法和盐碱水培法等创新解决了水资源短缺和养分效率等挑战。物联网和人工智能等智能技术被集成到鱼菜共生中,实现自动化监测和营养管理,以提高生产力。新兴领域,包括蚯蚓水培和絮凝水培,为养分循环提供了新的解决方案,使水培在全球范围内更加高效、适应性强和资源节约。本文还探讨了鱼菜共生的可持续性方面,强调其经济、社会和环境方面。尽管设置成本高,营养复杂,但水培通过最大限度地减少水的使用和减少合成肥料,为可持续粮食生产提供了巨大的潜力。它在城市和农村地区的可扩展性,以及垂直系统等创新,为在不同环境中加强农业和粮食安全提供了有希望的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent advancements in aquaponics with special emphasis on its sustainability

Recent advancements in aquaponics with special emphasis on its sustainability

An aquaponic system which is an integration of hydroponics with aquaculture is sustainable, ecologically friendly, and uses non-renewable resources with very high efficacy. The increasing trend in aquaponics research demonstrates a growing recognition of its potential to address critical global issues such as food security, water conservation, and sustainable agriculture, particularly in regions vulnerable to climate change and resource limitations. It has witnessed remarkable advancements in recent years, with various methods and variations emerging to enhance its functionality and productivity. The purpose of this review is to unify fragmented research on aquaponics and provide a comprehensive resource that emphasizes its potential for broad adoption and successful implementation in varied environments. This review focuses on recent innovations in aquaponic system designs for various climates and examines key advancements in critical areas, including microbial communities, biofiltration, feed management, water quality, and nutrient cycling, emphasizing the interdisciplinary nature of aquaponics. Coupled systems suit moderate climates with high resource efficiency, while decoupled systems offer flexibility across diverse climates by allowing independent control of each component. Innovations such as sandponics, algaeponics, and saline aquaponics address challenges like water scarcity and nutrient efficiency. Smart technologies like IoT and AI are integrated into aquaponics, automating monitoring and nutrient management for better productivity. Emerging areas, including vermi-aquaponics and flocponics, offer new solutions for nutrient cycling, making aquaponics more efficient, adaptable, and resource-conserving globally. This paper also examines the sustainability aspects of aquaponics, emphasizing its economic, social, and environmental dimensions. Despite high setup costs and nutrient complexities, aquaponics offers significant potential for sustainable food production by minimizing water use and reducing synthetic fertilizers. Its scalability in both urban and rural areas, along with innovations like vertical systems, presents promising solutions for enhancing agriculture and food security across diverse environments.

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来源期刊
CiteScore
5.90
自引率
7.10%
发文量
69
审稿时长
2 months
期刊介绍: The Journal of the World Aquaculture Society is an international scientific journal publishing original research on the culture of aquatic plants and animals including: Nutrition; Disease; Genetics and breeding; Physiology; Environmental quality; Culture systems engineering; Husbandry practices; Economics and marketing.
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