再循环水产养殖系统:实现可持续养鱼的途径

Jham Lal, Anand Vaishnav, Suparna Deb, Shubham Kashyap, Payel Debbarma, Devati, Priyanka Gautam, Muneshwar Pavankalyan, Kriti Kumari, Durgesh Kumar Verma
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引用次数: 0

摘要

循环水养殖系统(RAS)是一种可持续养鱼的变革性方法,为满足全球日益增长的海产品需求提供了可行的解决方案,同时最大限度地减少了对环境的影响。与传统的水产养殖方法相比,这些闭环系统对水进行再循环和再利用,最多可减少 99% 的耗水量。通过将养殖鱼类与自然种群和周围环境隔离,RAS 还能降低疾病传播、逃逸和污染的风险。技术先进的 RAS 采用机械过滤、生物过滤和消毒过程,以保持鱼类生长所需的最佳水质。这种高水平的控制可以在远离沿海地区的地方养殖多种鱼类,包括肉食性鱼类。此外,将鱼菜共生技术集成到 RAS 中,还能利用营养丰富的废水生产优质蔬菜和香草,形成一个可持续的闭环系统。尽管所需的初始投资较高,但鱼菜共生系统已显示出稳定的盈利能力和可观的回报潜力。通过促进 "内源 "和创造当地就业机会,RAS 可以促进社区的经济发展,同时减少与国际海产品贸易相关的碳足迹。随着水产养殖业的不断发展,RAS 将在确保养鱼业的长期可持续发展方面发挥至关重要的作用。通过将技术进步与环境管理相结合,RAS 为满足全球日益增长的海产品需求,同时保护我们水生生态系统的健康提供了一条前景广阔的道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Re-Circulatory Aquaculture Systems: A Pathway to Sustainable Fish Farming
Recirculating Aquaculture Systems (RAS) represent a transformative approach to sustainable fish farming that offers a viable solution to meet the growing global demand for seafood while minimizing environmental impact. These closed-loop systems recirculate and reuse water, reducing water consumption by up to 99% compared to traditional aquaculture methods. RAS also mitigate the risk of disease transmission, escapement, and pollution by isolating farmed fish from natural populations and the surrounding environment. Technologically advanced RAS employ mechanical filtration, biological filtration, and disinfection processes to maintain optimal water quality for fish growth. This high level of control allows for the farming of a wide range of species, including predatory finfish, in locations far from coastal areas. Furthermore, the integration of aquaponics in RAS enables the production of high-quality vegetables and herbs using the nutrient-rich wastewater, creating a sustainable closed-loop system. Despite the higher initial investment required, RAS have demonstrated consistent profitability and the potential for significant returns. By promoting "in-sourcing" and creating local jobs, RAS can contribute to the economic development of communities while reducing the carbon footprint associated with international seafood trade. As the aquaculture industry continues to evolve, RAS are poised to play a crucial role in ensuring the long-term sustainability of fish farming. By combining technological advancements with environmental stewardship, RAS offer a promising pathway towards meeting the world's growing demand for seafood while preserving the health of our aquatic ecosystems.
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