虹鳟鱼养殖循环经济实践的生命周期评估:意大利案例研究

IF 2.4 3区 农林科学 Q2 FISHERIES
Maria Cozzolino, Roberta Salomone, Teresa Maria Gulotta
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引用次数: 0

摘要

本研究考察了循环经济实践在提高水产养殖环境可持续性方面的潜力,重点是虹鳟鱼养殖。利用生命周期评估(LCA),该研究评估了位于意大利的一家水产养殖公司生产系统的环境和能源绩效,并确定了其主要热点。使用1吨虹鳟鱼活重的功能单位,在从摇篮到闸门的框架内,从孵化场到生长阶段,在整个生产周期内直接从养殖场收集数据。辅助数据补充了缺失的信息和背景过程。采用CML-IA基线和累积能源需求方法计算环境影响。结果表明,环境影响分布在育肥前期和育肥后期,孵化期的环境影响较小。关键热点包括饲料和能源使用,显著影响全球变暖、富营养化和酸化。然后,评估了三种循环行动的效果:回收泥浆作为肥料,减少对野生鱼类种群的压力,转向以昆虫为基础的饲料,从不可再生能源转向光伏能源,以进一步提高可持续性。过渡到以昆虫为基础的饲料可以产生最大的效益,减少14%的全球变暖潜势和15%的淡水水生生态毒性,尽管在海洋生态毒性方面有轻微的权衡。研究结果强调了生态环境评估在使水产养殖与可持续发展目标保持一致方面的变革潜力,并强调了生态环境评估是识别环境挑战和验证战略的关键工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Life cycle assessment of circular economy practices in rainbow trout farming: an Italian case study

This study examines the potential of circular economy practices to enhance the environmental sustainability of aquaculture, focusing on rainbow trout farming. Utilising life cycle assessment (LCA), the research evaluates the environmental and energy performance of the production system of an aquaculture company situated in Italy and identifies its main hotspots. A functional unit of 1 ton of rainbow trout live weight is used, with data collected directly from the farm throughout the production cycle, from hatchery to on-growing phases, within a cradle-to-gate framework. Secondary data supplement missing information and background processes. The environmental impacts are calculated by applying the CML-IA baseline and Cumulative Energy Demand methods. The results indicate that environmental impacts are distributed between the pre-fattening and on-growing phases, with a lesser contribution from the hatchery phase. Key hotspots include feed and energy usage, prominently affecting global warming, eutrophication and acidification. Then, the effects of three circular actions are evaluated: recycling slurry as fertiliser, reducing pressure on wild fish stocks, shifting to insect-based feed and transitioning from non-renewable energy sources to photovoltaic energy to enhance sustainability further. The transition to insect-based feed could generate the highest benefits, reducing global warming potential by 14% and freshwater aquatic ecotoxicity by 15%, despite minor trade-offs in marine ecotoxicity. The findings underscore the transformative potential of CE in aligning aquaculture with sustainability goals and underline LCA as a crucial tool for identifying environmental challenges and validating strategies.

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来源期刊
Aquaculture International
Aquaculture International 农林科学-渔业
CiteScore
5.10
自引率
6.90%
发文量
204
审稿时长
1.0 months
期刊介绍: Aquaculture International is an international journal publishing original research papers, short communications, technical notes and review papers on all aspects of aquaculture. The Journal covers topics such as the biology, physiology, pathology and genetics of cultured fish, crustaceans, molluscs and plants, especially new species; water quality of supply systems, fluctuations in water quality within farms and the environmental impacts of aquacultural operations; nutrition, feeding and stocking practices, especially as they affect the health and growth rates of cultured species; sustainable production techniques; bioengineering studies on the design and management of offshore and land-based systems; the improvement of quality and marketing of farmed products; sociological and societal impacts of aquaculture, and more. This is the official Journal of the European Aquaculture Society.
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