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中国中华绒螯蟹养殖的比较评估:时空变化与权衡。

Comparative assessment of Chinese mitten crab aquaculture in China: Spatiotemporal changes and trade-offs.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, China.

School of Earth and Environment, Anhui University of Science and Technology, Huainan, 232001, China.

出版信息

Environ Pollut. 2023 Nov 15;337:122544. doi: 10.1016/j.envpol.2023.122544. Epub 2023 Sep 12.

Abstract

The increasing human demand for high-quality animal protein has provided impetus for the development of aquaculture. Chinese mitten crab (Eriocheir sinensis) is a catadromous species rapidly being cultured in China but scientific literature documenting its life cycle environmental and economic consequences remains scarce. This study aims to address this gap by examining the spatio-temporal evolution of crab aquaculture in China since the 2000s and evaluating the environmental and economic characteristics along its life-cycle stages: megalopa, juvenile crab, and adult crab cultivation. The geostatistical analysis shows a more dispersed pattern of crab aquaculture nationally as crab grows, with coastal provinces that have brackish water for megalopa cultivation but wider spatial coverage for juvenile and adult crab cultivation. Our findings reveal that the production of 1 ton of live-weight crab results in 7.65 ton of CO equivalent of greenhouse gas emissions, surpassing previous estimates for finfish fish production by approximately 50%. Most environmental pressures occur during the adult crab cultivation stage, with significant contributions from upstream processes such as electricity and feed production. By comparing between different production systems, our study shows that crab aquaculture in lake systems performs better than pond systems in terms of most global environmental impact categories and economic considerations. This work contributes to the existing literature by elucidating the spatio-temporal changes of crab aquaculture boom in China and constructing a representative life cycle data pool that broadens the benchmark knowledge on its environmental and economic characteristics. We highlight the trade-offs between environmental and economic performance as well as the balance between global and local environmental impacts to promote sustainable growth in the aquaculture industry.

摘要

人类对高质量动物蛋白的需求不断增加,为水产养殖业的发展提供了动力。中华绒螯蟹(Eriocheir sinensis)是一种洄游性物种,在中国迅速养殖,但记录其生命周期对环境和经济影响的科学文献仍然很少。本研究旨在通过考察 21 世纪以来中国蟹类养殖的时空演变,并评估其生命周期各阶段(大眼幼体、幼蟹和成蟹养殖)的环境和经济特征,来填补这一空白。地理统计分析表明,随着蟹类的生长,全国蟹类养殖的分布模式更加分散,沿海省份有适合大眼幼体养殖的半咸水,但幼蟹和成蟹养殖的空间覆盖范围更广。研究结果表明,每生产 1 吨活蟹会产生 7.65 吨二氧化碳当量的温室气体排放,比以前估计的鱼类养殖高出约 50%。大多数环境压力发生在成蟹养殖阶段,电力和饲料生产等上游过程贡献显著。通过比较不同的生产系统,本研究表明,湖泊系统的蟹类养殖在大多数全球环境影响类别和经济考虑方面优于池塘系统。这项工作通过阐明中国蟹类养殖热潮的时空变化,并构建一个具有代表性的生命周期数据池,扩展了关于其环境和经济特征的基准知识,为现有文献做出了贡献。研究强调了环境和经济绩效之间的权衡以及全球和地方环境影响之间的平衡,以促进水产养殖业的可持续增长。

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