Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education , Ocean University of China , Qingdao 266100 , China.
Department of Earth Sciences, Faculty of Geosciences , Utrecht University , P.O. Box 80021, 3508 TA Utrecht , The Netherlands.
Environ Sci Technol. 2020 Feb 4;54(3):1464-1474. doi: 10.1021/acs.est.9b03340. Epub 2019 Nov 6.
As Chinese aquaculture production accounts for over half of the global aquaculture production and has increased by 50% since 2006, there is growing concern about eutrophication caused by aquaculture in China. This paper presents a model-based estimate of nutrient flows in China's aquaculture system during 2006-2017 using provincial scale data, to spatially distribute nutrient loads with a 0.5° resolution. The results indicate that with the increase in fish and shellfish production from 30 to 47 million tonnes (Mt) during 2006-2017, the nitrogen (N) release increased from 1.0 to 1.6 Mt/year and that of phosphorus (P) from 0.1 to 0.2 Mt/year. Nutrient release from freshwater aquaculture was concentrated in Guangdong, Jiangsu, and Hubei, and that from mariculture in Shandong, Fujian, and Guangdong. Aquaculture is an important strongly concentrated nutrient source in both freshwater and marine environments. Its nutrient release is >20% of total nutrient inputs to freshwater environments in some provinces, and nutrients from mariculture are comparable to river nutrient export to Chinese coastal seas. Aquaculture production and nutrient excretions are now comparable to those of livestock production systems in China and need to be accounted for when analyzing causes of eutrophication and harmful algal blooms and possible mitigation strategies.
中国的水产养殖产量占全球水产养殖产量的一半以上,自 2006 年以来增长了 50%,因此人们越来越关注中国水产养殖造成的富营养化问题。本文利用省级尺度数据,基于模型估算了 2006-2017 年中国水产养殖系统的养分流动,以 0.5°的分辨率空间分布养分负荷。结果表明,2006-2017 年期间,鱼类和贝类产量从 3000 万吨增加到 4700 万吨,氮(N)释放量从 100 万吨/年增加到 160 万吨/年,磷(P)释放量从 10 万吨/年增加到 20 万吨/年。淡水养殖的养分释放主要集中在广东、江苏和湖北,海水养殖的养分释放主要集中在山东、福建和广东。水产养殖是淡水和海洋环境中重要的、强烈集中的养分源。在一些省份,其养分释放量超过了总养分输入的 20%,而海水养殖的养分与河流向中国沿海海域的养分输出相当。水产养殖的产量和养分排泄量现在与中国的畜牧业生产系统相当,在分析富营养化和有害藻类爆发的原因以及可能的缓解策略时,需要将其考虑在内。