4.7 Article

Nutrient discharge from China's aquaculture industry and associated environmental impacts

期刊

ENVIRONMENTAL RESEARCH LETTERS
卷 10, 期 4, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1748-9326/10/4/045002

关键词

aquaculture; nutrient discharges; nutrient use efficiency; environmental impacts; China

资金

  1. International Science & Technology Cooperation Program of China [2012DFA91530]
  2. Fundamental Research Funds for the Central Universities [TD-JC-2013-2, BLX2012022]
  3. 1st Youth Excellent Talents Program of the Organization Department of the Central Committee of China

向作者/读者索取更多资源

China's aquaculture industry accounts for the largest share of the world's fishery production, and provides a principal source of protein for the nation's booming population. However, the environmental effects of the nutrient loadings produced by this industry have not been systematically studied or reviewed. Few quantitative estimates exist for nutrient discharge from aquaculture and the resultant nutrient enrichment in waters and sediments. In this paper, we evaluate nutrient discharge from aquacultural systems into aquatic ecosystems and the resulting nutrient enrichment of water and sediments, based on data from 330 cases in 51 peer-reviewed publications. Nitrogen use efficiency ranged from 11.7% to 27.7%, whereas phosphorus use efficiency ranged from 8.7% to 21.2%. In 2010, aquacultural nutrient discharges into Chinese aquatic ecosystems included 1044 Gg total nitrogen (184 Gg N from mariculture; 860 Gg N freshwater culture) and 173 Gg total phosphorus (22 Gg P from mariculture; 151 Gg P from freshwater culture). Water bodies and sediments showed high levels of nutrient enrichment, especially in closed pond systems. However, this does not mean that open aquacultural systems have smaller nutrient losses. Improvement of feed efficiency in cage systems and retention of nutrients in closed systems will therefore be necessary. Strategies to increase nutrient recycling, such as integrated multi-trophic aquaculture, and social measures, such as subsidies, should be increased in the future. We recommend the recycling of nutrients in water and sediments by hybrid agricultural-aquacultural systems and the adoption of nutrient use efficiency as an indicator at farm or regional level for the sustainable development of aquaculture; such indicators; together with water quality indicators, can be used to guide evaluations of technological, policy, and economic approaches to improve the sustainability of Chinese aquaculture.

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