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中国水产养殖氮收支趋势及其环境影响。

The trends of aquacultural nitrogen budget and its environmental implications in China.

机构信息

Center for Industrial Ecology, Department of Chemical Engineering, Tsinghua University, Beijing, 100084, China.

出版信息

Sci Rep. 2018 Jul 18;8(1):10877. doi: 10.1038/s41598-018-29214-y.

Abstract

The rapid development of aquaculture has sustained aquatic food production but has also led to a host of environmental problems, ranging from eutrophication of aquatic ecosystems to global acidification. China has become the world's largest producer and consumer of aquaculture products. Nitrogen is an essential nutrient in aquaculture ecosystems, and the quantitative environmental fate and impact of nitrogen during aquaculture processes have notable environmental consequences but have received little attention. Here, we established a nitrogen cycling model for China's aquaculture ecosystem to investigate the creation and fate of reactive nitrogen over a decadal time scale. A nitrogen balance analysis showed that reactive nitrogen input in the aquaculture ecosystem increased from 9.43 Tg N yr in 1978 to 18.54 Tg N yr in 2015, while aquaculture production increased from 0.034 to 1.33 Tg N yr during the same period. The environmental fate analysis showed that nitrogen emissions, accumulation, sediment deposition, and export into the oceans increased by 9.05-fold, 0.24-fold, 9.04-fold, and 2.56-fold, respectively. Finally, we investigated four scenarios representing different consumption levels of aquatic products and provided policy recommendations (larger aquaculture size, standardized aquaculture production model, nutritional element management and balanced dietary structure, etc.) on improved management practices in aquaculture ecosystems.

摘要

水产养殖业的快速发展维持了水生食品的生产,但也导致了一系列环境问题,从水生生态系统的富营养化到全球酸化。中国已成为世界上最大的水产养殖产品生产国和消费国。氮是水产养殖生态系统中的一种必需营养物质,水产养殖过程中氮的定量环境归宿和影响具有显著的环境后果,但却很少受到关注。在这里,我们建立了一个中国水产养殖生态系统的氮循环模型,以研究在十年时间尺度上活性氮的产生和归宿。氮平衡分析表明,水产养殖生态系统中活性氮的输入从 1978 年的 9.43TgNyr 增加到 2015 年的 18.54TgNyr,而同期水产养殖产量从 0.034TgNyr 增加到 1.33TgNyr。环境归宿分析表明,氮的排放、积累、沉积物沉积和向海洋的输出分别增加了 9.05 倍、0.24 倍、9.04 倍和 2.56 倍。最后,我们研究了代表不同水产品消费水平的四个情景,并就水产养殖生态系统的改善管理实践提出了政策建议(扩大水产养殖规模、标准化水产养殖生产模式、营养元素管理和均衡饮食结构等)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6b9/6052169/1e8cd95aa9b3/41598_2018_29214_Fig1_HTML.jpg

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