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Dynamics of dissolved nutrients in the aquaculture shrimp ponds of the Min River estuary, China: Concentrations, fluxes and environmental loads

机译:中国the江河口水产养殖虾塘中溶解养分的动态:浓度,通量和环境负荷

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摘要

Dissolved inorganic nutrients (NO~-_2 -N, NO~-_3 -N, NH~+-N, and PO~3_4 -P) play a critical role in the effective management of water quality and prevention of fish and shrimp diseases in aquaculture systems. In this study, dissolved inorganic nutrient concentrations in the water column and sediment porewater, and the fluxes across the sediment-water interface (SWI) were investigated in three intensive shrimp ponds with zero water exchange to examine nutrient cycling during the different growth stages of shrimps. Distinct changes in the dissolved inorganic nutrient concentrations in both the water column and sediment porewater were observed among the three growth stages. Average NO~-_2-N, NO~-_3-N, NH+_4, and PO~(3-)_4-P concentrations in the sediment porewater were 3.53,2.81,29.68, and 6.44 times higher, respectively, than those in the water column over the study period, indicating that the pond sediment acted as a net source of nutrients to the water column. This was further supported by the net release of nutrients from the sediments to the water column observed during the incubation experiment Nutrient fluxes were dominated by NH~+_4-N, while NO~-_x-N (NO~-_2-N and NO~-_3-N) and PO~(3-)_4-P fluxes remained low. The high rates of NH~+_4-N release from the sediment highlight the need of taking into account the biogeochemical role of sediments in mitigating the problem of water quality degradation in coastal shrimp ponds. Based on a total water surface area of mariculture ponds and a total mariculture production of 2.57 x 10~6 ha and 2.30 x 10~9 kg, respectively, we estimated conservatively that approximately 4.77 x 10~4 tons of total nitrogen and 3.75 x 10~3 tons of total phosphorus are being discharged annually from the mariculture ponds into the adjacent coastal zones across China. Results demonstrated the importance of aquaculture pond effluent as a major contributor of water pollution in the coastal areas of China, and called for actions to properly treat these effluents in alleviating the eutrophication problem in the Chinese coastal zones.
机译:溶解的无机养分(NO〜-_2 -N,NO〜-_3 -N,NH〜+ -N和PO〜3_4 -P)在有效管理水质和预防鱼虾疾病中起着至关重要的作用。水产养殖系统。在这项研究中,研究了三个零水交换的集约化虾塘中水柱和沉积物孔隙水中溶解的无机养分浓度以及穿过沉积物-水界面(SWI)的通量,以研究虾在不同生长阶段的养分循环。 。在三个生长期中,水柱和沉积物孔隙水中溶解的无机养分浓度发生了明显变化。沉积物孔隙水中的平均NO〜-_2-N,NO〜-_3-N,NH + _4和PO〜(3-)_ 4-P浓度分别比沉积物平均高3.53、2.81、1,29.68和6.44倍在研究期间,水柱中的磷含量较高,这表明池塘的沉积物是水柱中养分的净来源。在温育实验中观察到的营养物从沉积物向水柱的净释放进一步支持了这一点,其中养分通量以NH〜+ _4-N为主,而NO〜-_x-N(NO〜-_2-N和NO 〜-_3-N)和PO〜(3-)_ 4-P通量保持较低水平。从沉积物中释放出较高的NH〜+ _4-N速率突显了需要考虑沉积物在缓解沿海虾塘水质退化问题中的生物地球化学作用。根据海水养殖场的总水表面积和海水养殖总产量分别为2.57 x 10〜6公顷和2.30 x 10〜9千克,我们保守地估计大约有4.77 x 10〜4吨的总氮和3.75 x 10每年约有3吨总磷从海水养殖池排放到中国附近的沿海地区。结果表明,在中国沿海地区,水产养殖池塘污水是造成水污染的主要因素,并呼吁采取适当措施处理这些污水,以减轻中国沿海地区的富营养化问题。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|256-267|共12页
  • 作者单位

    School of Geographical Sciences, Fujian Normal University. Fuzhou 350007, PR China,Key Laboratory of Humid Subtropical Eco-geographical Process of Ministry of Education, Fujian Normal University, Fuzhou 350007, PR China;

    Department of Geography and Resource Management, and Centre for Environmental Policy and Resource Management, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China;

    School of Geographical Sciences, Fujian Normal University. Fuzhou 350007, PR China;

    Department of Thematic Studies-Environmental Change, Linkoeping University, Linkoeping. Sweden;

    School of Geographical Sciences, Fujian Normal University. Fuzhou 350007, PR China;

    School of Geographical Sciences, Fujian Normal University. Fuzhou 350007, PR China,Key Laboratory of Humid Subtropical Eco-geographical Process of Ministry of Education, Fujian Normal University, Fuzhou 350007, PR China,Research Centre of Wetlands in Subtropical Region, Fujian Normal University, Fuzhou 350007, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Porewater; Nutrient dynamics; Sediment-water interface; Prawn culture; Eutrophication; Estuary;

    机译:孔隙水;营养动态;泥沙-水界面;大虾文化;富营养化河口;

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