山东科学 ›› 2025, Vol. 38 ›› Issue (3): 109-117.doi: 10.3976/j.issn.1002-4026.20240155

• 海洋生态 • 上一篇    下一篇

浙江近岸陆域海水养殖氮磷排放通量估算

杜义炜1(), 李晓光2, 林田1,*()   

  1. 1.上海海洋大学 海洋科学与生态环境学院,上海 201306
    2.中国环境科学研究院流域水环境污染综合治理研究中心,北京 100012
  • 收稿日期:2024-12-24 出版日期:2025-06-20 发布日期:2025-06-26
  • 通信作者: 林田 E-mail:m220501233@st.shou.edu.cn;tlin@shou.edu.cn
  • 作者简介:杜义炜(1997—),男,硕士研究生,研究方向为环境地球化学数值模型。E-mail: m220501233@st.shou.edu.cn
  • 基金资助:
    国家重点研发计划重点专项(2021YFC3101700)

Estimation of nitrogen and phosphorus fluxes from land-based mariculture areas in coastal Zhejiang province

DU Yiwei1(), LI Xiaoguang2, LIN Tian1,*()   

  1. 1. College of Oceanography and Ecological Science, Shanghai Ocean University, Shanghai 201306, China
    2. Basin Research Center for Water Pollution Control, Chinese Research Academy of Environmental Sciences, Beijing 100012, China
  • Received:2024-12-24 Online:2025-06-20 Published:2025-06-26
  • Contact: LIN Tian E-mail:m220501233@st.shou.edu.cn;tlin@shou.edu.cn

摘要:

营养盐通量清单的构建为了解其在海水养殖体系中的归趋提供科学依据,从而促进近岸海域环境的可持续发展。该研究对浙江沿海地区(宁波、台州、温州、舟山)的陆域海水养殖区尾水中氮磷营养盐质量浓度进行实地采样检测。结果显示养殖区1 018个采样点的排口尾水中总氮质量浓度主要集中在0.015~36.000 mg/L,总磷质量浓度主要集中在0.005~2.860 mg/L;总体上,超过90%的样品低于浙江省《海水养殖尾水排放标准》的二级排放标准。采用化学分析法和排污系数法两种方法用于估算区域陆域海水养殖尾水氮磷通量。化学分析法结果显示总氮和总磷的年排放通量分别是2 969.2 t和83.6 t。三四季度的总氮和总磷通量均占到全年通量的84.4%,该时段处于当地海水养殖收获期,排放量集中,并且受洋流和长江冲淡水等作用的影响,应注意防范水体富营养化发生。化学分析法估算结果低于排污系数法的4 634.3 t/a和801.4 t/a,该研究认为绝大部分氮磷进入排口附近的底泥。底泥氮磷负荷持续输入会增加二次释放风险,提升临近海域发生富营养化的潜在风险。

关键词: 化学分析法, 总氮总磷, 排放通量, 陆域海水养殖, 浙江沿海

Abstract:

Understanding nutrient flux in aquaculture systems is critical for sustainable coastal environmental management. This study comprehensively investigated nitrogen and phosphorus dynamics in land-based mariculture across four coastal cities of Zhejiang province: Ningbo, Taizhou, Wenzhou, and Zhoushan, utilizing data from 1 018 sampling points at marine outfalls. Elemental concentration analyses revealed total nitrogen levels ranging from 0.015 to 36.000 mg/L, with total phosphorus concentrations between 0.005 and 2.860 mg/L. Notably, over 90% of the samples remained within Category II of the Zhejiang Province Mariculture Tailwater Discharge Standards, indicating relatively controlled nutrient emissions. Employing both chemical analysis and pollution discharge coefficient methodologies, we estimated the annual nutrient flux from land-based mariculture tailwaters. Chemical analysis methods indicated annual total nitrogen and phosphorus fluxes of 2 969.2 t and 83.6 t, respectively. Significantly, the third and fourth quarters contributed 84.4% of the annual nutrient flux, coinciding with peak harvesting periods and influenced by complex hydrodynamic factors including oceanic currents and Yangtze River dilution waters. Comparative analysis between methodological approaches revealed substantial discrepancies, with pollution discharge coefficient methods estimating higher annual fluxes(4 634.3 t nitrogen and 801.4 t phosphorus). These variations suggest considerable nutrient sequestration within bottom sediments, presenting potential long-term environmental implications. The continuous accumulation of nitrogen and phosphorus in sedimentary environments raises critical concerns about secondary nutrient release mechanisms and escalating eutrophication risks in adjacent marine ecosystems. These findings underscore the necessity for sophisticated nutrient management strategies in coastal mariculture systems.

Key words: chemical analysis method, total nitrogen and total phosphorus, fluxes, land-based mariculture, coastal Zhejiang

中图分类号: 

  • P748

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