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广东阳江“海上风电+海洋牧场”生态发展可行性初探

Preliminary Discussion on the Ecological Development Feasibility of "Offshore Wind Power + Ocean Ranch" in Yangjiang, Guangdong

  • 摘要:
        目的   海洋牧场与海上风电融合发展是现代农业和新能源产业高效结合发展的典型代表,为了响应国家“用海空间立体化、资源利用最大化”的政策,缓解港口海域水产资源的供给压力,对广东阳江“海上风电+海洋牧场”生态发展可行性进行了初步探究。
        方法   根据《水和废水监测分析方法》和《海洋监测规范》,采用紫外可见分光光度计、体视显微镜、生物显微镜等对三峡阳江海上风电海域的叶绿素α与初级生产力以及海洋生物种类进行了统计和分析。
        结果   研究表明:调查海域叶绿素α含量平均值为1.79 mg/m3,初级生产力平均值为353.05 mg·C/(m2·d),共鉴定出浮游植物4门77种,浮游动物11门76种,大型底栖生物5门31种,潮间带生物5门43种,游泳动物3门37种。
        结论   本项目所处海域初级生产力较高,浮游植物、浮游动物、大型底栖生物、潮间带生物、游泳动物等物种丰富,具备“海上风电+海洋牧场”融合发展的生态基础和优势,也具有较大的渔业资源潜力和建设海洋牧场的可行性。

     

    Abstract: Introduction The combination of ocean ranch and offshore wind power is a typical case of the efficient integrated development of modern agriculture and new energy industry. This paper makes a preliminary discussion on the feasibility of the ecological development of "offshore wind power + ocean ranch" in Yangjiang, Guangdong, which responding to the national policy of "three-dimensional use of sea space and maximum utilization of resources" and relieving the supply pressure of aquatic resources in port waters.
        Method   According to the methods of monitoring and analysis of water and waste water and the specifications for marine monitoring, the chlorophyll α and primary productivity as well as the species of marine organisms in offshore wind power area of China Three Gorges Corporation in Yangjiang were counted and analyzed by means of ultraviolet visible spectrophotometer, stereomicroscope, biomicroscope, etc.
        Result   It showed that the average value of chlorophyll α content was 1.79 mg / m3 in the surveyed sea area, the average value of primary productivity was 353.05 mg·C/(m2·d). Besides, There are 4 phyla and 77 species of phytoplankton, 11 phyla and 76 species of zooplankton, 5 phyla and 31 species of macrobenthos, 5 phyla and 43 species of intertidal organisms, and 3 phyla and 37 species of nekton.
        Conclusion   The sea area of the offshore wind power has high primary productivity, which is also rich in phytoplankton and zooplankton, large benthic organisms, intertidal organisms, nekton, etc. Thus, it has ecological foundation and advantages of the integrated development of "offshore wind power + ocean ranch", and also has great potential for fishery resources and the feasibility of ocean ranch construction.

     

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