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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Simulation of seawater quality around Wailingding Island for coral protection
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Simulation of seawater quality around Wailingding Island for coral protection

机译:武装岛周边海水质量模拟珊瑚保护

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摘要

A hydrodynamic and water quality model for seawater around Wailingding Island was configured and validated. The model was further used to predict future scenarios in terms of increasement in sewage discharge and upgradation in sewage treatment, and the corresponding impacts on coral growth were assessed. Water quality parameters of interest included dissolved oxygen (DO), biochemical oxygen demand (BOD), NH4+-N and NO3--N. The validation results showed that the correlation coefficients for hydrodynamics and water quality were about 0.9 and 0.7, respectively; and the sewage discharge optimization should mainly control dissolved inorganic nitrogen (DIN) to support coral growth. The prediction and assessment indicated that when there was no sewage discharge, the DIN concentration was approximately 0.312 mg/L, which couldn't meet eutrophication required by coral, reducing the DIN concentration economically and effectively to decrease the impacts on coral was the goal of sewage discharge optimization. When sewage discharge rose to 1500 t/d, the DIN concentration of the area with coral distributed increased by 10.3%. Considering that local sewage treatment cost was expensive and seawater exchange capacity was strong, as well as to maximize the benefits, BOD and DIN emission control standards were proposed: 218 mg/L and 42 mg/L, respectively. These results were helpful for sewage discharge optimization and coral protection at Wailingding Island.
机译:配置卫生滨海水域水动力学和水质模型。该模型进一步用于预测污水处理中污水排放和升级的增加的情况,评估对珊瑚生长的相应影响。利益水质参数包括溶解氧(DO),生化氧需求(BOD),NH4 + -N和NO3 - n。验证结果表明,流体动力学和水质的相关系数分别为约0.9和0.7;并且污水放电优化应主要控制溶解的无机氮(DIN)以支持珊瑚生长。预测和评估表明,当没有污水排出时,DIN浓度约为0.312 mg / L,这可能无法满足珊瑚所需的富营养化,在经济上且有效地降低珊瑚的影响是对珊瑚的影响是目标污水排放优化。当污水排放升至1500吨/天时,珊瑚的DIN浓度分布增加了10.3%。考虑到当地污水处理成本昂贵且海水交换能力强劲,并提高了益处,BOD和DIN排放控制标准分别:218毫克/升和42毫克/升。这些结果有助于在Wailingding岛上的污水排放优化和珊瑚保护。

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