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锁磷剂联合好氧反硝化菌修复富营养化水体 被引量:3
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作者 李炳堂 周志勤 +3 位作者 ravi naidu 胡智泉 郭大滨 陈嘉鑫 《环境科学》 EI CAS CSCD 北大核心 2021年第4期1861-1869,共9页
氮磷是造成水体富营养化的主要原因,单一治理方法常常难以同时有效去除氮磷.本文利用1株分离自富营养化水体的好氧反硝化菌株(AD-19)构建固定化菌膜,并与锁磷剂Phoslock~?联合修复富营养化水体,研究了Phoslock®的控磷效能和反硝化... 氮磷是造成水体富营养化的主要原因,单一治理方法常常难以同时有效去除氮磷.本文利用1株分离自富营养化水体的好氧反硝化菌株(AD-19)构建固定化菌膜,并与锁磷剂Phoslock~?联合修复富营养化水体,研究了Phoslock®的控磷效能和反硝化菌的脱氮性能及二者联合作用时对富营养化水体的修复效果.结果表明,在投加比例为80(Phoslock®与PO^(3-)_(4)-P的质量比)的条件下,Phoslock®对模拟富营养化水体中PO^(3-)_(4)-P去除率可达95%以上,并能有效抑制底泥中磷的释放.好氧反硝化菌AD-19具有较好的异养硝化-好氧反硝化功能,在以NH^(+)_(4)-N或NO^(-)_(3)-N为唯一氮源条件下生长良好并能去除97%以上的氮,经16S rDNA鉴定该菌株属于假单胞菌属(Pseudomonas sp.).利用湖泊模拟装置论证了Phoslock®联合固定化菌膜修复富营养化水体的可行性,进一步地,利用该技术对武汉市某公园内富营养化池塘进行修复治理,经过16 d的处理,氮磷等水质指标从劣Ⅴ类地表水提升至Ⅲ类,并持续稳定270 d以上,证明Phoslock®联合固定化菌膜可快速和有效地修复富营养化水体,并保持水质长期稳定. 展开更多
关键词 富营养化 锁磷剂 好氧反硝化菌 生物膜 水体修复
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Preliminary Hydrogeologic Modeling and Optimal Monitoring Network Design for a Contaminated Abandoned Mine Site Area: Application of Developed Monitoring Network Design Software 被引量:3
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作者 Bithin Datta Frederic Durand +4 位作者 Solemne Laforge Om Prakash Hamed K. Esfahani Sreenivasulu Chadalavada ravi naidu 《Journal of Water Resource and Protection》 2016年第1期46-64,共19页
In abandoned mine sites, i.e., mine sites where mining operations have ended, wide spread contaminations are often evident, but the potential sources and pathways of contamination especially through the subsurface, ar... In abandoned mine sites, i.e., mine sites where mining operations have ended, wide spread contaminations are often evident, but the potential sources and pathways of contamination especially through the subsurface, are difficult to identify due to inadequate and sparse geochemical measurements available. Therefore, it is essential to design and implement a planned monitoring net-work to obtain essential information required for establishing the potential contamination source locations, i.e., waste dumps, tailing dams, pits and possible pathways through the subsurface, and to design a remediation strategy for rehabilitation. This study presents an illustrative application of modeling the flow and transport processes and monitoring network design in a study area hydrogeologically resembling an abandoned mine site in Queensland, Australia. In this preliminary study, the contaminant transport process modeled does not incorporate the reactive geochemistry of the contaminants. The transport process is modeled considering a generic conservative contaminant for the illustrative purpose of showing the potential application of an optimal monitoring design methodology. This study aims to design optimal monitoring network to: 1) minimize the contaminant solute mass estimation error;2) locate the plume boundary;3) select the monitoring locations with (potentially) high concentrations. A linked simulation optimization based methodology is utilized for optimal monitoring network design. The methodology is applied utilizing a recently developed software package CARE-GWMND, developed at James Cook University for optimal monitoring network design. Given the complexity of the groundwater systems and the sparsity of pollutant concentration observation data from the field, this software is capable of simulating the groundwater flow and solute transport with spatial interpolation of data from a sparse set of available data, and it utilizes the optimization algorithm to determine optimum locations for implementing monitoring wells. 展开更多
关键词 Groundwater Contamination Optimal Monitoring Network Design Linked Simulation Optimization Methodology Kriging Interpolation Mine Site Contamination
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