首页> 外文期刊>Water Resources Management >A Scenario Based Impact Assessment of Trace Metals on Ecosystem of River Ganges Using Multivariate Analysis Coupled with Fuzzy Decision-Making Approach
【24h】

A Scenario Based Impact Assessment of Trace Metals on Ecosystem of River Ganges Using Multivariate Analysis Coupled with Fuzzy Decision-Making Approach

机译:基于情景的多元分析与模糊决策相结合的痕量金属对恒河生态系统的影响评估

获取原文
获取原文并翻译 | 示例
           

摘要

The growing consciousness about the health risks associated with environmental pollutants has brought a major shift in global concern towards prevention of hazardous/trace metals discharge in water bodies. Majority of these trace metals gets accumulated in the body of aquatic lives, which are considered as potential indicators of hazardous content. This results in an ecological imbalance in the form of poisoning, diseases and even death of fish and other aquatic lives, and ultimately affect humans through food chain. Trace metals such as Cd, Cr, Cu, Mn, Ni, Pb and Zn originated from various industrial operations containing metallic solutions and agricultural practices, have been contributing significantly to cause aquatic pollution. The present study develops a novel approach of expressing sustainability of river's ecosystem based on health of the fish by coupling fuzzy sensitivity analysis into multivariate analysis. A systematic methodology has been developed by generating monoplot, two dimensional biplot and rotated component matrix (using 'Analyze it' and 'SPSS' software), which can simultaneously identify critical trace metals and their industrial sources, critical sampling stations, and adversely affected fish species along with their interrelationships. A case study of assessing the impact of trace metals on the aquatic life of river Ganges, India has also been presented to demonstrate effectiveness of the model. The clusters pertaining to various water quality parameters have been identified using Principal Component Analysis (PCA) to determine actual sources of pollutants and their impact on aquatic life. The fuzzy sensitivity analysis reveals the cause-effect relationship of these critical parameters. The study suggests pollution control agencies to enforce appropriate regulations on the wastewater dischargers responsible for polluting river streams with a particular kind of trace metal(s).
机译:人们越来越意识到与环境污染物有关的健康风险,这已引起全球对防止水体中有害/痕量金属排放的关注的重大转变。这些痕量金属中的大多数积累在水生生物体内,被认为是潜在危险成分的指标。这导致中毒,疾病,甚至鱼类和其他水生生物死亡的形式的生态失衡,并最终通过食物链影响人类。痕量金属,例如Cd,Cr,Cu,Mn,Ni,Pb和Zn,源于包含金属溶液和农业实践的各种工业运营,对造成水生污染做出了重大贡献。本研究通过将模糊敏感性分析与多变量分析相结合,开发了一种基于鱼类健康来表达河流生态系统可持续性的新方法。通过生成单线图,二维双线图和旋转分量矩阵(使用“ Analyze it”和“ SPSS”软件),已经开发了一种系统方法,可以同时识别关键的痕量金属及其工业来源,关键的采样站和受不利影响的鱼类物种及其相互关系。还提供了一个评估痕量金属对印度恒河水生生物影响的案例研究,以证明该模型的有效性。已使用主成分分析(PCA)确定了与各种水质参数有关的类群,以确定污染物的实际来源及其对水生生物的影响。模糊敏感性分析揭示了这些关键参数的因果关系。该研究建议污染控制机构对废水排放者执行适当的法规,以用一种特定的痕量金属污染河水。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号