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Fuzzy logic-based modeling of the impact of industrial activities on the environmental status of an industrial estate in Nigeria

机译:基于模糊逻辑的尼日利亚工业活动对工业区环境状况影响的建模

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Industrial growth is being attributed W_2th adverse environmental effects and has necessitated stricter environmental management policies. Formulating such policies is limited by the difficulty in understanding the trends of monitoring data. This study is aimed at the application of fuzzy comprehensive assessment (FCA) to integrate environmental contaminants in Agbara industrial estate, Nigeria, to measure the extent of impact of industrial activities on the host community. Samples of water, plants (Pteridium aquilinum, Sacciolepis afrkana, and Panicum maximum), soil, and sediments were collected W_2thin the estate. Water samples were analyzed for quality parameters using standard methods. Metals (Co, Cr, Cd, Cu, and Mn) were investigated in all the samples using an atomic absorption spectrophotometer. The data were modeled W_2th FCA. The results showed Cr as the major contaminant (34-252 μgL~(-1)). High phosphate contributed to large plant growth in the area. FCA results showed that water samples were in the pristine classification; sediment samples were extremely impacted. The vegetation growth and the sediment precipitation were responsible for the cleaning-up of the pollutants discharged downstream. The FCA of the plants indicated high metal bioaccumulation and not only showed the plants' phyto-remediation potential but also that the metals may pose threats to human health through the food web. The activities in the estate are contributing contaminants to the environment With potential negative effects.
机译:工业增长被认为是对环境的不利影响,因此必须采取更严格的环境管理政策。由于难以理解监视数据的趋势,制定此类策略受到限制。这项研究旨在应用模糊综合评估(FCA)整合尼日利亚Agbara工业区中的环境污染物,以衡量工业活动对所在社区的影响程度。在庄园内的W_2处收集了水,植物(蕨类植物,翼形a和最大的沙棘),土壤和沉积物的样本。使用标准方法分析水样品的质量参数。使用原子吸收分光光度计对所有样品中的金属(钴,铬,镉,铜和锰)进行了研究。数据建模为W_2th FCA。结果表明,Cr是主要污染物(34-252μgL〜(-1))。高磷酸盐促进了该地区大型植物的生长。 FCA结果表明,水样品属于原始分类。沉积物样品受到极大影响。植被的生长和沉积物的沉淀是清除下游排放污染物的原因。植物的FCA表明金属具有很高的生物蓄积性,不仅显示出植物的植物修复潜力,而且还表明金属可能通过食物网对人类健康构成威胁。庄园内的活动正在向环境中排放污染物,并可能产生负面影响。

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