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一种用于环境危害评估的工业和城市废料量化新方法。

A novel method for the quantification of industrial and municipal waste materials for environmental hazard assessment.

作者信息

Arifin Mohd Hariri, Kayode John Stephen, Ismail Muhammad Khairel Izzuan, Abdullah Abdul Manan, Embrandiri Asha, Nazer Nor Shahidah Mohd, Azmi Azrin

机构信息

Program Geologi, Pusat Sains Bumi dan Alam Sekitar, Fakulti Sains dan Teknologi, Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor, Malaysia.

Universiti Teknologi PETRONAS, Institute of Hydrocarbon Recovery, Department of Research and Innovations. Shale Gas Research Group, Persiaran UTP, 32610 Seri Iskandar, Perak Darul Ridzuan, Malaysia.

出版信息

MethodsX. 2020 Dec 16;8:101182. doi: 10.1016/j.mex.2020.101182. eCollection 2021.

Abstract

A novel methodological approach was developed to quantified the volume of industrial waste desposal (IWD) site, combined with municipal waste materials (MWM), through the integration of a non-invasive, fast, and less expenssive RES2-D Electrical Resistivity Technique (ERT), using Wenner-Schlumberger electrode array geophysical method with Oasis Montaj software. Underground water bearing structures, and the eco-system are being contaminated through seepage of the plumes emanating from the mixtures of the industrial waste materials (IWM), made of moist cemented soil with municipal solid wastes (MSW) dumped at the site. The distribution of the contiminant hazardous plumes emanating from the waste materials' mixtures within the subsurface structural lithological layers was clearly map and delineated within the near-surface structures, using the triplicate technique to collect samples of the soil with the waste mixtures, and the water analysis for the presence of dissolved ions. The deployed method helped to monitor the seepage of the contaminant leachate plumes to the groundwater aquifer units via the ground surface, through the subsurface stratum lithological layers, and hence, estimation of the waste materials' volume was possibly approximated to be 312,000 m. In summary, the novel method adopted are as presented below:•The novel method is transferable, reproduce-able, and most importantly, it is unambiguous technique for the quantification of environmental, industrial and municipal waste materials.•It helps to map the distribution of the plumes emanating from the waste materials' mixtures within the subsurface structural lithological layers that was clearly delineated within the near-surface structures underlain the study site.•The procedure helped in the monitoring of leachate contaminants plumes seepages into the surface water bodies and the groundwater aquifer units, via the ground surface, through to the porous subsurface stratum lithological layers.

摘要

开发了一种新的方法来量化工业废物处置(IWD)场地与城市废物材料(MWM)结合后的体积,该方法通过整合一种非侵入性、快速且成本较低的RES2-D电阻率技术(ERT),采用温纳-施伦贝格尔电极阵列地球物理方法并结合Oasis Montaj软件。工业废料(IWM)由潮湿的水泥土与倾倒在该场地的城市固体废物(MSW)混合而成,其产生的羽状物通过渗漏正在污染地下含水层结构和生态系统。利用重复技术采集含有废物混合物的土壤样本,并对水中溶解离子进行分析,从而清晰地绘制并勾勒出近地表结构内废物材料混合物产生的污染物有害羽状物在地下结构岩性层中的分布。所采用的方法有助于监测污染物渗滤液羽状物通过地表、地下岩性层向地下水含水层单元的渗漏情况,因此,估计废料体积约为312,000立方米。总之,所采用的新方法如下:

• 该新方法具有可转移性、可重复性,最重要的是,它是一种明确的技术,可用于量化环境、工业和城市废物材料。

• 它有助于绘制废物材料混合物产生的羽状物在地下结构岩性层中的分布,该分布在研究场地下方的近地表结构中清晰界定。

• 该程序有助于监测渗滤液污染物羽状物通过地表、直至多孔的地下岩性层渗入地表水体和地下水含水层单元的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a23/7749425/81d31fb4a965/fx1.jpg

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