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利用荧光 X 射线荧光(FP-XRF)对土壤和其他地质材料中的元素浓度进行定性比较。

Qualitative comparison of elemental concentration in soils and other geomaterials using FP-XRF.

机构信息

Department of Civil Engineering, Indian Institute of Technology, New Delhi, Delhi, India.

Department of Biochemistry, College of Medicine & Health Science, School of Medicine, University of Gondar, Gondar, Ethiopia.

出版信息

PLoS One. 2022 May 20;17(5):e0268268. doi: 10.1371/journal.pone.0268268. eCollection 2022.

Abstract

Field portable X-ray fluorescence (FP-XRF) has tremendous potential in geoenvironmental engineering as a qualitative assessment tool. Identification of the elevated concentrations of the selected elements (Cr, Cu, Mn, Ni, Pb, and Zn) in various geomaterials like soil-like-material (SLM), incinerated bottom ash (IBA), construction and demolition waste (CDW), zinc tailings (ZT) and fly ash (FA) was performed by FP-XRF and compared with the local soil-Delhi silt. Comparably higher concentrations (mg/kg) of Cr (401.0), Cu (499.0), Pb (532.0), Zn (608.0) in SLM, Cr (195.0), Cu (419.0), Ni (93.0), Pb (931.0), Zn (771.0) in IBA and Cr (195.0), Cu (4000.0), Pb (671.0), Zn (7122.0) in ZT were observed. CDW and FA showed similar concentrations range as in local soils. FP-XRF was also used in-situ on local soil at 11 sites to examine its ability to identify the elements with significant variations in concentrations. The results showed high variability in Cl and S concentration values across the 11 sites attributed to the changing moisture content and dissolved salts. The concentration range for the remaining elements were similar at all sites. The verification of the detected elements through visual inspection of the spectrum was also carried out.

摘要

现场便携式 X 射线荧光(FP-XRF)在地球环境工程中作为一种定性评估工具具有巨大的潜力。通过 FP-XRF 对各种地质材料(如土壤状材料(SLM)、焚烧底灰(IBA)、建筑和拆除废物(CDW)、锌尾矿(ZT)和粉煤灰(FA))中选定元素(Cr、Cu、Mn、Ni、Pb 和 Zn)的浓度进行了识别,并与当地土壤-德里淤泥进行了比较。在 SLM 中,Cr(401.0)、Cu(499.0)、Pb(532.0)和 Zn(608.0)的浓度(mg/kg)相对较高,在 IBA 中,Cr(195.0)、Cu(419.0)、Ni(93.0)、Pb(931.0)和 Zn(771.0)的浓度较高,在 ZT 中,Cr(195.0)、Cu(4000.0)、Pb(671.0)和 Zn(7122.0)的浓度也较高。CDW 和 FA 的浓度范围与当地土壤相似。FP-XRF 还在 11 个地点的当地土壤上进行了原位检测,以检验其识别浓度有显著变化的元素的能力。结果表明,由于含水量和溶解盐的变化,11 个地点的 Cl 和 S 浓度值存在高度变异性。所有地点的剩余元素浓度范围相似。还通过检查光谱对检测到的元素进行了验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43d3/9122228/746b3d6db646/pone.0268268.g001.jpg

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