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首页> 外文期刊>THE CANADIAN MINERALOGIST >EVIDENCE OF Cu- AND Ni-BEARING SURFACE PRECIPITATES AND ADSORPTION COMPLEXES IN REMEDIATED SOILS AT THE NANOSCALE: A TEM, MICRO-RAMAN, AND LASER-ABLATION ICP-MS STUDY OF MINERAL SURFACE COATINGS
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EVIDENCE OF Cu- AND Ni-BEARING SURFACE PRECIPITATES AND ADSORPTION COMPLEXES IN REMEDIATED SOILS AT THE NANOSCALE: A TEM, MICRO-RAMAN, AND LASER-ABLATION ICP-MS STUDY OF MINERAL SURFACE COATINGS

机译:纳米尺度的修复土壤中Cu-和Ni轴承表面沉淀和吸附络合物的证据:TEM,微拉曼和矿物表面涂层的激光烧蚀ICP-MS研究

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摘要

Contaminated soils in the Greater Sudbury area (Ontario, Canada) exhibit elevated Cu and Ni concentrations whose geochemical behavior appears contradictory, with Cu appearing to be more mobile than Ni due to its enriclunent in the exchangeable. Fe-Mn-oxide, and organic fractions. Although the differential release of Cu and Ni from smelter-derived particulate matter is well understood, their uptake and storage by secondary phases in mineral surface coatings of the soils in the Greater Sudbury area is not. Coatings on mineral surfaces play an important role in the retention and release of metal(loid)s in soils, as they have large surface areas which in turn are favorable areas for the promotion of dissolution, precipitation, diffusion, adsorption, and nucleation processes. To assess the relationship of mineral surface coatings with Cu and Ni in soils that were previously acidic and have now been remediated, soil samples to a depth of <5 cm from the Greater Sudbury area (towns of Falconbridge, Copper Cliff, and Coniston) have been collected. The mineral surface coatings were examined using Focused ion Beam technology, Transmission Electron Microscopy, and Raman Spectroscopy to characterize their mineralogical compositions at the nano- to micrometer scale, complemented by Laser-ablation inductively-coupled plasma mass spectroscopy to determine the metal(loid)s abundance in mineral surface coatings. Chemical distribution maps for Cu and Ni indicate their common occurrence in Fe-(hydr)oxides and minerals of the spinel group, whereas elevated concentrations for Cu also occur in minerals of the jarosite group and P-enriched Fe-hydroxides. A comparison with previous studies on the Sudbury soils shows that the average Cu# [Cui(Cu +Ni)] in all examined coatings agees surprisingly well with the average Cu# in the exchangeable and Fe-Mn-oxide fraction in surticial soils from the same areas, indicating that Cu- and Ni-bearing phases in mineral surface coatings belong to the exchangeable and Fe-Mn-oxide fractions of the soils. The occurrences of metal(loid)-rich phosphates and Cu-phosphate adsorption complexes within Fe-(hydr)oxide grains and coatings suggests a reduction in bioavailability of these metal(loid)s through the application of a phosphate-bearing fertilizer during remediation, in agreement with previous studies on the bioavailabiliq' of metal(loid)s in contaminated soils of the Greater Sudbury Area.
机译:萨姆伯里地区(安大略省,加拿大)污染的土壤表现出高型Cu和Ni浓度,其地球化学行为出现矛盾,由于其在可更换中的令人兴奋剂,CU出现比NI更多。 Fe-Mn-氧化物和有机级分。虽然来自冶炼衍生的颗粒物质的Cu和Ni的差异释放得到了很好的理解,但它们的吸收和储存通过萨姆伯里地区的土壤中的矿物表面涂层中的次生阶段的吸收和储存。矿物表面上的涂层在土壤中的金属(懒惰)S的保留和释放中起重要作用,因为它们具有大的表面区域,这反过来是促进溶解,沉淀,扩散,吸附和成核过程的有利区域。为了评估以前酸性的土壤中矿物表面涂层与Cu和Ni的关系,现在已经过修复,土壤样品到距离大萨德伯里地区(Falconbridge,Coplectick和Coniston)的5厘米的深度被收集。使用聚焦离子束技术,透射电子显微镜和拉曼光谱检查矿物表面涂层,以在纳米至微米级刻度表征其矿物学组合物,通过激光烧蚀电感耦合等离子体质谱进行互补,以确定金属(懒惰)矿物表面涂层的丰度。用于Cu和Ni的化学分布图表明它们在尖晶石基团的Fe-(氢)氧化物和矿物质中的常见发生,而Cu的升高浓度也发生在Jar硅基和富氢氧化物的矿物质中。与苏布雷土壤的先前研究的比较表明,所有检查的涂层中的平均Cu#[Cui(Cu + Ni)]令人惊讶地良好地均匀地良好地良好地良好地良好地良好地良好地良好地良好地良好地良好地良好地良好地良好地与来自相同的区域,表明矿物表面涂层中的Cu-和Ni轴承相属于土壤的可交换和Fe-Mn-氧化物部分。 Fe-(氢)氧化物颗粒和涂料内的金属(沸腾) - 磷酸盐和Cu-磷酸盐吸附络合物的出现表明,通过在修复过程中施加磷酸盐肥料,同意以前关于大萨德伯里地区污染土壤的BioAvaiaBiliq'的研究。

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