首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Investigation of distribution of soil antimony using sequential extraction and antimony complexed to soil-derived humic acids molar mass fractions extracted from various depths in a shooting range soil
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Investigation of distribution of soil antimony using sequential extraction and antimony complexed to soil-derived humic acids molar mass fractions extracted from various depths in a shooting range soil

机译:使用顺序提取法和锑结合于土壤腐殖酸摩尔质量分数从靶场土壤中不同深度提取土壤中锑的分布的研究

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摘要

Trace metal contamination from bullet fragments in shooting ranges is a major environmental concern. In particular, trace metals such as lead, antimony, and copper are toxic and have the potential to enter groundwater supplies and to be absorbed by plants. Soil humic acids can play a critical role in mobilizing some of these released metals through complexation. The purpose of this study is to investigate the antimony complexed to soil-derived humic molar mass fractions extracted from various depths in a shooting range soil and to examine the distribution of antimony in various fractions of shooting range soils using sequential chemical extraction approach. The surface soil and soil core samples from a local shooting range were collected. Soil-derived humic acids were extracted from different depths of the top soil layer and characterized by various spectroscopic methods. Results of sequential chemical extraction demonstrated that Sb was found in shooting range in the upper 30. cm depth of the soil core. Highly elevated Sb is present in the exchangeable and ammonium acetate extracted fractions. Antimony is also present in the residual fraction in both surface and core soil samples, but is most likely present in a lithic phase which may not be readily bio-available. Leached antimony complexed to soil humic acid molar mass fractions was determined by size exclusion chromatography coupled to inductively coupled plasma-mass spectrometry (SEC-ICP-MS). The results demonstrate that Sb is 'tightly' bound to humic acid mass molar mass fractions and confined in the top 10. cm of soil-derived humic acids.
机译:射击场中子弹碎片中的痕量金属污染是主要的环境问题。尤其是,铅,锑和铜等微量金属有毒,并且有可能进入地下水供应并被植物吸收。土壤腐殖酸在通过络合动员其中一些释放的金属中起关键作用。这项研究的目的是研究从靶场土壤中各个深度提取的与土壤腐殖质摩尔质量分数复合的锑,并使用顺序化学萃取方法研究靶场土壤各个组分中的锑分布。收集了当地射击场的地表土壤和土壤核心样品。从土壤表层的不同深度提取土壤来源的腐殖酸,并通过各种光谱学方法对其进行表征。连续化学提取的结果表明,在土壤芯上部30 cm的射击范围内发现了Sb。在可交换的乙酸铵萃取馏分中存在高度升高的Sb。锑还存在于表层和核心土壤样品的残留部分中,但很可能存在于可能不易被生物利用的岩相中。通过尺寸排阻色谱-电感耦合等离子体质谱法(SEC-ICP-MS)测定与土壤腐殖酸摩尔质量分数复合的浸出锑。结果表明,Sb与腐殖酸质量摩尔质量分数“紧密”结合,并局限在源自土壤的腐殖酸的前10厘米。

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