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首页> 外文期刊>Environmental Science: Processes & Impacts >Geochemical behaviour of palladium in soils and Pd/PdO model substances in the presence of the organic complexing agents L-methionine and citric acid
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Geochemical behaviour of palladium in soils and Pd/PdO model substances in the presence of the organic complexing agents L-methionine and citric acid

机译:有机络合剂L-蛋氨酸和柠檬酸存在下钯在土壤和Pd / PdO模型物质中的地球化学行为

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摘要

Risk assessments of platinum group metal (PGE) emissions, notably those of platinum (Pt), palladium (Pd) and rhodium (Rh), have been mostly based on data regarding the metallic forms used in vehicular exhaust converters, known to be virtually biologically inert and immobile. To adequately assess the potential impacts of PGE, however, data on the chemical behaviour of these metals under ambient conditions post-emission is needed. Complexing agents with a high affinity for metals in the environment are hypothesized to contribute to an increased bioaccessibility of PGE. The purpose of this study is to examine the modulating effects of the organic complexing agents, L-methionine and citric acid, on the geochemical behavior of Pd in soils and model substances (Pd black and PdO). Batch experimental tests were conducted with soils and model substances to examine the impacts of the concentration of complexing agents, pH and length of extraction period on Pd solubility and its chemical transformation. Particle surface chemistry was examined using X-ray photoelectron spectroscopy (XPS) on samples treated with solutions under various conditions, including low and high O-2 levels. Pd was observed to be more soluble in the presence of organic complexing agents, compared to Pt and Rh. Pd in soils was more readily solubilized with organic complexing agents compared to the model substances. After 7 days of extraction, L-methionine (0.1 M) treated soil and Pd black samples, for instance, had mean soluble Pd fractions of 12.4 +/- 5.9% and 0.554 +/- 0.024%, respectively. Surface chemistry analyses (XPS) confirmed the oxidation of metallic Pd surfaces when treated with organic complexing agents. The type of organic complexing agent used for experimental purposes was observed to be the most important factor influencing solubility, followed by solution pH and time of extraction. The results demonstrate that metallic Pd can be transformed into more bioaccessible species in the presence of organic complexing agents which are ubiquitous in the environment.
机译:铂族金属(PGE)排放的风险评估,特别是铂(Pt),钯(Pd)和铑(Rh)的风险评估,主要是基于有关车辆排气转换器中使用的金属形态的数据,已知这些物质实际上是生物学上的惰性和固定性。为了充分评估PGE的潜在影响,需要有关这些金属在排放后环境条件下化学行为的数据。假设对环境中的金属具有高亲和力的络合剂有助于增加PGE的生物可及性。这项研究的目的是研究有机络合剂L-蛋氨酸和柠檬酸对土壤和模型物质(钯黑和钯)中钯的地球化学行为的调节作用。对土壤和模型物质进行了批量实验测试,以检查络合剂浓度,pH和萃取时间长度对Pd溶解度及其化学转化的影响。使用X射线光电子能谱(XPS)在各种条件下(包括低和高O-2含量)用溶液处理的样品上检查了颗粒表面化学。与Pt和Rh相比,观察到Pd在有机络合剂存在下更可溶。与模型物质相比,土壤中的钯更容易被有机络合剂溶解。提取7天后,例如,经L-蛋氨酸(0.1 M)处理的土壤和Pd黑色样品的平均可溶性Pd分数分别为12.4 +/- 5.9%和0.554 +/- 0.024%。表面化学分析(XPS)证实了用有机络合剂处理后金属Pd表面的氧化。观察到用于实验目的的有机络合剂类型是影响溶解度的最重要因素,其次是溶液的pH值和萃取时间。结果表明,在环境中普遍存在的有机络合剂的存在下,金属钯可以转化为生物可利用的物种。

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