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Arsenic speciation in plants growing in arsenic-contaminated sites

机译:在受砷污染的地区生长的植物中的砷形态

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摘要

Concentrations of total arsenic and of arsenic species were determined by ICPMS and HPLC-ICPMS in terrestrial plant samples. The arsenic concentration in plant samples from the contaminated sites ranged from 1.14 to 98.5 mg kg~(-1) (dry mass). However, a very high value, exceeding largely this range was found in a moss sample growing in the contaminated area (1750 mg kg~(-1)). Plants growing in a non-contaminated area with similar geological characteristics contained 0.06-0.58 mg As kg~(-1). Plant samples from different species were selected and extracted with water, water/methanol (9+1, v/v), and water/methanol (1 + 1, v/v). Water/methanol (9+1, v/v) was selected as extractant for the speciation analysis for all the plant samples. The extraction efficiencies ranged from 3.0% to 41.4%, with good agreement between samples from the same plant species. Arsenite and/or arsenate were found in all the plant samples. Additionally, methylarsonate (MA), dimethylarsinate (DMA), trimethylarsine oxide (TMAO) and tetramethylarsonium ion (TETRA) were also identified in several plants, and in some cases MA and DMA were the main species found. TMAO, which is usually found as a trace constituent in organisms, was also a significant arsenical in one of the studied samples, where it constituted 24% of the extracted arsenic. In the present study, the patterns of arsenic species varied with the plant species and much higher proportion of organoarsenicals was found in plants from the more contaminated sites.
机译:通过ICPMS和HPLC-ICPMS测定陆生植物样品中的总砷和砷种类的浓度。来自受污染地点的植物样品中的砷浓度范围为1.14至98.5 mg kg〜(-1)(干重)。但是,在受污染区域生长的苔藓样品中发现了非常高的值,大大超出了该范围(1750 mg kg〜(-1))。在具有相似地质特征的非污染区域生长的植物含有0.06-0.58 mg As kg〜(-1)。选择不同物种的植物样品,并用水,水/甲醇(9 + 1,v / v)和水/甲醇(1 + 1,v / v)提取。选择水/甲醇(9 + 1,v / v)作为萃取剂,用于所有植物样品的形态分析。提取效率范围为3.0%至41.4%,相同植物物种的样品之间具有良好的一致性。在所有植物样品中都发现了亚砷酸盐和/或砷酸盐。此外,在几家工厂中还发现了砷酸甲酯(MA),砷酸二甲酯(DMA),三甲基ar氧化物(TMAO)和四甲基ar离子(TETRA),在某些情况下,MA和DMA是发现的主要物种。在被研究的样品之一中,TMAO通常被发现是生物体中的微量成分,也是一种重要的砷,占萃取砷的24%。在本研究中,砷物种的模式随植物物种而变化,并且在受污染程度更高的植物中发现了更高比例的有机砷。

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