首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Use of hydride generation-atomic absorption spectrometry to determine the effects of hard ions, iron salts and humic substances on arsenic sorption to sorghum biomass
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Use of hydride generation-atomic absorption spectrometry to determine the effects of hard ions, iron salts and humic substances on arsenic sorption to sorghum biomass

机译:使用氢化物​​发生-原子吸收光谱法确定硬离子,铁盐和腐殖质对砷吸附高粱生物质的影响

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At present, there is a great interest in studying new sorbent materials for the removal of arsenic from aqueous solutions because of its high toxicity and adverse effects on human health. In previous research, sorghum biomass was found to be an efficient and economic sorbent for the removal of arsenic from aqueous solutions. In this investigation, the effects of CaCl2, MgCl2, FeSO4, MgSO4, Fe(NO3)(3), and humic substances (peat moss, humin and humic acids) on arsenic binding to sorghum biomass were evaluated. Among these compounds, only iron salts were found to positively increase the sorption of arsenic to sorghum biomass. In addition, the sorption equilibrium was reached faster when the reaction mixture contained iron salts. However, an overall reduction of 21% of arsenic sorption to sorghum biomass was observed in the presence of MgSO4. This interference may be due to the presence of sulfate ions, instead of the hard cations, that could be in competition with As for the same interaction sites or ligands. Peat moss, humins and humic acid, extracted from sphagnum peat moss, significantly decreased the arsenic sorption to sorghum biomass. (c) 2005 Elsevier B.V All rights reserved.
机译:目前,由于其高毒性和对人体健康的不利影响,研究用于从水溶液中去除砷的新型吸附剂材料引起了极大的兴趣。在先前的研究中,发现高粱生物质是一种从水溶液中去除砷的有效且经济的吸附剂。在这项研究中,评估了CaCl2,MgCl2,FeSO4,MgSO4,Fe(NO3)(3)和腐殖质(豆类,腐殖质和腐殖酸)对砷与高粱生物量结合的影响。在这些化合物中,仅发现铁盐可积极增加砷对高粱生物质的吸附。另外,当反应混合物包含铁盐时,吸附平衡更快地达到。然而,在硫酸镁的存在下,砷吸附对高粱生物质的吸收总体降低了21%。这种干扰可能是由于存在硫酸根离子而不是硬阳离子,与相同的相互作用位点或配体可能与As竞争。从泥炭藓泥炭藓中提取的泥炭藓,腐殖质和腐殖酸,显着降低了砷对高粱生物量的吸附。 (c)2005 Elsevier B.V保留所有权利。

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