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Reduction mechanism of hexavalent chromium by functional groups of undissolved humic acid and humin fractions of typical black soil from Northeast China

机译:东北地区典型黑土纯黑土纯度纯度官能团的六价铬的还原机理

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Soil organic matters (SOM) have a great retention effect on Cr(VI) migration in subsurface environment, which act as the main electron donors for Cr(VI) reduction; however, Cr(VI) reduction mechanism by different SOM fractions is still unclear, such as undissolved humic acid (HA) and humin (HM). In this study, HA and HM fractions extracted from typical black soil from Northeast China were used to investigate the reaction mechanism between humus functional groups and Cr(VI). According to the results, phenol and hydroxyl were determined as the main electron donors for Cr(VI) reduction by HA and HM instead of carboxyl and carbonyl, which were more likely involved in Cr complexation. Furthermore, Cr(VI) reduction was more dependent on aromatic carbon, rather than aliphatic carbon, and functional groups on the particle surfaces of HA and HM were much more active for Cr(VI) reduction than their interior part. Additionally, HM was found to have a relatively low Cr(VI) reduction capability compared with HA resulting from its high content of cellulose structures that are quite resistant to Cr(VI) oxidation. These results suggest that in the soil environment, undissolved HA tends to play a much more important role than HM in Cr(VI) reduction and retention in the condition that their mass contents are comparable.
机译:土壤有机物(SOM)对地下环境中的Cr(vi)迁移具有很大的保留效果,作为Cr(vi)减少的主要电子给体;然而,Cr(VI)通过不同SOM级分的降低机制仍然不清楚,例如未溶解的腐殖酸(HA)和疏水(HM)。在本研究中,使用从东北地区的典型黑土提取的HA和HM级分探讨腐殖质官能团和Cr(VI)之间的反应机制。根据结果​​,通过HA和HM而不是羧基和羧基测定苯酚和羟基,而不是羧基和羰基,其更可能参与Cr络合。此外,Cr(VI)还更依赖于芳族碳,而不是脂族碳,HA和HM的颗粒表面上的官能团比其内部部分更活跃。另外,与其由其高含量的纤维素结构产生的HA相比,发现HM具有相对低的Cr(VI)还原能力,其纤维素结构非常耐受Cr(VI)氧化。这些结果表明,在土壤环境中,未溶解的HA倾向于在Cr(VI)减少和保留的条件下比HM更重要的作用,其质量含量可比较。

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