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首页> 外文期刊>Analytical chemistry >Effect of metal ions on the molecular weight distribution of humic substances derived from municipal compost: Ultrafiltration and size exclusion chromatography with spectrophotometric and inductively coupled plasma-MS detection
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Effect of metal ions on the molecular weight distribution of humic substances derived from municipal compost: Ultrafiltration and size exclusion chromatography with spectrophotometric and inductively coupled plasma-MS detection

机译:金属离子对市政堆肥中腐殖质分子量分布的影响:超滤和尺寸排阻色谱-分光光度法和电感耦合等离子体-MS检测

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摘要

The effect of metal ions (Co, Cu, Ni, Pb, Zn) on the molecular weight distribution of humic substances (HSs) obtained from compost is studied. We believe this is the first of this type of study applied in this way to humic substances. Size exclusion chromatography is coupled with two on-line detection systems (spectrophotometric and ICPMS) to study the binding of metal ions by humic substances leached from compost. ICPMS provided highly specific, sensitive, and multielement analytical information that enabled obtaining direct experimental evidence for the participation of metal ions in molecular size distributions of humic compounds. The compost extract or its high molecular weight fraction (>5000) was put in contact with EDTA or citrate ions, thereby competing with HSs for binding metals. The experiments were carried out by varying the pH maintained by Tris-HCl or CAPS buffer (pH 8.0 and 10.3) and keeping the ionic strength constant. The elution profile of humic substances using UV/visible detection was compared with those from ICPMS detection of Co, Cu, Ni, Pb, and Zn in the same chromatographic runs. The results obtained suggested that both bridging between small molecules and complexation/chelation by individual molecules are involved in metal ion binding to humic substances. The use of lCPMS to study the role of metal ions in aggregation/disassociation of humic substances proposed in this work is promising. Coupling element-specific detection with SEC or other separation systems allows better understanding of the mobility and bioaccessibility of elemental species in the environment and further elucidation of the dissolved humic structure. [References: 38]
机译:研究了金属离子(Co,Cu,Ni,Pb,Zn)对堆肥中腐殖质(HSs)分子量分布的影响。我们认为,这是这种类型的研究首次应用于腐殖质研究。尺寸排阻色谱仪与两个在线检测系统(分光光度法和ICPMS)结合使用,以研究堆肥中浸出的腐殖质对金属离子的结合。 ICPMS提供了高度特异性,灵敏和多元素的分析信息,从而能够获得有关金属离子参与腐殖质化合物分子大小分布的直接实验证据。将堆肥提取物或其高分子量部分(> 5000)与EDTA或柠檬酸根离子接触,从而与HS竞争结合金属。通过改变Tris-HCl或CAPS缓冲液保持的pH值(pH 8.0和10.3)并保持离子强度恒定来进行实验。在相同的色谱运行中,将使用紫外/可见光检测的腐殖质的洗脱曲线与通过ICPMS检测的Co,Cu,Ni,Pb和Zn的洗脱曲线进行了比较。获得的结果表明,小分子之间的桥接和单个分子的络合/螯合都涉及金属离子与腐殖质的结合。这项工作中提出的使用LCPMS研究金属离子在腐殖质聚集/解离中的作用是有前途的。与SEC或其他分离系统耦合的特定元素检测可以更好地理解环境中元素物种的迁移率和生物可及性,并进一步阐明溶解的腐殖质结构。 [参考:38]

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