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通过 EEM-PARAFAC 与异谱二维相关分析深入了解高温堆肥来源腐殖酸与 Cu(II) 的络合作用。

Insight into complexation of Cu(II) to hyperthermophilic compost-derived humic acids by EEM-PARAFAC combined with heterospectral two dimensional correlation analyses.

机构信息

Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management, Guangdong Institute of Eco-environmental Science & Technology, Guangzhou 510650, China.

Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment, Jinan University, Guangzhou 510632, China.

出版信息

Sci Total Environ. 2019 Mar 15;656:29-38. doi: 10.1016/j.scitotenv.2018.11.357. Epub 2018 Nov 26.

Abstract

Hyperthermophilic composting has been demonstrated to overcome the disadvantages of conventional composting in products with better quality. However, the complexation of heavy metals to hyperthermophilic compost (HTC)-derived HA remains unclear. In the present work, using Cu(II) as the representative heavy metal, we investigated the binding process of Cu(II) to HAs derived from HTC, thermophilic compost (TC), and sewage sludge (SS). The complexation ability of three HAs was analyzed by the method of parallel factor (PARAFAC) coupled with hetero two-dimensional correlation spectroscopy (hetero-2DCOS) analyses. Results showed that HTC-derived HA has the greater complexation ability (log K = 5.68, CC = 1.21) than both TC-derived HA (log K = 5.27, CC = 0.94) and SS-derived HA (log K = 5.19, CC = 0.586), likely due to the higher humification degree, as well as the faster response of carboxyl and phenols to Cu(II) binding with HTC-derived HA. This study demonstrated that the utilization of HTC might provide an effective approach for remediation of Cu(II)-polluted soils. Moreover, PARAFAC analysis integrated with hetero-2DCOS offers a unique insight into understanding the correlation between HAs fractions and functional groups during the Cu(II) binding process.

摘要

嗜热堆肥已被证明可以克服传统堆肥在产品质量方面的缺点。然而,重金属与嗜热堆肥(HTC)衍生的 HA 之间的络合作用尚不清楚。在本工作中,我们以 Cu(II) 为代表的重金属,研究了 Cu(II)与 HTC、高温堆肥(TC)和污水污泥(SS)衍生的 HA 的结合过程。通过平行因子(PARAFAC)与异质二维相关光谱(hetero-2DCOS)分析相结合的方法,分析了三种 HA 的络合能力。结果表明,HTC 衍生的 HA 具有较强的络合能力(log K=5.68,CC=1.21),明显强于 TC 衍生的 HA(log K=5.27,CC=0.94)和 SS 衍生的 HA(log K=5.19,CC=0.586),可能是由于 HTC 衍生的 HA 具有较高的腐殖化程度,以及更快的羧基和酚类响应 Cu(II)结合。这项研究表明,利用 HTC 可能为 Cu(II)污染土壤的修复提供一种有效途径。此外,PARAFAC 分析与异质 2DCOS 的结合为理解 Cu(II)结合过程中 HA 分数和官能团之间的相关性提供了独特的见解。

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