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一种低成本且环保的粉末催化剂:生物炭/地质聚合物负载的铁和铜纳米颗粒用于活化过一硫酸钾以降解水中和土壤中的萘。

A low-cost and eco-friendly powder catalyst: Iron and copper nanoparticles supported on biochar/geopolymer for activating potassium peroxymonosulfate to degrade naphthalene in water and soil.

机构信息

College of Chemistry and Material Science, Key Laboratory of Agricultural Film Application of Ministry of Agriculture and Rural Affairs, Shandong Agricultural University, Taian, 271018, Shandong, PR China.

College of Life Sciences, Shandong Agricultural University, Taian, 271018, Shandong, PR China.

出版信息

Chemosphere. 2022 Sep;303(Pt 2):135185. doi: 10.1016/j.chemosphere.2022.135185. Epub 2022 May 31.

DOI:10.1016/j.chemosphere.2022.135185
PMID:35660396
Abstract

A low-cost and environment-friendly biochar/geopolymer composite loaded with Fe and Cu nanoparticles (Fe-Cu@BC-GM) was prepared by impregnation-calcination using lignin and kaolin as precursors. SEM, FTIR and XRD analysis suggested that the Fe-Cu@BC-GM had a certain pore structure, rich functional groups and stable crystal structure. The obtained Fe-Cu@BC-GM was used as the catalyst of potassium peroxymonosulfate (PMS) for remediation of wastewater and soil polluted by naphthalene (NAP). Experimental results indicated that Fe-Cu@BC-GM exhibited outstanding catalytic performance, and the maximum degradation rate of NAP in water and soil reached 98.35% and 67.98% within 120 min, respectively. The XPS measurement confirmed the presence of successive Fe (Ⅲ)/Fe (Ⅱ) and Cu(Ⅱ)/Cu(Ⅰ) redox pairs cycles on the surface of Fe-Cu@BC-GM, which made Fe (Ⅲ) and Cu(Ⅰ) continuously generated Fe (Ⅱ) activating PMS to produce SO and ·OH for the degradation of NAP. The effects of Fe-Cu@BC-GM/PMS system on plant toxicity were evaluated by analyzing the degradation intermediates and bioassay of mung bean. It was proved that the Fe-Cu@BC-GM/PMS system could degrade NAP into less toxic intermediates, and the seed germination rate, root and stem length of mung bean after soil remediation were not notably different from those of the uncontaminated soil. This work opened new prospect for the application of geopolymer in degradation of persistent organic pollutants (POPs) and provided a cost-effective option for the remediation of the persistent organic pollutants contaminated water and soil.

摘要

一种低成本、环保的生物炭/地质聚合物复合材料(Fe-Cu@BC-GM),是通过浸渍-煅烧法以木质素和高岭土为前驱体制备的。SEM、FTIR 和 XRD 分析表明,Fe-Cu@BC-GM 具有一定的孔结构、丰富的官能团和稳定的晶体结构。所得的 Fe-Cu@BC-GM 用作过一硫酸盐(PMS)的催化剂,用于修复萘(NAP)污染的废水和土壤。实验结果表明,Fe-Cu@BC-GM 表现出优异的催化性能,水和土壤中 NAP 的最大降解率分别在 120 分钟内达到 98.35%和 67.98%。XPS 测量证实了表面上连续的 Fe(Ⅲ)/Fe(Ⅱ)和 Cu(Ⅱ)/Cu(Ⅰ)氧化还原对循环的存在,这使得 Fe(Ⅲ)和 Cu(Ⅰ)不断生成 Fe(Ⅱ)激活 PMS 产生 SO 和·OH 用于 NAP 的降解。通过分析降解中间体和绿豆的生物测定,评估了 Fe-Cu@BC-GM/PMS 体系对植物毒性的影响。证明了 Fe-Cu@BC-GM/PMS 体系可以将 NAP 降解为毒性较小的中间体,且土壤修复后绿豆的种子发芽率、根和茎长与无污染土壤没有明显差异。这项工作为地质聚合物在持久性有机污染物(POPs)降解中的应用开辟了新的前景,并为持久性有机污染物污染水和土壤的修复提供了一种具有成本效益的选择。

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