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将富铁废污泥转化为用于降解AOII的纳米片状铁-硫化碳混合类芬顿催化剂。

Conversion of Fe-rich waste sludge into nano-flake Fe-SC hybrid Fenton-like catalyst for degradation of AOII.

作者信息

Kong Lingjun, Zhu Yuting, Liu Mingxiang, Chang Xiangyang, Xiong Ya, Chen Diyun

机构信息

School of Environmental Science and Engineering, Guangzhou University, Guangzhou, 510275, PR China; Guangdong Provincial Key Laboratory of Radioactive Contamination Control and Resources, Guangzhou University, Guangzhou, 510275, PR China; Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology, Sun Yat-sen University, Guangzhou, 510275, PR China.

School of Environmental Science and Engineering, Guangzhou University, Guangzhou, 510275, PR China.

出版信息

Environ Pollut. 2016 Sep;216:568-574. doi: 10.1016/j.envpol.2016.06.012. Epub 2016 Jun 16.

Abstract

Permanently increasing in the amount of sludge resulted in the serious environment burden. This work reports a novel carbothermal process for converting the Fe-rich waste sludge into cleaner nano-flake Fenton-like catalyst to relieve the crisis. The transformation of Fe species at different carbothermal temperature was evaluated by XRD analysis. SEM and XPS analyses were involved to characterize the morphology and chemical bonds of the catalysts. Results shown that the resulted catalyst carbonized at 800 °C (Fe-SC-800) was composed of Fe(0) and Fe3O4, performing nano-flake-like structure. The Fe-SC-800 has the highest catalytic activity in degradation of AOII in C0 = 200 mg/L. The efficiency achieves at 98% within 30 min at neutral pH, which is ascribed to the hydroxyl radical oxidation. Moreover, no iron is leached and the Fe-SC-800 could be recycled for three times at least. Thus, the Fe rich sludge could be reutilized as a valuable source for eco-friendly catalyst production, constituting an ecological way to manage these sludge wastes and eliminate the sludge and organic pollution to environment.

摘要

污泥量的持续增加导致了严重的环境负担。本研究报道了一种新型的碳热过程,该过程可将富铁废污泥转化为更清洁的纳米片状类芬顿催化剂,以缓解这一危机。通过XRD分析评估了不同碳热温度下铁物种的转变。采用SEM和XPS分析对催化剂的形貌和化学键进行了表征。结果表明,在800℃碳化得到的催化剂(Fe-SC-800)由Fe(0)和Fe3O4组成,具有纳米片状结构。Fe-SC-800在降解初始浓度C0 = 200 mg/L的AOII时具有最高的催化活性。在中性pH条件下,30分钟内降解效率达到98%,这归因于羟基自由基氧化。此外,没有铁离子浸出,Fe-SC-800至少可以循环使用三次。因此,富铁污泥可作为生产环保型催化剂的宝贵资源进行再利用,为处理这些污泥废物以及消除污泥和有机污染对环境的影响提供了一种生态途径。

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