[口头报告]Utilizing blast-furnace dust as a novel persulfate catalyst for the efficient removal of petroleum contaminants from soil
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[口头报告]Utilizing blast-furnace dust as a novel persulfate catalyst for the efficient removal of petroleum contaminants from soil

Utilizing blast-furnace dust as a novel persulfate catalyst for the efficient removal of petroleum contaminants from soil
编号:312 稿件编号:408 访问权限:仅限参会人 更新:2024-05-19 15:22:30 浏览:583次 口头报告

报告开始:2024年05月30日 16:15 (Asia/Shanghai)

报告时间:15min

所在会议:[S9] Environmental Pollution Control and Ecological Restoration » [S9-1] Afternoon of May 30th

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摘要
Petroleum-contaminated soil (PCS) poses a significant health risk. Catalyst-activated persulfate presents a promising technology for efficient treatment, while magnetic activated carbon catalysts are increasingly recognized for their easy recovery and robust performance in advanced oxidation processes (AOPs). However, the complex and costly preparation process has limited its widespread implementation. In this work, blast-furnace dust (BFD), a solid waste from steel mill, was used as a novel persulfate catalyst for the total petroleum hydrocarbons (TPHs) removal from PCS. With the BFD/SP system (0.1 g BFD and 1 mM PS for per gram soil, 4:1 water-to-soil ratio, and 40 °C), removal rates of 88.10% and 84.39% were achieved for TPHs in 0.7% and 3.0% PCS, respectively, surpassing most reported persulfate AOPs, highlighting its superior efficacy. The main reason was that Fe/C components on BFD surface could cooperate to cyclically produce diverse reactive oxygen species, including SO4, OH, O2 and 1O2. Furthermore, the amphiphilicity of BFD could promote both pollutants and oxidants to converge to its surface simultaneously, effectively utilizing short-lived ROS to degrade TPHs. Our findings implies that BFD is an excellent SP activator, providing an innovative approach for PCS treatment and promoting sustainable utilization of BFD.
 
关键字
Blast-furnace dust, Persulfate catalyst, Petroleum-contaminated soil, Total petroleum hydrocarbon
报告人
Yumin Mu
China University of Mining and Technology

稿件作者
玉敏 母 中国矿业大学
小兵 李 China; China University of Mining and Technology; Xuzhou; Jiangsu 221116;National Center for Coal Preparation and Purification Engineering Research
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