Catalytic purification of acrylic fiber wastewater by low-temperature plasma in conjunction with K2Fe4O7
RADIATION TECHNOLOGY APPLICATION|更新时间:2025-05-06
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Catalytic purification of acrylic fiber wastewater by low-temperature plasma in conjunction with K2Fe4O7
“In the field of petrochemical wastewater purification, researchers have adopted the medium barrier discharge synergistic catalytic technology to treat acrylic fiber wastewater with K2Fe4O7 solid catalyst. After optimizing experimental parameters, the COD degradation rate and turbidity removal rate reached 77.43% and 91.14%, respectively, providing new ideas for wastewater purification.”
Journal of Radiation Research and Radiation ProcessingVol. 43, Issue 2, Pages: 86-97(2025)
作者机构:
1.安徽理工大学化工与爆破学院 淮南 232001
2.安徽省现代环境工程国际联合研究中心 淮南 232001
作者简介:
RONG Junfeng (male) was born in 1987, master's degree in engineering, senior experimentologist, main research interests: environmental chemical industry, plasma wastewater purification, E-mail: 13695610310@163.com
基金信息:
the Open Research Fund Program of Anhui Provincial International Joint Research Center of Modern Environmental Engineering, Anhui University of Science and Technology(XDHJGC2022002);Patent Transformation Cultivation Project of Anhui University of Science and Technology(ZL201902);National and Provincial College Student Innovation and Entrepreneurship Projects(202410361047;S202410361106)
RONG Junfeng, ZHU Jiali, ZHAO Binbin, et al. Catalytic purification of acrylic fiber wastewater by low-temperature plasma in conjunction with K2Fe4O7[J]. Journal of Radiation Research and Radiation Processing, 2025, 43(2): 020403.
RONG Junfeng, ZHU Jiali, ZHAO Binbin, et al. Catalytic purification of acrylic fiber wastewater by low-temperature plasma in conjunction with K2Fe4O7[J]. Journal of Radiation Research and Radiation Processing, 2025, 43(2): 020403. DOI: 10.11889/j.1000-3436.2024-0071. CSTR: 32195.14.j.JRRRP.1000-3436.2024-0071.
Catalytic purification of acrylic fiber wastewater by low-temperature plasma in conjunction with K2Fe4O7