表面改性
蚀刻(微加工)
化学工程
玄武岩
材料科学
废水
纤维
制浆造纸工业
环境科学
复合材料
地质学
地球化学
环境工程
工程类
图层(电子)
作者
Huicheng Ni,Chencheng Wang,Muhammad Arslan,Junchao Qian,Zhishui Liang,Zhijun Luo,Ruoqi Cai,Mohamed Gamal El‐Din,Zhiren Wu
标识
DOI:10.1016/j.jclepro.2022.130927
摘要
The application of biological carriers holds a central position in wastewater treatment for biofilm-mediated degradation processes . In this study, the surface of b asalt f ibers (BF) was m odified by combined e tching and g rouping (surface functionalization via attaching glutamic acid) to produce MBF EG . The etching modification enhanced the surface properties and specific surface area of BF. However, combined etching and functionalization resulted in the successful loading of amino acids on the surface of MBF EG , ultimately improving surface hydrophilicity , adsorption properties, and biophilicity of the bio-carrier. Three-dimensional confocal laser scanning microscopy confirmed that the combined modification was highly suitable in improving microbial activity and biophilicity. The microbial communities on MBF EG bio-carrier were rich and diverse indicating a stronger degree of biogeochemical cycling, indicating enrichment of nitrogen and carbon cycles. Conclusively, etching and grouping modification technology hold a promising future for BF application in biological wastewater treatment schemes. • Effect of etching, surface functionalization , and synergistic modification was investigated. • Synergistic modification (MBF EG ) enhanced surface characteristics for microbial adhesion. • Bio-nest of MBF EG displayed higher bio-activity and wastewater treatment potential. • Influence of environmental factors: hydrophilicity > biophilicity > adsorption capacity.
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