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An innovative fabrication strategy of exceptional detoxifiers namely biochar and Ti3AlC2 co-functionalized nano ferrous sulfides for the intensified purification and detoxification of perrhenate-contaminanted wastewater with potential implication in trapping pertechnetate  ( SCI-EXPANDED收录 EI收录)  

文献类型:期刊文献

英文题名:An innovative fabrication strategy of exceptional detoxifiers namely biochar and Ti3AlC2 co-functionalized nano ferrous sulfides for the intensified purification and detoxification of perrhenate-contaminanted wastewater with potential implication in trapping pertechnetate

作者:Ma, Xukun[1];Wang, Wei[1];Xu, Mengqi[1];Zhang, Pingan[2];Wu, Hongxiang[1];Tao, Feifei[2]

机构:[1]Shaoxing Univ, Sch Civil Engn, Shaoxing 312000, Zhejiang, Peoples R China;[2]Shaoxing Univ, Sch Chem & Chem Engn, Shaoxing 312000, Zhejiang, Peoples R China

年份:2025

卷号:193

起止页码:446

外文期刊名:PROCESS SAFETY AND ENVIRONMENTAL PROTECTION

收录:SCI-EXPANDED(收录号:WOS:001367238300001)、、EI(收录号:20244817423643)、Scopus(收录号:2-s2.0-85209888265)、WOS

基金:This work is supported by National Natural Science Foundation of China (52179107) .

语种:英文

外文关键词:BLB@Ti3AlC2/FeS; PSB@Ti3AlC2/FeS; And CCB@Ti3AlC2/FeS

外文摘要:In this contribution, three kinds of biochars (BC), i.e., bamboo leaf biochar (BLB), peanut shell biochar (PSB), and corn cob biochar (CCB), were combined with Ti3AlC2 as support matrix to co-functionalize nanoscale FeS for the synthesis of three BC@Ti3AlC2/FeS scavengers namely BLB@Ti3AlC2/FeS, PSB@Ti3AlC2/FeS, and CCB@Ti3AlC2/FeS. The as-synthesized scavenging composites were employed as exceptional detoxifiers in purification and detoxification of perrhenate-contaminanted wastewater and underlying cooperative mechanism was unveiled via applying X-ray photoecectron spectra (XPS). The water chemistry effects including initial pH, detoxifier dosage, concentration and time were systematically explored. The results demonstrated that BC@Ti3AlC2/FeS exhibited an intensified performance to purify and detoxify Re(VII) from wastewater compared with the naked FeS. Kinetics studies revealed that Re(VII) trapped onto the detoxifiers was fitted by pseudosecond-order model the best which was indicative of a chemical trapping interplay predominantly. Thermodynamic exploration (Delta S>0, Delta H>0, Delta G<0) unveiled that Re(VII) entrapped onto the scavengers was endothermic and spontaneous. XPS determination unravelled that BC@Ti3AlC2/FeS detoxified and captured Re(VII) via cooperative mechanisms of adsorption and reduction. The findings of this contribution revealed that the as-synthesized BLB@Ti3AlC2/FeS, PSB@Ti3AlC2/FeS, and CCB@Ti3AlC2/FeS, can be promising candidates in purifying and detoxifying tangible Re(VII)-contaminanted wastewater, exhibiting potential implications in capturing pertechnetate.

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