过硫酸盐
光催化
溴百里酚蓝
生物炭
刚果红
化学
降级(电信)
核化学
甲基橙
橙色G
锌
流出物
热解
催化作用
吸附
环境工程
色谱法
有机化学
工程类
电信
计算机科学
作者
Mohamed Mohamed Gaber,Hassan Shokry,Mahmoud Samy,Ebtesam El‐Bestawy
出处
期刊:Chemosphere
[Elsevier]
日期:2024-09-01
卷期号:: 143245-143245
标识
DOI:10.1016/j.chemosphere.2024.143245
摘要
This study presents novel composites of biochar (BC) derived from spinach stalks and zinc oxide (ZnO) synthesized from water hyacinth to be used for the first time in a hybrid system for activating persulfate (PS) with photocatalysis for the degradation of bromothymol blue (BTB) dye. The BC/ZnO composites were characterized using innovative techniques. BC/ZnO (2:1) showed the highest photocatalytic performance and BC/ZnO (2:1)@(PS + light) system attained BTB degradation efficiency of 89.47% within 120 min. The optimum operating parameters were determined as an initial BTB concentration of 17.1 mg/L, a catalyst dosage of 0.7 g/L, and a persulfate initial concentration of 8.878 mM, achieving a BTB removal efficiency of 99.34%. The catalyst showed excellent stability over five consecutive runs. Sulfate radicals were the predominant radicals involved in the degradation of BTB. BC/ZnO (2:1)@(PS + light) system could degrade 88.52%, 84.64%, 81.5%, and 77.53% of methylene blue, methyl red, methyl orange, and Congo red, respectively. Further, the BC/ZnO (2:1)@(PS + light) system effectively activated PS to eliminate 97.49% of BTB and 85.12% of dissolved organic carbon in real industrial effluents from the textile industry. The proposed degradation system has the potential to efficiently purify industrial effluents which facilitates the large-scale application of this technique.
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