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MoS_(2)/氧化石墨烯海绵同步降解有机污染物和去除超细固体颗粒物 被引量:3
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作者 朱玲俐 闫青云 +4 位作者 冉茂希 刘昕玥 鲍延 段晓光 邢明阳 《Science Bulletin》 SCIE EI CAS CSCD 2023年第9期892-896,M0003,共6页
近年来,水体中悬浮的超细固体颗粒物等纳米污染引起了人们的广泛关注,然而传统过滤和絮凝沉降等技术去除超细悬浮固体颗粒物的能力有限.本文开发了一种MoS_(2)/氧化石墨烯海绵(SMG-S),可以实现对超细固体颗粒物的高效去除.SMG-S表面经... 近年来,水体中悬浮的超细固体颗粒物等纳米污染引起了人们的广泛关注,然而传统过滤和絮凝沉降等技术去除超细悬浮固体颗粒物的能力有限.本文开发了一种MoS_(2)/氧化石墨烯海绵(SMG-S),可以实现对超细固体颗粒物的高效去除.SMG-S表面经过简单的化学吸附CaCO_(3)改性后,可增强其表面电正性,实现对电负性超细固体颗粒物(~500 nm)的选择性去除.较强的化学作用力是SMG-S吸附固体颗粒物的关键,而物理吸附作用则决定了海绵的吸附容量,两者共同作用使得总悬浮固体颗粒物(TSS)的去除率增加了1206倍,且饱和吸附量可达11.5 g/g.SMG-S还可引发助催化芬顿反应降解磺胺嘧啶等有机污染物(降解率>90%),并实现对重金属离子(去除率>84%)和TSS(去除率>90%)的同步去除.此外,SMG-S类芬顿体系可高效处理皂化油废水,使其化学需氧量和TSS分别从8800和4600 mg/L减小到800和120 mg/L,这说明SMG-S具有处理实际工业废水的潜在应用前景. 展开更多
关键词 总悬浮固体 化学需氧量 固体颗粒物 工业废水 类芬顿体系 吸附容量 氧化石墨烯 潜在应用前景
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Regulating Lewis Acid-Base Sites over Fenton System for Enhancing Degradation of Pollutants in Saline and Buffered Wastewater
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作者 zhuan Chen Jun Li +3 位作者 Bo Yang Jiazhen Cao lingli zhu Mingyang Xing 《Chinese Journal of Chemistry》 SCIE CAS 2024年第21期2563-2571,共9页
The saline and buffered environment in actual wastewater imposes higher demands on Fenton and Fenton-like catalytic systems.This study developed a MoS_(2)co-catalytic Fe_(2)O_(3)Fenton-like system with controllable Le... The saline and buffered environment in actual wastewater imposes higher demands on Fenton and Fenton-like catalytic systems.This study developed a MoS_(2)co-catalytic Fe_(2)O_(3)Fenton-like system with controllable Lewis acid-base sites,achieving efficient treatment of various model pollutants and actual industrial wastewater under neutral buffered environment.The acidic microenvironment structured by the edge S sites(Lewis basic sites)in the MoS_(2)/Fe_(2)O_(3)catalyst is susceptible to the influence of Lewis acidic sites constructed by Mo and Fe element,affecting catalytic performance.Optimizing the ratio of precursor amounts ensures the stable presence of the acidic microenvironment on the surface of catalyst,enabling the beneficial co-catalytic effect of Mo sites to be realized.Furthermore,it transcends the rigid constraints imposed by the Fenton reaction on reaction environments,thereby expanding the applicability of commonplace oxides such as Fe_(2)O_(3)in actual industrial water remediation. 展开更多
关键词 Fenton MoS_(2) Fe_(2)O_(3) Lewis acid-base sites Acidicmicroenvironment Iron cycle Degradation/Wastewater
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