Incorporating Co3O4/C modified MnOx/SiO2 into tailored sponge for bifunctional photothermal water evaporation and pollutant degradation

IF 11 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Rare Metals Pub Date : 2024-09-20 DOI:10.1007/s12598-024-02996-z
Ya-Rao Gao, Hong-Yao Zhao, Meng-Ting Liu, Qian-Nan Liu, Yan-Yun Wang, Lu-Lu Li, Jian-Wei Yuan, Yi-Yan Song, Fu Yang
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Abstract

In this study, cobalt-incorporated polydopamine coating onto Mn-modified mesoporous silica and successive graphitization treatment make the resulting composite afford abundant porosity, multiple metal active species, polar N sites, and excellent light-to-heat conversion ability. The controlled graphitization temperature was optimized to improve the activity state of metal species. The results reveal that Co3O4 nanoparticles incorporated thin-layer carbon formed onto the Mn-confined mesoporous silica, and more Co(II) and Mn(III) were generated in the MS-Co-500N2 compared to MS-Co-500Air, which could cause the accelerated reaction cycles in the potassium peroxymonosulfate complex salt (PMS) activation. The degradation experiments demonstrated that the catalyst almost completely degraded biphenol A within 10 min with the reaction rate constant of 0.56 min−1, nearly 205 times enhancement compared to the MS-Co-500Air. The free radicals trapping and quenching control demonstrated the dominant role of 1O2 and ·O2 in the degradation process. Due to the efficient incorporation of Co3O4 nanoparticles and thin-layer carbon, the photothermal conversion properties were explored and utilized for solar-driving interface water evaporation and cleanwater recovery. To explore the practical application possibility in treating complicated polluted wastewater, the MS-Co-500N2 materials were fixed on the melamine sponge by Ca ions-trigger alginate crosslinking strategy, and the integrated monolith evaporator shows an excellent water evaporation performance (1.52 kg·m−2·h−1) and synchronous pollutant removal in biphenol A (94%, 10 min), carbamazepine (92%, 10 min), oxytetracycline (84%, 20 min) and norfloxacin (84%, 20 min).

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将Co3O4/C改性MnOx/SiO2制成定制海绵,实现双功能光热蒸发和污染物降解
在本研究中,将钴掺杂的聚多巴胺包覆在mn修饰的介孔二氧化硅上,并进行连续石墨化处理,得到的复合材料具有丰富的孔隙度、多种金属活性物质、极性N位和优异的光热转换能力。通过优化可控石墨化温度来改善金属的活性状态。结果表明,Co3O4纳米颗粒将形成的薄层碳吸附在Mn约束的介孔二氧化硅上,使得MS-Co-500N2中Co(II)和Mn(III)的生成比MS-Co-500Air中更多,这可能导致PMS活化过程中的反应周期加快。降解实验表明,该催化剂在10 min内几乎完全降解双酚A,反应速率常数为0.56 min−1,比MS-Co-500Air提高了近205倍。自由基捕获和猝灭控制表明1O2和·O2在降解过程中起主导作用。由于Co3O4纳米颗粒与薄层碳的有效结合,探索了光热转换特性,并将其用于太阳能驱动界面水蒸发和清洁水回收。为探索MS-Co-500N2材料在复杂污染废水处理中的实际应用可能性,采用钙离子-海藻酸盐交联策略将其固定在三聚氰胺海绵上,蒸发器蒸发器蒸发器具有优异的水蒸发性能(1.52 kg·m−2·h−1),可同步去除双酚A (94%, 10 min)、卡马西平(92%,10 min)、土霉素(84%,20 min)和诺氟沙星(84%,20 min)中的污染物。图形抽象
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麦克林
sodium alginate
麦克林
norfloxacin
麦克林
carbamazepine
麦克林
tetracycline
麦克林
Oxytetracycline
来源期刊
Rare Metals
Rare Metals 工程技术-材料科学:综合
CiteScore
12.10
自引率
12.50%
发文量
2919
审稿时长
2.7 months
期刊介绍: Rare Metals is a monthly peer-reviewed journal published by the Nonferrous Metals Society of China. It serves as a platform for engineers and scientists to communicate and disseminate original research articles in the field of rare metals. The journal focuses on a wide range of topics including metallurgy, processing, and determination of rare metals. Additionally, it showcases the application of rare metals in advanced materials such as superconductors, semiconductors, composites, and ceramics.
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