首页> 美国卫生研究院文献>Polymers >Co-Zeolitic Imidazolate Framework@Cellulose Aerogels from Sugarcane Bagasse for Activating Peroxymonosulfate to Degrade P-Nitrophenol
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Co-Zeolitic Imidazolate Framework@Cellulose Aerogels from Sugarcane Bagasse for Activating Peroxymonosulfate to Degrade P-Nitrophenol

机译:Co-zeolital咪唑酯框架@纤维素气凝胶来自甘蔗蛋白用于激活过氧键硫酸盐降解p-硝基苯酚

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摘要

An efficient, green and reusable catalyst for organic pollutant wastewater treatment has been a subject of intense research in recent decades due to the limitation of current technologies. Cellulose based aerogel composites are considered to be an especially promising candidate for next-generation catalytic material. This project was conducted in order to evaluate the behavior and ability of green and reusable sugarcane bagasse aerogels to remove P-Nitrophesnol from waste-water aqueous. Co-Zeolitic imidazolate framework@ sugarcane bagasse aerogels composite catalysts were successfully prepared via simple in situ synthesis. The structure of hybrid aerogels and their efficient catalyst in peroxymonosulfate (PMS) activation for the degradation of p-nitrophenol (PNP) was investigated. As a result, the hybrid aerogels/PMS system removed 98.5% of PNP (10 mg/L) within 60~70 min, while the traditional water treatment technology could not achieve this. In addition, through a free radical capture experiment and electron paramagnetic resonance (EPR), the degradation mechanism of PNP was investigated. Further research found that the hybrid aerogels can effectively activate PMS to produce sulfate (SO4• −) and hydroxyl (OH• ). Both of them contributed to the degradation of PNP, and SO4• − plays a crucial role in the degradative process. The most important feature of hybrid aerogels can be easily separated from the solution. The obtained results showed that the outer coating structure of cellulose can stabilize Co-ZIF and reduce the dissolution of cobalt ions under complex reaction conditions. Moreover, the prepared hybrid aerogels exhibit excellent reusability and are environmentally friendly with efficient catalytic efficiency. This work provides a new strategy for bagasse applications and material reusability.
机译:由于目前技术的限制,近几十年来,有机污染物废水处理的有效,绿色和可重复使用的有机污染废水处理催化剂是近几十年来的主题。基于纤维素的气凝胶复合材料被认为是下一代催化材料的特别有希望的候选者。进行该项目,以评估绿色和可重复使用的甘蔗蛋白气凝胶的行为和能力,从废水水溶液中除去P-NITrophesnol。共沸石Imidazolate框架/甘蔗蛋白Bagasse Aerogels复合催化剂通过简单的原位合成成功制备。研究了杂化气凝胶的结构及其在过氧键硫酸盐(PMS)活化中用于降解p-硝基苯酚(PNP)的活化。结果,杂交气凝胶/ PMS系统在60〜70分钟内移除了98.5%的PNP(10mg / L),而传统的水处理技术无法实现这一目标。另外,通过自由基捕获实验和电子顺磁共振(EPR),研究了PNP的降解机理。进一步的研究发现,杂化气凝胶可以有效地激活PM以产生硫酸盐(SO4• - )和羟基(OH•)。两者都有助于PNP的降解,SO4• - 在降解过程中起着至关重要的作用。混合气凝胶的最重要特征可以容易地与溶液分离。得到的结果表明,纤维素的外涂层结构可以稳定CO-ZIF,并在复杂的反应条件下减少钴离子的溶解。此外,制备的杂交气凝胶具有出色的可重用性,具有环境友好的催化效率。这项工作为Bagasse应用程序提供了一种新的策略和材料可重用性。

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