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Nanocrystalline Cellulose-Derived Doped CarbonaceousMaterial for Rapid Mineralization of Nitrophenols under Visible Light

机译:纳米晶纤维素衍生的掺杂碳可见光下硝基苯酚快速矿化的材料

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摘要

Nitrophenols (NPs) and related derivatives are industrially important chemicals, used notably to synthesize pharmaceuticals, insecticides, herbicides, and pesticides. However, NPs and their metabolites are highly toxic and mutagenic. They pose a serious threat to human health and ecosystem. Current work was undertaken to develop a suitable visible-light active catalyst for the sustainable and efficient mineralization of NPs in an aqueous environment. Nanocrystalline cellulose (NCs)-based nitrogen-doped titanium dioxide and carbonaceous material (N-TiO2/C) was synthesized by pyrolysis and sol–gel methods using NCs, polydopamine, and TiO2. The synthesized N-TiO2/C was characterized using different analytical techniques. Photocatalytic degradation of NPs under visible light indicated that acidic pH (3) was most suitable for the optimal degradation. 4-NP degradation followed both pseudo-first-order (R2 = 0.9985) and Langmuir–Hinshelwood adsorption kinetic models (adsorption constant, KLH = 1.13 L mg–1). Gas chromatography–mass spectrometry and ion chromatography analysis confirmed the total mineralization of 4-NP into smaller molecular fragments such as acids, alcohols,and nitrates. The total organic carbon showed that 67% of total carbonpresent in 4-NP was mineralized into CO2 and CO. The catalystwas recycled for five consecutive cycles without losing its catalyticactivities. The degradation mechanism of NPs with N-TiO2/C was also explored.
机译:硝基酚(NPs)和相关衍生物是工业上重要的化学物质,主要用于合成药物,杀虫剂,除草剂和杀虫剂。但是,NP及其代谢产物具有高毒性和致突变性。它们对人类健康和生态系统构成了严重威胁。目前正在进行的工作是开发一种合适的可见光活性催化剂,用于在水性环境中可持续有效地矿化NP。纳米晶纤维素(NCs)基的氮掺杂二氧化钛和碳质材料(N-TiO2 / C)是通过热解和溶胶-凝胶法使用NCs,聚多巴胺和TiO2合成的。使用不同的分析技术对合成的N-TiO2 / C进行了表征。 NPs在可见光下的光催化降解表明酸性pH(3)最适合最佳降解。 4-NP降解遵循伪一级反应(R 2 = 0.9985)和Langmuir–Hinshelwood吸附动力学模型(吸附常数,KLH = 1.13 L mg –1 ) 。气相色谱-质谱和离子色谱分析证实了4-NP的总矿化为较小的分子碎片,例如酸,醇,和硝酸盐。总有机碳显示总碳的67%存在于4-NP中的元素被矿化成CO2和CO。连续五个循环被回收而不会失去催化作用活动。还探讨了N-TiO2 / C对NPs的降解机理。

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