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首页> 外文期刊>ACS Omega >Effective Adsorption of Precious Metal Palladium over Polyethyleneimine-Functionalized Alumina Nanopowder and Its Reusability as a Catalyst for Energy and Environmental Applications
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Effective Adsorption of Precious Metal Palladium over Polyethyleneimine-Functionalized Alumina Nanopowder and Its Reusability as a Catalyst for Energy and Environmental Applications

机译:聚乙烯亚胺官能化的氧化铝纳米粉对贵金属钯的有效吸附及其在能源和环境应用中的催化剂可重复利用性

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Palladium is one of the widely used precious metals toward catalysis, energy, and environmental applications. Efficient recovery and reusability of palladium from the spent catalysts is not only highly desirable for sustainable industrial processing but also for preventing environmental contamination. Here, we present a facile citrate-mediated amine functionalization of alumina nanopowder (AO) in aqueous medium. The surface functionalization is probed using infrared (IR), X-ray photoelectron spectroscopy (XPS), thermogravimetric analysis, surface area, and zeta potential measurements. The amine-functionalized sorbent is thoroughly studied for its vital palladium-sorption parameters such as amount of adsorbent, pH, adsorption capacity, thermodynamics, and kinetics. The palladium adsorption over amine-functionalized AO is further characterized with X-ray diffraction and XPS. IR analysis of palladium adsorbed over polyethyleneimine is performed to elucidate the mechanistic insight on the role of nitrogen in capturing palladium. The amine-functionalized sorbent after adsorbing palladium is studied for the catalytic reduction of 4-nitrophenol and Cr(VI) and hydrogen generation from ammonia borane, which demonstrated its excellent catalytic activity and reusability toward energy and environmental applications. The environmentally benign materials and all-aqueous reactions employed in this work demonstrate the potential of the strategy for efficient and economical industrial transformations and waste-stream management.
机译:钯是催化,能源和环境应用中广泛使用的贵金属之一。从废催化剂中有效回收和再利用钯不仅是可持续工业加工的理想方法,也是防止环境污染的理想方法。在这里,我们提出了在水性介质中的氧化铝纳米粉末(AO)的柠檬酸盐介导的胺官能化反应。使用红外(IR),X射线光电子能谱(XPS),热重分析,表面积和Zeta电位测量来探测表面功能化。对胺官能化吸附剂的重要钯吸附参数(例如吸附剂的量,pH,吸附容量,热力学和动力学)进行了彻底的研究。 X射线衍射和XPS进一步表征了钯在胺官能化AO上的吸附。对聚乙烯亚胺上吸附的钯进行IR分析,以阐明有关氮在捕获钯中作用的机理的见解。研究了吸附钯后用胺官能化的吸附剂对4-硝基苯酚和Cr(VI)的催化还原以及氨硼烷产生的氢,证明了其出色的催化活性以及对能源和环境应用的可重复使用性。在这项工作中使用的对环境无害的材料和全水反应证明了高效,经济的工业转型和废物流管理战略的潜力。

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