首页> 外文期刊>Chemistry Select >Heterostructured Redox-Active V2O5/SnO2 Oxide Nanocatalyst for Aqueous-Phase Oxidation of Furfural to Renewable Maleic Acid
【24h】

Heterostructured Redox-Active V2O5/SnO2 Oxide Nanocatalyst for Aqueous-Phase Oxidation of Furfural to Renewable Maleic Acid

机译:异质结构的氧化还原活性V2O5/SNO2氧化物纳米催化剂,用于呋喃的水相氧化至可再生马来酸

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper,we report on the synthesis of heterostructured V2O5/SnO2 nanocatalysts with varying vanadium metal loadings of 5–30 wt%.The catalytic performance of the designed catalysts was evaluated in the oxidation reaction of furfural to maleic acid using hydrogen peroxide.The synthesis method afforded highly dispersed nanosized VOx species with predominant exposed V5+ and V4+ on SnO2 oxide.Such structural interface developments of the heterostructured V2O5/SnO2 catalyst resulted into modified electronic structure; phase compositions and textural properties of the individual V and Sn metal oxides with respect to varying V-metal loadings,which lead to improved catalytic performances.Under optimized reaction conditions,a 60% yield of maleic acid was achieved in furfural oxidation reaction.Based on characterization results,the high surface area and low V-metal loading(~9.3 wt% vanadium)presented the most redox active V2O5/SnO2 catalyst.At low V-metal loadings the catalyst is populated with the presence of VOx monomeric and polymeric species which are proposed to induce the highly active vanadium sites.This was confirmed for the most active catalyst to possess vanadium with the predominant V4+ state and superoxide oxygen.The catalytic performance showed by V2O5/SnO2 present a solid catalyst derived from earth-abundant and cheap metals for the catalytic oxidation upgrade of biomass typical furfural to important value-added maleic acid intermediate chemical.
机译:在本文中,我们报告了异质结构的V2O5/SNO2纳米催化剂的合成,具有不同的钒金属载荷为5-30 wt%。在使用氢氧化物的烈性酸性反应的氧化反应中,评估了设计催化剂的催化性能。合成方法为SNO2氧化物上的主要暴露V5+和V4+提供了高度分散的纳米化VOX物种。异质化V2O5/SNO2催化剂的结构界面开发导致修饰的电子结构;相对于不同的V金属载荷,各个V和SN金属氧化物的相组成和质地特性,从而改善了催化性能。在优化的反应条件下,在呋喃氧化反应中获得了60%的马来酸。表征结果,高表面积和低V-金属载荷(〜9.3 wt%钒)呈现出最多的氧化还原活性V2O5/SNO2催化剂。在低V-金属载荷下,催化剂的催化剂填充有vox单体和聚合物物种,这些物种和聚合物物种的存在,这些物种的存在提议诱导高度活性的钒位。这是确认最活跃的催化剂,具有钒具有主要的V4+状态和超氧化物氧。V2O5/SNO2显示的催化性能呈现出源自固体催化剂,这些催化剂来自量的固体催化剂,并具有廉价的金属和廉价的金属对于典型的呋喃的催化氧化升级到重要增值的马来酸中型化学物质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号