首页> 外文期刊>Catalysis science & technology >Electrocatalytic degradation of rice straw lignin in alkaline solution through oxidation on a Ti/SnO2-Sb2O3/-PbO2/-PbO2 anode and reduction on an iron or tin doped titanium cathode
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Electrocatalytic degradation of rice straw lignin in alkaline solution through oxidation on a Ti/SnO2-Sb2O3/-PbO2/-PbO2 anode and reduction on an iron or tin doped titanium cathode

机译:Electrocatalytic稻草木质素的降解在碱性溶液通过氧化Ti / SnO2-Sb2O3 /二氧化铅/二氧化铅阳极和减少一个铁或锡掺杂钛阴极

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摘要

A novel procedure for selective production of biomass-based compounds by electrochemical conversion has been developed in this work. At ambient pressure and mild temperature, rice straw lignin dissolved in sodium hydroxide solution was directly electro-oxidized on the surface of a Ti/SnO2-Sb2O3/-PbO2/-PbO2 anode, and subsequently, electro-reduction by the electro-generated chemisorbed hydrogen on the titanium-based (iron or tin doped titanium) cathodes proceeded. The electro-catalysis could effectively break the chemical linkages among phenylpropyl units in rice straw lignin, and more than 16 kinds of aromatic compounds containing phenols, aromatic hydrocarbon, aromatic ester, aromatic ketone, aromatic acid and aromatic aldehyde (e.g. guaiacol, syringol, dihydroeugenol, vanillin, p-coumaric acid, ferulic acid, etc.) were generated and identified utilizing GC-MS measurement. The operation conditions for the enhancement of the product yield including the current density, lignin concentration, temperature and reaction time were optimized. The results indicate that the properties of the cathode materials, current density and reaction time play important roles in the electrocatalytic hydrogenation of rice straw lignin.
机译:小说为选择性的生产过程再化合物的电化学在这工作转换了。环境压力和温和的温度,稻草木质素溶解在氢氧化钠溶液直接electro-oxidized表面上的Ti / SnO2-Sb2O3 /二氧化铅/二氧化铅阳极,随后,electro-reduction的electro-generated氢的化学吸附种钛(铁或锡掺杂钛)阴极进行。有效地打破化学之间的联系苯丙基单位稻草木质素等等含16种芳香族化合物的酚类、芳香烃类、芳香酯、芳香酮、芳香酸和芳香醛(例如愈创木酚、syringol香兰素,dihydroeugenol p-coumaric酸,阿魏酸等)生成和识别利用gc - ms测定。增强产品的条件收益包括电流密度、木质素浓度、温度和反应时间优化。性能的阴极材料、电流密度和反应时间扮演了一个重要的角色稻草的electrocatalytic加氢木质素。

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