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A Comparative Study of the Divalent Transition Metal Oxide Supported on Magnesium Oxide Catalyst for Lactic Acid Production from Glucose

机译:氧化镁催化剂对葡萄糖乳酸催化剂负载的二价过渡金属氧化物的对比研究

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In order to achieve the lactic acid production of lower energy consumption, reactor corrosion rate, while being environmentally friendly and sustaining high catalytic activity of various divalent transition metal oxide(Cu, Co, Ni and Zn)supported on magnesium oxide having the hexadecyltrimethylammonium bromide(CTAB)as a capping agent was investigated, where the reaction was performed under mild conditions in an alkali additive-free environment.Among all of the divalent candidates, the ZnCTAB/MgO exhibits the highest activity with a glucose conversion of 64% at a 100°C and a lactic acid yield of 12% at 140°C, a pressure of 0.4 MPa, over 1 h of reaction time.This is due to the high basicity produced via the water chemisorption on such catalyst's surface.
机译:为了实现较低能耗的乳酸产生,反应堆腐蚀速率,同时环保和维持在具有十六烷基三甲基溴化镁的氧化镁上的各种二价过渡金属氧化物(Cu,Co,Ni和Zn)的高催化活性( CTAB以封端剂进行研究,在碱性添加剂环境中在温和条件下进行反应。ZNCTAB / MGO在ZNCTAB / MGO呈现最高的活性,葡萄糖转化为64% ℃和乳酸产率在140℃下为12%,压力为0.4MPa,反应时间超过1小时。这是由于通过水化学制备的高碱度在这种催化剂表面上产生。

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