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Phenol hydroxylation on AI-Fe modified-bentonite: Effect of Fe loading, temperature and reaction time

机译:AI-Fe改性膨润土上的苯酚羟化:Fe载入,温度和反应时间的影响

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The present work reflects the study of the phenol hydroxylation reactions to synthesize hydroquinone and catechol on Al-Fe modified-bentonite. This study started with synthesizes the catalyst material based on the modified bentonite. Natural bentonite from Pacitan, Indonesia was intercalated with Cetyl-TetramethylammoniumBromida (CTMA-Br) followed by pillarization using Alumina. The pillared bentonite was then impregnated with Fe solution (0.01 M, 0.05 M, and 0.1 M). The solid material obtained was calcined at 723 K for 4 hours. All the materials were characterized using BET N2 adsorption. Their catalytic activity and selectivity were studied for phenol hydroxylation using H202 (30%). The reaction conditions of this reaction were as follows: ratio of phenol/ H202 = 1:1 (molar ratio), concentration of phenol = 1 M and ratio of catalyst/phenol was 1:10. Reaction temperatures were varied at 333, 343 and 353 K. The reaction time was also varied at 3, 4 and 5 hours. The result shows that the materials have potential catalyst activity.
机译:本作者反映了苯酚羟基化反应的研究,以合成氢醌和儿茶酚对Al-Fe改性膨润土。该研究开始于基于改性膨润土的催化剂材料合成。来自Pacitan的天然膨润土,印度尼西亚与甲苯基 - 四甲基铵(CTMA-BR)嵌入,然后使用氧化铝尿素化。然后用Fe溶液(0.01m,0.05m和0.1μm)浸渍柱状膨润土。将得到的固体材料在723k煅烧4小时。使用BET N 2吸附表征所有材料。使用H 2 O 2(30%)对苯酚羟化的苯酚羟基化进行它们的催化活性和选择性。该反应的反应条件如下:苯酚/ H 2 O 2 = 1:1(摩尔比)的比例,苯酚浓度=1μm,催化剂/苯酚的比例为1:10。在333,343和353k时变化反应温度。反应时间也在3,4和5小时内变化。结果表明,材料具有潜在的催化剂活性。

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