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Pyrolysis of Vacuum Residue By Thermal and Catalytic Cracking Using Active Alumina Catalyst

机译:使用活性氧化铝催化剂热催化裂解热和催化裂化的热解

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摘要

Vacuum Residue as feedstock derived from Pertamina Refinery Unit III was cracked in a fixed batch reactor under thermal and catalytic with single stage pyrolysis process using active alumina oxide (Al2O3) as a catalyst. The catalytic pyrolysis process carried out at a temperature 450°C in the presence of a varied catalyst to feed ratio 0.5-2.5% (w/w) and varied of reaction times 5-30 minutes. While the thermal process performed under same operating conditions without presence the catalyst. The effect of alumina catalyst ratio on quantity and quality of yield product, the effect of operating conditions (reaction times) on yield distribution has been investigated. As a result, the cracked products are liquid, gas and coke residue. The yield of liquid products was dominant, the highest catalyst ratio showed the highest yield of the liquid product reached 63.1 wt% and the lowest yield of coke residue by 24.75 wt%. The highest yield of gas by 23.9 wt% was found at minimum catalyst used by 0.5 wt%.
机译:真空残留作为衍生自Pertamina炼油机单元III的原料在热和催化剂中裂解在固定的批量反应器中,用活性氧化铝(Al 2 O 3)作为催化剂的单级热解过程。在不同催化剂存在下在温度450℃的温度下进行的催化热解过程以进给0.5-2.5%(w / w)并变化5-30分钟的反应时间。虽然在不存在催化剂的情况下在相同的操作条件下进行热处理。研究了氧化铝催化剂比对产物产物的数量和质量的影响,研究了操作条件(反应时间)对产率分布的影响。结果,裂纹产物是液体,气体和焦炭残留物。液体产物的产率优势,最高催化剂比显示液体产物的最高产率达到63.1wt%,焦炭残留物的最低收率24.75重量%。在0.5wt%的最小催化剂中发现了23.9wt%的最高产量。

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