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A new non regenerative gas absorbant catalyst for FCC unit

机译:用于催化裂化装置的新型非再生气体吸收剂催化剂

摘要

The FCC process operates in a dynamic heat balance with hot regenerated catalyst supplying the net heat demand required by the reaction system. Finely sized solid catalyst continuously circulates in a closed loop between the reaction system and the catalyst regeneration system. The feed and catalyst are intimately contacted in the riser reactor, in the proper ratio and with the proper residence time and temperature to achieve the desired level of conversion. The catalyst passes through a highly efficient,patented, spent catalyst stripper where any hydrocarbon product vapors entrained with the catalyst are removed and recovered. The process of cracking hydrocarbon provide human a fuel but the side effect is very dangerous to the environment because of releasing flue gases at regenerator. In this study, the non regenerate catalyst will be used in order to replace the current catalyst that need to be regenerate. This experiment was carried out in the reactor that has high test pressure so that it will stand still at high temperature. The catalyst was mixed with kerosene and burned at 190°C. The result obtained were test for it viscocity, density and funtional group. The catalystudfuntional group is similar to the zeolite V which have been used in modern cracking process. The funtional group for product contain of several type of disturbance. Theuddensity obtained was 0.7461 g/cm3 and the viscosity obtained was 2.4 cP. The result showed that catalyst that had been used can crack down the hydrocarbon.
机译:FCC过程在动态热平衡下运行,其中热再生催化剂提供了反应系统所需的净热量需求。细粒度的固体催化剂在反应系统和催化剂再生系统之间的闭环中连续循环。进料和催化剂以适当的比例,适当的停留时间和温度在提升管反应器中紧密接触,以达到所需的转化率。催化剂通过高效,专利保护的废催化剂汽提塔,在该汽提塔中,所有被催化剂夹带的烃产物蒸气均被除去并回收。裂化碳氢化合物的过程为人类提供了燃料,但由于在再生器中释放烟道气,其副作用对环境非常危险。在这项研究中,将使用非再生催化剂来替代当前需要再生的催化剂。该实验是在具有较高测试压力的反应器中进行的,因此它将在高温下保持静止。将该催化剂与煤油混合并在190℃下燃烧。测试所得结果的粘度,密度和官能团。催化剂/官能基团类似于在现代裂解过程中使用的沸石V。产品的功能组包含几种类型的干扰。获得的密度为0.7461g / cm 3,并且获得的粘度为2.4cP。结果表明,已使用的催化剂可以裂解烃。

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    Ezani Zahari;

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  • 年度 2010
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