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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Novel lab-scale deactivation method for FCC catalyst: inducing realistic accessibility responses to iron poisoning
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Novel lab-scale deactivation method for FCC catalyst: inducing realistic accessibility responses to iron poisoning

机译:FCC催化剂的实验室规模的新型减活方法:诱导对铁中毒的现实可及性反应

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In evaluating fluid cracking catalyst performance in lab-scale testing, selecting the proper catalyst deactivation method is just as important as the testing itself. While the cyclic deactivation (CD) technique of alternately exposing a catalyst to cracking and regeneration cycles using a feed with enhanced metals concentration has been shown to be the most accurate way of mimicking a commercial equilibrium catalyst (e-cat), there have still been difficulties in simulating the catalyst accessibility losses (as measured by the Akzo Accessibility Index (AAI)) associated with iron contamination in the commercial fluid catalytic cracking unit (FCCU). Resistance to the deleterious effects of iron contamination has recently emerged as one of the most critical issues in selecting an appropriate catalyst, particularly in resid applications. The method presented here, a modification of conventional cyclic deactivation, employs lower steam partial pressure and temperature, more consistent with FCCU operation. This results in a more realistic simulation of equilibrium catalyst accessibility responses to iron contamination. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 20]
机译:在实验室规模的测试中评估流体裂化催化剂的性能时,选择合适的催化剂失活方法与测试本身一样重要。虽然已经证明使用金属浓度提高的进料交替使催化剂经历裂化和再生循环的循环失活(CD)技术是模仿商业平衡催化剂(e-cat)的最准确方法,但仍然存在难以模拟与商用流化催化裂化装置(FCCU)中的铁污染相关的催化剂可及性损失(通过阿克苏可及性指数(AAI)测量)。在选择合适的催化剂时,特别是在渣油应用中,对铁污染的有害作用的抗性最近已成为最关键的问题之一。此处介绍的方法是对常规循环停用的一种改进,采用较低的蒸汽分压和温度,与FCCU操作更加一致。这导致对铁污染的平衡催化剂可及性响应的更现实的模拟。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:20]

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