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Forecasting the Zeolite-Containing Catalyst Activity in Catalytic Cracking Technology Taking into Account the Feedstock Composition

机译:考虑到原料组合物,预测催化裂化技术中含沸石的催化剂活性

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The effect of the feedstock composition and the process conditions on the current catalyst activity in catalytic cracking technology using a mathematical model is performed in this research. The mathematical model takes into account the catalyst deactivation by coke for primary and secondary cracking reactions. The investigation results have shown that the feedstock has significant effect on the yield and the content of coke on the catalyst. Thus, the relative catalyst activity is significantly reduced by 7.5-10.7 %. With increasing the catalytic cracking temperature due to the catalyst flow temperature rising, the coke content and the yield per feedstock increase and the catalyst activity decreases by 5.3-7.7%. Rising the process temperature together with the catalyst circulation ratio contributes to increase of the coke yield per feedstock in the catalytic cracking and decrease of the coke content on the catalyst. It is connected with the catalyst flow rising to the riser and the contact time decreasing in the reaction zone. Also, the catalyst activity decreases in the range of 3.8-5.5% relatively to the regenerated catalyst activity (83 %).
机译:在本研究中,在本研究中进行了原料组合物和工艺条件对催化裂解技术中的电流催化剂活性的影响。数学模型考虑了通过焦炭进行催化剂去激活,用于初级和二次开裂反应。研究结果表明,原料对催化剂上焦炭的产率和含量具有显着影响。因此,相对催化剂活性显着降低7.5-10.7%。随着由于催化剂流动温度上升而增加催化裂化温度,焦炭含量和每refifack的产率增加,催化剂活性降低了5.3-7.7%。将工艺温度与催化剂循环率上升在催化剂裂缝中的焦炭产量增加有助于增加催化剂上的焦炭含量的焦炭产量。它与上升至提升管的催化剂流动连接,反应区中的接触时间降低。此外,催化剂活性相对于再生催化剂活性(83%)的3.8-5.5%的范围降低。

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