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Upgrading of bio-oil from palm kernel shell by catalytic cracking in the presence of HZSM-5

机译:HZSM-5存在下通过催化裂化从棕榈仁壳中降解生物油

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Upgrading of bio-oil extracted from palm kernel shell (PKS) was performed using a lab-scale fixed-bed reactor with HZSM-5 as a catalyst. The catalytic cracking was carried out at optimized conditions:0.3MPa pressure, temperature of 500 degrees C, and oil to catalyst ratio of 1:5. One of the challenges in upgrading bio-oil by catalytic cracking is deactivation of catalyst due to coke formation on catalyst surface. To overcome coke deposition, the upgrading process was carried out at 0.3-MPa pressure. Characterization of raw and upgraded bio-oil obtained through catalytic cracking was discussed in detail, indicating improvement in its physical properties. The distribution of products after cracking of bio-oil includes 58.89 wt% of organic liquid product, 15.63 wt% of aqueous fraction, 7.84 wt% of coke, and 17.64 wt% of gases. The degree of deoxygenation and calorific value of organic liquid product is 43.74% and 31.65 MJ/ kg respectively. Organic liquid product obtained comprises 17.55% of hydrocarbons within the gasoline range. Hence, HZSM-5 proved its effectiveness for upgrading the bio-oil in a continuous mode.
机译:使用HZSM-5作为催化剂的实验室规模固定床反应器,对从棕榈仁壳(PKS)中提取的生物油进行了升级。催化裂化在以下最佳条件下进行:压力为0.3MPa,温度为500摄氏度,油/催化剂比为1:5。通过催化裂化提质生物油的挑战之一是由于催化剂表面形成焦炭而使催化剂失活。为了克服焦炭沉积,在0.3 MPa的压力下进行了提质工艺。详细讨论了通过催化裂化获得的生油和提质生物油的表征,表明其物理性能有所提高。生物油裂化后产物的分布包括58.89wt%的有机液体产物,15.63wt%的水部分,7.84wt%的焦炭和17.64wt%的气体。有机液体产物的脱氧度和热值分别为43.74%和31.65 MJ / kg。所获得的有机液体产物在汽油范围内包含17.55%的烃。因此,HZSM-5证明了其以连续模式提质生物油的有效性。

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