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Co-hydroprocessing and hydrocracking of alternative feed mixture (vacuum gas oil/waste lubricating oil/waste cooking oil) with the aim of producing high quality fuels

机译:替代饲料混合物(真空燃气油/废油/废油)的共加热处理和加氢裂化,目的是生产优质燃料

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摘要

Hydroprocessing of waste cooking oil (WCO), waste lubricating oil (WLO) and vacuum gas oil (VGO) and mixtures of them are studied for high quality fuels production. The results are compared to VGO hydroprocessing results to illustrate the value added by blending waste oils to VGO, which is one of the well-known conventional hydroprocessing feed. The effect of blending WCO and WLO with VGO has proven a better performance in a fixed bed hydroprocessing reactor, over commercial industrial catalysts manufactured especially to hydroprocess VGO. Blending of WCO and WLO with VGO will reduce environmental pollution resulting from spilling of these wastes in addition to provide an alternative lower-cost feed than pure VGO. A binary bed of hydrotreating catalyst (Ni-Mo oxides supported on Al2O3) and catalyst specified for hydrocracking (Ni-W oxides supported on SiO2 Al2O3) were used. Hydroprocessing experiments were executed at a temperature range 380-440 degrees C, pressure of 7.0 MPa, LHSV of 1.5 h(-1), H-2/(HC)feed ratio of 400 Nm(3)/m(3), and different WLO and WCO percentage of (10, 20 wt%). At the specified operating conditions, a high degree of conversion was noticed especially for diesel yield that increases by increasing WLO percentage in the feed mixture. On the other hand, increasing WCO content in the feed mixtures led to higher kerosene and gasoline yields. Higher rates of hydrocracking reactions were achieved by increasing the reaction temperature that was confirmed by the lower percentages of total amount of n-paraffins in the product final mixture with a higher WCO and WLO percent in feed mixture. In conclusion, at all studied temperature ranges it was confirmed that, by increasing the reaction temperature, the gasoline and LPG yields will increase on the expense of kerosene and diesel yields. However, the highest diesel yield could be achieved at 400 degrees C.
机译:研究了废物烹饪油(WCO),废物润滑油(WLO)和真空燃气油(VGO)和它们的混合物的加氢处理,用于高质量的燃料生产。将结果与VGO加氢处理结果进行比较,以说明通过将废油混合到VGO中添加的值,这是众所周知的常规加工料进料之一。将WCO和WLO与VGO混合的效果已经证明了在固定床中加氢处理反应器中的更好的性能,这些商业工业催化剂尤其是加氢处理VGO制造的。 WCO和WLO的混合除了提供比纯VGO之外的替代性低成本饲料外,不会减少环境污染。使用加氢处理催化剂的二进制床(支持Al2O3上的Ni-Mo氧化物)和用于加氢裂化的催化剂(在SiO 2 Al 2 O 3上负载的Ni-W氧化物)。在380-440℃,压力为7.0MPa,LHSV的温度范围,LHSV为1.5小时(-1),H-2 /(HC)进料比为400nm(3)/ m(3),和水解化处理实验不同的WLO和WCO百分比(10,20重量%)。在指定的操作条件下,注意到高度转化率,特别是对于柴油产量,通过增加饲料混合物中的WLO百分比增加。另一方面,增加饲料混合物中的WCO含量导致煤油和汽油产量更高。通过增加通过在产物最终混合物中的N-链烷烃的总量的较低百分比证实的反应温度与饲料混合物中更高的WCO和WLO百分比确认的反应温度来实现加氢裂化反应的较高速率。总之,在所有研究的温度范围内证实,通过提高反应温度,汽油和液化石油气产量将增加煤油和柴油收益率的费用。然而,最高柴油产量可以在400℃下实现。

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