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Continuous co-processing of HTL bio-oil with renewable feed for drop-in biofuels production for sustainable refinery processes

机译:用于可再生炼油厂生产的可再生饲料的HTL Bio-油的连续加工,可持续炼油厂生产

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This study demonstrates the co-hydrodeoxygenation of partially upgraded bio-oil (PUB) obtained from hydrothermal liquefaction of pinewood, with rapeseed oil (RO) to produce bio-derived drop-in fuel. Enhanced miscibility of PUB in RO showed the high potential of HTL bio-oil for co-processing with different refinery streams in existing refineries. Co-processing experiments were conducted in a continuous unit under different processing conditions and the obtained results were compared with the hydroprocessed oils produced from the pure RO. Temperature and weight hourly space velocity (WHSV) are found to be important parameters to achieve complete deoxygenation and controlling the properties of co-processed bio-oils. Product quality analysis of co-processed bio-oils obtained under optimized conditions showed no oxygen contents and micro carbon residue but high n-paraffins. Furthermore, boiling point distribution of co-processed bio-oils was measured by SimDis, which was found analogous to boiling range of biodiesel. Fuel characteristic properties such as flash point, pour and cloud points of co-processed bio-oils were also measured and found improved compared to the properties of hydroprocessed oil obtained from RO. Therefore, this study demonstrates that HTL bio-oil can be successfully co-processed with renewable feed and petroleum refinery streams in a continuous hydroprocessing unit without any modification to reduce the environmental impacts and overcome the cost, availability and sustainability issues of oleochemical based feedstocks.
机译:该研究表明,由石油水磨的水热液化(具有油菜籽油(RO)获得的部分升级的生物油(PUB)的共加氢酰基化,以产生生物衍生的燃料。增强了RO中的PUB的混溶显示HTL生物油的高潜力,用于在现有的炼油厂中的不同炼油厂流加工。在不同的加工条件下在连续单元中在连续单元中进行共处理实验,并将得到的结果与由纯RO产生的加氢处理油进行比较。发现温度和重量小时空间速度(WHSV)是实现完全脱氧和控制共加工生物油的性质的重要参数。在优化条件下获得的共同加工生物油的产品质量分析显示,没有氧含量和微碳残留物,但高碳含量高。此外,通过SIMDIS测量共处理生物油的沸点分布,发现与生物柴油的沸程类似。还测量了诸如共同加工生物油的闪点,倒出和浊点等燃料特性特性,并且与从RO获得的加氢处理油的性质相比,得到改善。因此,本研究表明,HTL生物油可以在连续加工单元中使用可再生饲料和石油炼油流成功加工,而不会进行任何修改,以减少环境影响并克服油化学原料的成本,可用性和可持续性问题。

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