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Conceptual design and techno-economic evaluation of efficient oil shale refinery processes ingratiated with oil and gas products upgradation

机译:满足油气产品升级要求的高效油页岩精炼工艺的概念设计和技术经济评估

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Compared with the petrochemical industry, oil shale refinery industry is still relatively backward and has many shortcomings, such as poor quality of shale oil, inefficient utilization of retorting gas, and the unsatisfactory economic performance. In the situation of the low oil price, many oil shale refinery plants are forced to stop or cut production. Thus, oil shale industry is facing a severe problem. How to relieve monetary loss or turn it into profits? This paper proposes three integrated oil shale refinery processes: an integrated with hydrogen production from retorting gas, an integrated with hydrogenation of shale oil, and an integrated with hydrogen production and oil hydrogenation. The techno-economic performance of the three different processes is conducted and compared with that of a conventional oil shale process. Results show the exergy destruction ratio of the oil shale process integrated with hydrogen production from retorting gas is the least, 41.6%, followed by the oil shale process integrated with hydrogen production and oil hydrogenation, 45.9%. Furthermore, these two proposed processes have the best economic performance: Especially they can turn losses of the conventional oil shale process into profits at the situation of low oil price. The oil shale process integrated with hydrogen production from retorting gas is recommended to the oil shale plants which use the oil shale with oil content lower than 12.9%, while the plants using oil shale with oil content higher than 12.9% are better to select the oil shale process integrated with hydrogen production and oil hydrogenation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:与石化行业相比,油页岩炼油行业仍然相对落后,存在很多弊端,如页岩油质量差,蒸馏气利用效率低,经济表现不佳。在低油价的情况下,许多油页岩炼油厂被迫停止或减产。因此,油页岩产业面临严重的问题。如何减轻金钱损失或将其转化为利润?本文提出了三个一体化的油页岩炼油工艺:与干馏气制氢,与页岩油加氢一体化,与制氢和油加氢一体化。进行了三种不同工艺的技术经济性能,并将其与常规油页岩工艺的技术经济性能进行了比较。结果表明,与干馏气制氢相结合的油页岩工艺的能干破坏率最低,为41.6%,其次为与制氢加油氢化相结合的油页岩工艺的能干破坏率,为45.9%。此外,这两个提议的过程具有最佳的经济性能:特别是在低油价的情况下,它们可以将常规油页岩过程的损失转化为利润。对于使用油含量低于12.9%的油页岩的工厂,建议将其与干馏气体制氢相结合的油页岩工艺,而使用油含量高于12.9%的油页岩的工厂最好选择油。页岩工艺与制氢和石油加氢相结合。 (C)2016 Elsevier Ltd.保留所有权利。

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