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A Novel Energy-Efficient Pyrolysis Process: Self-pyrolysis of Oil Shale Triggered by Topochemical Heat in a Horizontal Fixed Bed

机译:一种新型节能热解工艺:水平固定床中拓扑化学加热触发油页岩的自热解

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摘要

This paper proposes a novel energy-efficient oil shale pyrolysis process triggered by a topochemical reaction that can be applied in horizontal oil shale formations. The process starts by feeding preheated air to oil shale to initiate a topochemical reaction and the onset of self-pyrolysis. As the temperature in the virgin oil shale increases (to 250–300°C), the hot air can be replaced by ambient-temperature air, allowing heat to be released by internal topochemical reactions to complete the pyrolysis. The propagation of fronts formed in this process, the temperature evolution, and the reaction mechanism of oil shale pyrolysis in porous media are discussed and compared with those in a traditional oxygen-free process. The results show that the self-pyrolysis of oil shale can be achieved with the proposed method without any need for external heat. The results also verify that fractured oil shale may be more suitable for underground retorting. Moreover, the gas and liquid products from this method were characterised, and a highly instrumented experimental device designed specifically for this process is described. This study can serve as a reference for new ideas on oil shale in situ pyrolysis processes.
机译:本文提出了一种由拓扑化学反应触发的新型节能油页岩热解方法,该方法可用于水平油页岩地层。该过程开始于将预热的空气供入油页岩中,以引发拓扑化学反应并发生自热分解。随着原始油页岩温度的升高(达到250-300°C),可以用环境温度的空气代替热空气,从而通过内部拓扑化学反应释放热量以完成热解。讨论了该过程中形成的锋面的传播,温度演化以及油页岩在多孔介质中的热解反应机理,并将其与传统的无氧过程进行了比较。结果表明,所提出的方法可以实现油页岩的自热分解,而无需外部热量。结果还证明,破裂的油页岩可能更适合于地下干馏。此外,表征了通过该方法得到的气体和液体产物,并描述了专门为此过程设计的高度仪器化的实验装置。该研究可以为油页岩原位热解过程的新思路提供参考。

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