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RSC Advances | 2017

Distinctive oil shale pyrolysis behavior in indirectly heated fixed bed with internals

Lanxin Lin; Dengguo Lai; Zhen Shi; Zhennan Han; Guangwen Xu

Intrinsic characteristics of oil shale pyrolysis in a fixed bed reactor with internals have been investigated in this study. Mounting particularly designed internals in fixed bed reactor improved shale oil production to up to 90% yield by Fischer assay. Comparing particle characteristics at different radial positions of the reactors with and without internals demonstrated that, inside the particle bed with internals, the product flow was regulated to move from the high-temperature zone (outer) to low-temperature zone (center), which reduced the secondary reactions of released volatiles. Terminating oil shale pyrolysis at central particle bed temperatures of 150, 300, 450, and 550 °C showed that the contents of vacuum gas oil and heavy oil in the shale oil produced had increased from 9.63 wt% to 53.29 wt%. The volatile contents of particles in the inner layer of the reactor slightly increased in the early stage of pyrolysis and, in turn, decomposed to form pyrolysis products as the temperature was raised. The adsorption or condensation of liquids on the surface of particles gradually increased from the outer region to the central region of the reactor due to the regulated product flow direction and low temperatures in the central zone of the reactor causing heavy components to condense. Increasing the degree of pyrolysis was also found to decrease the alkene, aromatic, and cycloalkane contents in shale oil, but increased those of alkane and heteroatomic compounds. These results demonstrate that adopting internals into oil shale pyrolysis optimized the product flow direction and selectively directed secondary reactions to occur for heavy volatile species only.


Energy & Fuels | 2015

Initial Pyrolysis Mechanism of Oil Shale Kerogen with Reactive Molecular Dynamics Simulation

Xiao-Ping Liu; Jin-Hui Zhan; Dengguo Lai; Xiaoxing Liu; Zhanjun Zhang; Guangwen Xu


Fuel Processing Technology | 2015

Pyrolysis in indirectly heated fixed bed with internals: The first application to oil shale

Lanxin Lin; Chun Zhang; Hongjuan Li; Dengguo Lai; Guangwen Xu


Energy & Fuels | 2015

Secondary Cracking and Upgrading of Shale Oil from Pyrolyzing Oil Shale over Shale Ash

Dengguo Lai; Zhaohui Chen; Lanxin Lin; Yuming Zhang; Shiqiu Gao; Guangwen Xu


Fuel | 2015

Pyrolysis of oil shale by solid heat carrier in an innovative moving bed with internals

Dengguo Lai; Zhaohui Chen; Yong Shi; Lanxin Lin; Jin-Hui Zhan; Shiqiu Gao; Guangwen Xu


Fuel | 2016

Oil shale pyrolysis in indirectly heated fixed bed with metallic plates of heating enhancement

Lanxin Lin; Dengguo Lai; Erwei Guo; Chun Zhang; Guangwen Xu


Chemical Engineering Journal | 2017

High quality syngas production from catalytic coal gasification using disposable Ca(OH)(2) catalyst

Zhaohui Chen; Qimeng Dun; Yong Shi; Dengguo Lai; Yang Zhou; Shiqiu Gao; Guangwen Xu


Fuel Processing Technology | 2015

Methane-rich syngas production in an integrated fluidized bed by coupling pyrolysis and gasification of low-rank coal

Zhaohui Chen; Dengguo Lai; Li-Qiang Bai; Yong Tian; Shiqiu Gao; Guangwen Xu; Atsushi Tsutsumi


Fuel Processing Technology | 2016

Oil shale pyrolysis in indirectly heated fixed bed with internals under reduced pressure

Somprasong Siramard; Lanxin Lin; Chun Zhang; Dengguo Lai; Shuai Cheng; Guangwen Xu


Fuel | 2016

Coal rapid pyrolysis in a transport bed under steam-containing syngas atmosphere relevant to the integrated fluidized bed gasification

Zhaohui Chen; Yong Shi; Dengguo Lai; Shiqiu Gao; Zhen Shi; Yong Tian; Guangwen Xu

Collaboration


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Guangwen Xu

Chinese Academy of Sciences

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Shiqiu Gao

Chinese Academy of Sciences

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Zhaohui Chen

Chinese Academy of Sciences

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Jin-Hui Zhan

Chinese Academy of Sciences

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Lanxin Lin

Chinese Academy of Sciences

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Yong Tian

Chinese Academy of Sciences

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Sulong Geng

Chinese Academy of Sciences

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Yong Shi

Anhui University of Technology

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Chun Zhang

Chinese Academy of Sciences

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Mengya Li

Chinese Academy of Sciences

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