Modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approach

Hydrogenation technology is an indispensable chemical upgrading process for converting the heavy feedstock into favorable lighter products. In this work, a new kinetic model containing four hydrocarbon lumps (feedstock, diesel, gasoline, cracking gas) was developed to describe the coal tar hydrogena...

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Main Authors: Fei Dai, Yalin Zhang, Endong Xia, Zhanquan Zhang, Zhihua Zhang, Chunshan Li
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2018-12-01
Series:Carbon Resources Conversion
Online Access:http://www.sciencedirect.com/science/article/pii/S2588913318300358
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spelling doaj-989bcc0a7953430dbc9cf0742b50357c2021-03-02T09:48:37ZengKeAi Communications Co., Ltd.Carbon Resources Conversion2588-91332018-12-0113279283Modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approachFei Dai0Yalin Zhang1Endong Xia2Zhanquan Zhang3Zhihua Zhang4Chunshan Li5Beijing Key Laboratory of Ionic Liquids Clean Process, State Key Laboratory of Multiphase Complex System, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, PR ChinaResearch Institute of Petroleum and Petrochemicals, SINOPEC, Beijing 100195, PR ChinaResearch Institute of Petroleum and Petrochemicals, SINOPEC, Beijing 100195, PR ChinaResearch Institute of Petroleum and Petrochemicals, SINOPEC, Beijing 100195, PR ChinaResearch Institute of Petroleum and Petrochemicals, SINOPEC, Beijing 100195, PR ChinaBeijing Key Laboratory of Ionic Liquids Clean Process, State Key Laboratory of Multiphase Complex System, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, PR China; Corresponding author.Hydrogenation technology is an indispensable chemical upgrading process for converting the heavy feedstock into favorable lighter products. In this work, a new kinetic model containing four hydrocarbon lumps (feedstock, diesel, gasoline, cracking gas) was developed to describe the coal tar hydrogenation process, the Levenberg–Marquardt’s optimization algorithm was used to determine the kinetic parameters by minimizing the sum of square errors between experimental and calculated data, the predictions from model validation showed a good agreement with experimental values. Subsequently, an adiabatic reactor model based on proposed lumped kinetic model was constructed to further investigate the performance of hydrogenation fixed-bed units, the mass balance and energy balance within the phases in the reactor were taken into accounts in the form of ordinary differential equation. An application of the reactor model was performed for simulating the actual bench-scale plant of coal tar hydrogenation, the simulated results on the products yields and temperatures distribution along with the reactor are shown to be good consistent with the experimental data. Keywords: Coal tar, Reactor model, Lumped kinetics, Hydrogenationhttp://www.sciencedirect.com/science/article/pii/S2588913318300358
collection DOAJ
language English
format Article
sources DOAJ
author Fei Dai
Yalin Zhang
Endong Xia
Zhanquan Zhang
Zhihua Zhang
Chunshan Li
spellingShingle Fei Dai
Yalin Zhang
Endong Xia
Zhanquan Zhang
Zhihua Zhang
Chunshan Li
Modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approach
Carbon Resources Conversion
author_facet Fei Dai
Yalin Zhang
Endong Xia
Zhanquan Zhang
Zhihua Zhang
Chunshan Li
author_sort Fei Dai
title Modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approach
title_short Modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approach
title_full Modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approach
title_fullStr Modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approach
title_full_unstemmed Modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approach
title_sort modeling of fixed bed reactor for coal tar hydrogenation via the kinetic lumping approach
publisher KeAi Communications Co., Ltd.
series Carbon Resources Conversion
issn 2588-9133
publishDate 2018-12-01
description Hydrogenation technology is an indispensable chemical upgrading process for converting the heavy feedstock into favorable lighter products. In this work, a new kinetic model containing four hydrocarbon lumps (feedstock, diesel, gasoline, cracking gas) was developed to describe the coal tar hydrogenation process, the Levenberg–Marquardt’s optimization algorithm was used to determine the kinetic parameters by minimizing the sum of square errors between experimental and calculated data, the predictions from model validation showed a good agreement with experimental values. Subsequently, an adiabatic reactor model based on proposed lumped kinetic model was constructed to further investigate the performance of hydrogenation fixed-bed units, the mass balance and energy balance within the phases in the reactor were taken into accounts in the form of ordinary differential equation. An application of the reactor model was performed for simulating the actual bench-scale plant of coal tar hydrogenation, the simulated results on the products yields and temperatures distribution along with the reactor are shown to be good consistent with the experimental data. Keywords: Coal tar, Reactor model, Lumped kinetics, Hydrogenation
url http://www.sciencedirect.com/science/article/pii/S2588913318300358
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AT yalinzhang modelingoffixedbedreactorforcoaltarhydrogenationviathekineticlumpingapproach
AT endongxia modelingoffixedbedreactorforcoaltarhydrogenationviathekineticlumpingapproach
AT zhanquanzhang modelingoffixedbedreactorforcoaltarhydrogenationviathekineticlumpingapproach
AT zhihuazhang modelingoffixedbedreactorforcoaltarhydrogenationviathekineticlumpingapproach
AT chunshanli modelingoffixedbedreactorforcoaltarhydrogenationviathekineticlumpingapproach
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