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Featured researches published by Peiyu Zhao.


Environmental Science and Pollution Research | 2017

A review of oxygen removal from oxygen-bearing coal-mine methane

Peiyu Zhao; Guojie Zhang; Yinghui Sun; Ying Xu

In this article, a comparison will be made concerning the advantages and disadvantages of five kinds of coal mine methane (CMM) deoxygenation method, including pressure swing adsorption, combustion, membrane separation, non-metallic reduction, and cryogenic distillation. Pressure swing adsorption has a wide range of application and strong production capacity. To achieve this goal, adsorbent must have high selectivity, adsorption capacity, and adequate adsorption/desorption kinetics, remain stable after several adsorption/desorption cycles, and possess good thermal and mechanical stabilities. Catalytic combustion deoxygenation is a high-temperature exothermic redox chemical reaction, which releases large amounts of thermal energy. So, the stable and accurate control of the temperature is not easy. Meanwhile partial methane is lost. The key of catalytic combustion deoxygenation lies in the development of high-efficiency catalyst. Membrane separation has advantages of high separation efficiency and low energy consumption. However, there are many obstacles, including higher costs. Membrane materials have the requirements of both high permeability and high selectivity. The development of new membrane materials is a key for membrane separation. Cryogenic distillation has many excellence advantages, such as high purity production and high recovery. However, the energy consumption increases with decreasing CH4 concentrations in feed gas. Moreover, there are many types of operational security problems. And that several kinds of deoxygenation techniques mentioned above have an economic value just for oxygen-bearing CMM with methane content above 30%. Moreover, all the above methods are not applicable to deoxygenation of low concentration CMM. Non-metallic reduction method cannot only realize cyclic utilization of deoxidizer but also have no impurity gases generation. It also has a relatively low cost and low loss rate of methane, and the oxygen is removed thoroughly. In particular, the non-metallic reduction method has good development prospects for low concentration oxygen-bearing CMM. This article also points out the direction of future development of coal mine methane deoxygenation.


Journal of CO 2 Utilization | 2017

Characterization of Ca-promoted Co/AC catalyst for CO2-CH4 reforming to syngas production

Guojie Zhang; Peiyu Zhao; Ying Xu; Jiangwen Qu


Journal of Industrial and Engineering Chemistry | 2017

Development of amine-functionalized hierarchically porous silica for CO 2 capture

Guojie Zhang; Peiyu Zhao; Ying Xu


Journal of CO 2 Utilization | 2017

Characteristics of activated carbon modified with alkaline KMnO4 and its performance in catalytic reforming of greenhouse gases CO2/CH4

Guojie Zhang; Yinghui Sun; Peiyu Zhao; Ying Xu; Aiting Su; Jiangwen Qu


International Journal of Hydrogen Energy | 2018

Effect of different activated carbon support on CH 4 CO 2 reforming over Co-based catalysts

Yinghui Sun; Guojie Zhang; Jiwei Liu; Peiyu Zhao; Peng Hou; Ying Xu; Riguang Zhang


Journal of Analytical and Applied Pyrolysis | 2016

Characteristic and kinetics of corn stalk pyrolysis in a high pressure reactor and steam gasification of its char

Guojie Zhang; Yinghui Sun; Yuliang Shi; Yong Jia; Ying Xu; Peiyu Zhao; Yongfa Zhang


Journal of CO 2 Utilization | 2018

Amine-modified SBA-15(P): A promising adsorbent for CO 2 capture

Guojie Zhang; Peiyu Zhao; Lanxia Hao; Ying Xu


Energy & Fuels | 2017

CO2 Adsorption Behavior and Kinetics on Amine-Functionalized Composites Silica with Trimodal Nanoporous Structure

Peiyu Zhao; Guojie Zhang; Yinghui Sun; Ying Xu


Energy & Fuels | 2017

Characteristics of Pressure Drop of Charred Layer in Coke Dry Quenching over Coke Oven Gas

Guojie Zhang; Peiyu Zhao; Ying Xu; Yongfa Zhang


Separation and Purification Technology | 2019

A novel amine double functionalized adsorbent for carbon dioxide capture using original mesoporous silica molecular sieves as support

Guojie Zhang; Peiyu Zhao; Lanxia Hao; Ying Xu; Haizhu Cheng

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Guojie Zhang

Taiyuan University of Technology

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Ying Xu

Taiyuan University of Technology

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Yinghui Sun

Taiyuan University of Technology

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Yongfa Zhang

Taiyuan University of Technology

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Haizhu Cheng

Taiyuan University of Technology

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Jiangwen Qu

Taiyuan University of Technology

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Lanxia Hao

Taiyuan University of Technology

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Aiting Su

Taiyuan University of Technology

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Jiwei Liu

Taiyuan University of Technology

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Peng Hou

Taiyuan University of Technology

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