Co-Pyrolysis Characteristics and Kinetic Analysis of Oil Sludge with Different Additives

被引:0
作者
GONG Zhiqiang [1 ]
ZHANG Haoteng [2 ]
LIU Chang [2 ]
WANG Mi [3 ]
WANG Zhenbo [2 ]
LI Xiaoyu [4 ]
DING Junqi [1 ]
机构
[1] State Grid Shandong Electric Power Research Institute
[2] College of New Energy,China University of Petroleum (East China)
[3] Institute of Process Engineering,Chinese Academy of Sciences
[4] College of Mechanical and Electronic Engineering,Shandong University of Science and Technology
关键词
oil sludge; co-pyrolysis; kinetic analysis; fitting method;
D O I
暂无
中图分类号
X74 [石油、天然气工业废物处理与综合利用];
学科分类号
083002 ;
摘要
The addition of effective additives can effectively improve the pyrolysis performance of oil sludge (OS)and have a great potential to reduce pyrolysis costs.In the present study,co-pyrolysis performance of OS with different proportions of additives at a heating rate of 10°C/min was conducted in a thermal analyzer.Walnut shell,Fe2O3,K2CO3,PVC and the pyrolysis char produced from OS at the final pyrolysis temperature of 700°C were selected as the additives.TG results showed that the OS pyrolysis with and without additives can be divided into five reaction stages,which include volatilization of free water,the escape of light components,the cleavage of heavy components,carbon decomposition and inorganic minerals decomposition.The addition of additives decreased the maximum weight loss rate when the blending ratio was 5 wt%during OS pyrolysis.Kinetic analysis revealed that the overall activation energy of pyrolysis reaction was lower during pyrolysis of OS with the addition of walnut shells and pyrolysis char.The activation energy of three main reaction stages all decreased during co-pyrolysis of OS with K2CO3 and PVC.
引用
收藏
页码:1452 / 1467
页数:16
相关论文
共 33 条
[1]  
Influence of the Addition of Cotton Stalk during Co-pyrolysis with Sewage Sludge on the Properties, Surface Characteristics, and Ecological Risks of Biochars[J]. WANG Zhipu,WANG Jian,XIE Like,ZHU Henan,SHU Xinqian.Journal of Thermal Science. 2019(04)
[2]  
Effect of wastewater treatment processes on the pyrolysis properties of the pyrolysis tars from sewage sludges[J]. Wu Xia1, Xie Li-ping1*, Li Xin-yu1, Dai Xiao-hong1, Fei Xue-ning2 and Jiang Yuan-guang2 1. School of Environment & Chemical Engineering, Tianjin Polytechnic University, Tianjin 300160, China 2. Department of Environmental and Municipal Engineering;Tianjin Institute of Urban Construction;Tianjin 300384, China.Journal of Thermal Science. 2011(02)
[3]  
Catalytic co-pyrolysis behaviors, product characteristics and kinetics of rural solid waste and chlorella vulgaris[J] . Fangfang Tang,Zhaosheng Yu,Yang Li,Liyao Chen,Xiaoqian Ma.Bioresource Technology . 2020 (C)
[4]  
Experimental study on catalytic pyrolysis of oil sludge under mild temperature[J] . Zhiqiang Gong,Chang Liu,Mi Wang,Zhenbo Wang,Xiaoyu Li.Science of the Total Environment . 2020 (C)
[5]  
Kinetic study and pyrolysis characteristics of algal and lignocellulosic biomasses[J] . Vikul Vasudev,Xiaoke Ku,Jianzhong Lin.Bioresource Technology . 2019
[6]  
Behaviors, product characteristics and kinetics of catalytic co-pyrolysis spirulina and oil shale[J] . Minquan Dai,Zhaosheng Yu,Shiwen Fang,Xiaoqian Ma.Energy Conversion and Management . 2019
[7]  
TGA/MS/FT-IR study for kinetic evaluation and evolved gas analysis of a biomass/PVC co-pyrolysis process[J] . Gamzenur ?zsin,Ay?e Eren Pütün.Energy Conversion and Management . 2019
[8]  
(Co-)combustion of additives, water hyacinth and sewage sludge: Thermogravimetric, kinetic, gas and thermodynamic modeling analyses[J] . Jingyong Liu,Limao Huang,Guang Sun,Jiacong Chen,Shengwei Zhuang,Kenlin Chang,Wuming Xie,Jiahong Kuo,Yao He,Shuiyu Sun,Musa Buyukada,Fatih Evrendilek.Waste Management . 2018
[9]  
Ultrasonic washing for oily sludge treatment in pilot scale[J] . Ying-Xin Gao,Ran Ding,Xing Chen,Zhao-Bo Gong,Yu Zhang,Min Yang.Ultrasonics . 2018
[10]  
Co-pyrolysis of oily sludge and rice husk for improving pyrolysis oil quality[J] . Bingcheng Lin,Qunxing Huang,Yong Chi.Fuel Processing Technology . 2018