Guicai Liu
South China University of Technology
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Featured researches published by Guicai Liu.
Waste Management | 2017
Guicai Liu; Yanfen Liao; Xiaoqian Ma
As important plastic blends in End-of-Life vehicles (ELV), pyrolysis profiles of ABS/PVC, ABS/PA6 and ABS/PC were investigated using thermogravimetric-Fourier transform infrared spectrometer (TG-FTIR). Also, CaCO3 was added as plastic filler to discuss its effects on the pyrolysis of these plastics. The results showed that the interaction between ABS and PVC made PVC pyrolysis earlier and HCl emission slightly accelerated. The mixing of ABS and PA6 made their decomposition temperature closer, and ketones in PA6 pyrolysis products were reduced. The presence of ABS made PC pyrolysis earlier, and phenyl compounds in PC pyrolysis products could be transferred into alcohol or H2O. The interaction between ABS and other polymers in pyrolysis could be attributed to the intermolecular radical transfer, and free radicals from the polymer firstly decomposed led to a fast initiation the decomposition of the other polymer. As plastic filler, CaCO3 promoted the thermal decomposition of PA6 and PC, and had no obvious effects on ABS and PVC pyrolysis process. Also, CaCO3 made the pyrolysis products from PA6 and PC further decomposed into small-molecule compounds like CO2. The kinetics analysis showed that isoconversional method like Starink method was more suitable for these polymer blends. Starink method showed the average activation energy of ABS50/PVC50, ABS50/PA50 and ABS50/PC50 was 186.63kJ/mol, 239.61kJ/mol and 248.95kJ/mol, respectively, and the interaction among them could be reflected by the activation energy variation.
IOP Conference Series: Materials Science and Engineering | 2017
Libao Yin; Yanfen Liao; Guicai Liu; Zhichao Liu; Zhaosheng Yu; Shaode Guo; Xiaoqian Ma
Energy consumption and pollutant emission of natural gas combined cycle power-generation (NGCC), liquefied natural gas combined cycle power-generation (LNGCC), natural gas combined heat and power generation (CHP) and ultra-supercritical power generation with ultra-low gas emission (USC) were analyzed using life cycle assessment method, pointing out the development opportunity and superiority of gas power generation in the period of coal-fired unit ultra-low emission transformation. The results show that CO2 emission followed the order: USC>LNGCC>NGCC>CHP; the resource depletion coefficient of coal-fired power generation was lower than that of gas power generation, and the coal-fired power generation should be the main part of power generation in China; based on sensitivity analysis, improving the generating efficiency or shortening the transportation distance could effectively improve energy saving and emission reduction, especially for the coal-fired units, and improving the generating efficiency had a great significance for achieving the ultra-low gas emission.
Applied Thermal Engineering | 2016
Guicai Liu; Yanfen Liao; Shaode Guo; Xiaoqian Ma; Chengcai Zeng; Jie Wu
International Journal of Hydrogen Energy | 2017
Guicai Liu; Yanfen Liao; Yuting Wu; Xiaoqian Ma; Limei Chen
Energy Conversion and Management | 2018
Guicai Liu; Yanfen Liao; Yuting Wu; Xiaoqian Ma
Applied Energy | 2018
Guicai Liu; Yanfen Liao; Yuting Wu; Xiaoqian Ma
Energy Procedia | 2017
Libao Yin; Guicai Liu; Jielian Zhou; Yanfen Liao; Xiaoqian Ma
Journal of The Energy Institute | 2018
Yuting Wu; Yanfen Liao; Guicai Liu; Xiaoqian Ma; Hengjin Zhang
International Journal of Hydrogen Energy | 2018
Yuting Wu; Yanfen Liao; Guicai Liu; Xiaoqian Ma
Archive | 2015
Yaowei Zhang; Yanfen Liao; Guicai Liu; Shanchao Hu; Xiaoqian Ma; Ru Yang; Junfei He