以哈密煤为燃料的直接碳固体氧化物燃料电池Direct carbon solid oxide fuel cells with fuels derived from Hami coal
谷晓凤,颜晓敏,周明扬,谭楷,范子岱,刘江
GU Xiaofeng,YAN Xiaomin,ZHOU Mingyang,TAN Kai,FAN Zidai,LIU Jiang
摘要(Abstract):
传统燃煤发电方式效率受限,污染严重。通过直接碳固体氧化物燃料电池(DC-SOFC)技术可将煤中化学能转化为电能,效率高,生成的高浓度CO_2有利于后续捕集、利用或封存,是一种潜在的高效洁净煤技术。使用煤基燃料的DC-SOFC已有一些前期研究,但煤炭成分和结构复杂,其对DC-SOFC性能影响研究还不够全面。为评估煤基燃料在DC-SOFC中使用的可行性,以新疆哈密煤为燃料,通过对比原煤、负载Fe催化剂的原煤、焦炭和负载Fe催化剂的焦炭为燃料的DC-SOFC性能,结合燃料成分的能谱分析,研究了影响煤基燃料DC-SOFC性能的关键因素。结果表明,新疆哈密煤可用作DC-SOFC的燃料,使用负载质量分数5%Fe催化剂的焦炭为燃料的DC-SOFC具有最好的输出性能,运行温度850℃下,峰值功率密度达255 mA/cm~2;而使用焦炭燃料的DC-SOFC表现出最佳的燃料利用率,在850℃和200 mA恒电流模式下放电,其单质碳利用率达95%。新疆哈密煤是一种很有前途的DC-SOFC燃料,尤其是将原煤炭化、炭化后负载一定量Fe催化剂有较好的输出性能和高利用率。
Conventional coal-fired power generation has the problem of limited conversion efficiency and serious pollution emissions. The chemical energy in coal can be converted into electricity through direct carbon solid oxide fuel cell(DC-SOFC) technology with high efficiency. The high concentration of CO_2 produced from the DC-SOFC is beneficial for following carbon capture, utilization, and storage(CCUS) process, which is a potential high efficiency and clean coal technology. There has been some previous work on using coal-based fuel in DC-SOFCs. However, the composition and structure of coals are complex, and there is a lack on investigating the effects of these factors on the performances of DC-SOFCs using coal-based fuels. To evaluate the feasibility of using coal-based fuels in DC-SOFCs, the key factors affecting the performances of DC-SOFCs using coal-based fuel were studied by comparing the DC-SOFC performance of raw coal, raw coal loaded with Fe catalyst, coke, and coke loaded with Fe catalyst using Xinjiang Hami coal as fuel, combining with EDS analysis of the fuels. The results show that Hami coal from Xinjiang can be used as the fuel of DC-SOFCs. The DC-SOFC using 5% Fe-loaded coke as the fuel shows the best output performance, with a peak power density of 255 mA/cm~2 at 850 ℃. Meanwhile, the DC-SOFC fueled by coke shows the best fuel utilization efficiency, with a carbon conversion efficiency of 95% at a constant current of 200 mA under 850 °C. Obviously, Hami coal is the promising fuel of DC-SOFC, especially when the coal is carbonized and to load a certain amount of Fe catalyst after coalification as fuels, the cell has the better output performance and high utilization rate.
关键词(KeyWords):
哈密煤;焦炭;直接碳固体氧化物燃料电池;Boudouard反应
Hami coal;coke;direct carbon solid oxide fuel cell;Boudouard reaction
基金项目(Foundation): 国家自然科学基金资助项目(91745203,U1601207);; 广东省自然科学基金资助项目(2022A1515011188)
作者(Author):
谷晓凤,颜晓敏,周明扬,谭楷,范子岱,刘江
GU Xiaofeng,YAN Xiaomin,ZHOU Mingyang,TAN Kai,FAN Zidai,LIU Jiang
DOI: 10.13226/j.issn.1006-6772.H22123001
参考文献(References):
- [1] BP.BP Statistical Review of World Energy 2021[R].London:BP,2021.
- [2] 张莉,张建强,宁树正,等.中国与全球煤炭行业形势对比分析[J].中国煤炭地质,2021,33(S1):17-21.ZHANG Li,ZHANG Jianqiang,NING Shuzheng,et al.China andglobal coal industry situations comparative analysis [J].Coal Geology of China,2021,33(S1):17-21.
- [3] 王海宁.中国煤炭资源分布特征及其基础性作用新思考[J].中国煤炭地质,2018,30(7):5-9.WANG Haining.New perspectives on coal resources distribution pattern and its fundamental function in china[J].Coal Geology of China,2018,30(7):5-9.
- [4] CAO Tianyu,HUANG Kevin,SHI Yixiang,et al.Recent advances in high-temperature carbon-air fuel cells[J].Energy & Environmental Science,2017,10(2):460-490.
- [5] LIU Jiang,ZHOU Mingyang,ZHANG Yapeng,et al.Electrochemi-cal oxidation of carbon at high temperature:Principles and applications [J].Energy & Fuels,2018,32(4):4107-4117.
- [6] 刘江,颜晓敏.直接碳固体氧化物燃料电池[J].电化学,2020,26(2):175-189.LIU Jiang,YAN Xiaomin.Direct carbon solid oxide fuel cells [J].Journal of Electrochemistry,2020,26(2):175-189.
- [7] CHEN Qianyang,QIU Qianyuan,YAN Xiaomin,et al.A compact and seal-less direct carbon solid oxide fuel cell stack stepping into practical application[J].Applied Energy,2020,278:115657.
- [8] HASZELDINE R S.Carbon capture and storage:How green can black be?[J].Science,2009,325:1647-1652.
- [9] SERVICE R F.Fossil power,guilt free[J].Science,2017,356:796-799.
- [10] MAGDALENA Dudek.On the utilization of coal samples in direct carbon solid oxide fuel cell technology[J].Solid State Ionics,2015,271:121-127.
- [11] MAGDALENA Dudek,MAREK Skrzypkiewicz,NORBERT Moska?a,et al.The impact of physicochemical properties of coal on direct carbon solid oxide fuel cells[J].International Journal of Hydrogen Energy,2016,41(41):18872-18883.
- [12] JIAO Yong,XUE Xiaoting,AN Wenting,et al.Purified high-sulfur coal as a fuel for direct carbon solid oxide fuel cells[J].International Journal of Energy Research,2019,43(7):2501-2513.
- [13] 焦勇,王重阳,付艺丽,等.煤焦酸法脱灰对直接碳燃料电池性能的影响研究[J].山西大学学报(自然科学版)2020,43(3):564-570.JIAO Yong,WANG Chongyang,FU Yili,et al.Effect of the acid deashing of coal charon the performance of direct carbon fuel cells [J].Journal of Shanxi University(Natural Science Edition),2020,43(3):564-570.
- [14] LIU Guoyang,ZHANG Yating,ZHOU Anning,et al.A comparat-ive study on the performance of direct carbon solid oxide fuel cells powered with different rank coals [J].Energy & Fuels,2021,35(8):6835-6844.
- [15] XIE Yongmin,LI Jianglin,HOU Jinxing,et al.Direct use of coke in a solid oxide fuel cell [J].Journal of Fuel Chemistry and Technology,2018,46(10):1168-1174.
- [16] WU Hao,XIAO Jie,ZENG Xiaoyuan,et al.A high performance direct carbon solid oxide fuel cell:A green pathway for brown coal utilization [J].Applied Energy,2019,248:679-687.
- [17] CAI Weizi,ZHOU,Qian XIE Yongmin,et al.A facile method of preparing Fe-loaded activated carbon fuel for direct carbon solid oxide fuel cells [J].Fuel,2015,159:887-893.
- [18] 谢永敏,王晓强,刘江,等.管式电解质支撑型直接碳固体氧化物燃料电池的浸渍法制备及电性能[J].物理化学学报,2017,33(2):386-392.XIE Yongmin,WANG Xiaoqiang,LIU Jiang,et al.Fabrication and performance of tubular electrolyte-supporting direct carbon solid oxide fuel cell by dip coating technique [J].Acta Physico-Chimica Sinica,2017,33(2):386-392.
- [19] TANG Yubao,LIU Jiang,SUI Jing.A novel direct carbon solid oxide fuel cell [J].ECS Transactions,2009,25(2):1109-1114.
- [20] 唐玉宝,刘江.以活性炭为燃料的固体氧化物燃料电池(英文)[J].物理化学学报,2010,26(5):1191-1194.TANG Yubao,LIU Jiang.Fueling solid oxide fuel cells with activated carbon [J].Acta Physico-Chimica Sinica,2010,26(5):1191-1194.
- [21] WU Yuzhou,SU Chao,ZHANG Chunming,et al.A new carbon fuel cell with high power output by integrating with in situ catalytic reverse boudouard reaction [J].Electrochemistry Communications,2009,11(6):1265-1268.
- [22] TANG Yubao,LIU Jiang.Effect of anode and boudouard reaction catalysts on the performance of direct carbon solid oxide fuel cells [J].International Journal of Hydrogen Energy,2010,35(20):11188-11193.
- [23] CAI Weizi,LIU Jiang,YU Fangyong,et al.A high performance direct carbon solid oxide fuel cell fueled by Ca-loaded activated carbon [J].International Journal of Hydrogen Energy,2017,42(33):21167-21176.
- [24] TANG Huiqin,YU Fangyong,WANGYishang,et al.Enhancing the power output of direct carbon solid oxide fuel cell using Ba-loaded activated carbon fuel [J].Energy Technology,2019,7(4):1800885.
- [25] YU Fangyong,HAN Tingting,WANG Yishang,et al.Performance improvement of a direct carbon solid oxide fuel cell via strontium-catalyzed carbon gasification [J].International Journal of Hydrogen Energy,2020,45(43):23368-23377.
- [26] 孙文宗.哈密三道岭矿区块煤的质量与贮存[J].煤质技术,2004(S1):59-60.SUN Wenzong.Quality and storage of lump coal in Hami Sandaoling mining Area [J].Coal Quality Technology,2004(S1):59-60.
- [27] XIE Yongmin,TANG Yubao,LIU Jiang.A verification of the reaction mechanism of direct carbon solid oxide fuel cells [J].Journal of Solid State Electrochemistry,2013,17(1):121-127.
- [28] CAI Weizi,LIU Jiang,XIE Yongmin,et al.An investigation on the kinetics of direct carbon solid oxide fuel cells [J].Journal of Solid State Electrochemistry,2016,20(8):2207-2216.
- [29] XIE Yongmin,CAI Weizi,XIAO Jie,et al.Electrochemical gas-electricity cogeneration through direct carbon solid oxide fuel cells [J].Journal of Power Sources,2015,277:1-8.