Development of a Spouted Bed Reactor for Chemical Looping Combustion

被引:1
|
作者
van der Watt, Johannes George [1 ]
Laudal, Daniel [1 ]
Krishnamoorthy, Gautham [2 ]
Feilen, Harry [1 ]
Mann, Michael [1 ]
Shallbetter, Ryder [1 ]
Nelson, Teagan [3 ]
Srinivasachar, Srivats [4 ]
机构
[1] Univ North Dakota, Inst Energy Studies, 2844 Campus Rd,Stop 8153, Grand Forks, ND 58202 USA
[2] Univ North Dakota, Dept Chem Engn, 241 Centennial Dr, Grand Forks, ND 58202 USA
[3] Envergex LLC, 4200 James Ray Dr,Suite 301, Grand Forks, ND 58203 USA
[4] Envergex LLC, 10 Podunk Rd, Sturbridge, MA 01566 USA
来源
JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME | 2018年 / 140卷 / 11期
基金
美国能源部;
关键词
100 KW UNIT; FLUIDIZED-BED; OXYGEN CARRIER; MANGANESE ORE; SOLID FUELS; MODEL; FLOW; TECHNOLOGIES;
D O I
10.1115/1.4040403
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
We have investigated a novel gas/solid contacting configuration for chemical looping combustion (CLC) with potential operating benefits. CLC configurations are typically able to achieve high fuel conversion efficiencies at the expense of high operating costs and low system reliability. The spouted fluid bed (SB) was identified as an improved reactor configuration for CLC, since it typically exhibits high heat transfer rates and offers the ability to use lower gas flows for material movement compared to bubbling beds (BB). Multiphase Flow with Interphase eXchanges (MFIX) software was used to establish a spouted fluid bed reactor design. An experimental setup was built to supplement the model. The experimental setup was also modified for testing under high temperature, reacting conditions (1073-1273 K). The setup was operated in either a spouted fluid bed or a bubbling bed regime to compare the performance attributes of each. Results for the reactor configurations are presented for CLC using a mixture of carbon monoxide and hydrogen as fuel. Compared to the bubbling bed, the spouted fluid bed reactor achieved an equivalent or better fuel conversion at a lower pressure drop over the material bed. The spouted fluid bed design represents a viable configuration to improve gas/solid contacting for efficient fuel conversion, lower energy requirements for material movement and increase operational robustness for CLC. The research laid the groundwork for future research into a multi-phase reacting flow CLC system. The system will be developed from computational fluid dynamic modeling and pilot-scale testing to expedite the development of CLC technologies.
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页数:8
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