Fluidized bed reactor assisted by Oxygen Transport Membranes: Numerical simulation and experimental hydrodynamic study

被引:5
|
作者
Antonini, Tania [1 ]
Di Carlo, Andrea [1 ]
Foscolo, Pier Ugo [1 ]
Gallucci, Katia [1 ]
Stendardo, Stefano [2 ]
机构
[1] Univ Aquila, Ind Engn Dept, Via G Gronchi 18, I-67100 Laquila, Italy
[2] ENEA, Casaccia Res Ctr, I-00100 Rome, Italy
关键词
Fluidized bed; Cold model with internals; OTM; CaO-based sorbent; Numerical simulation; STEAM REFORMING PROCESS; HYDROGEN-PRODUCTION; CO2; CAPTURE; HIGH-TEMPERATURE; FUEL-PARTICLES; NATURAL-GAS; METHANE; SORBENTS; MODEL; DEVOLATILIZATION;
D O I
10.1016/j.cej.2018.11.021
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In the near future, H-2 is bound to become an important energy carrier used for surplus power storage and for sustainable transportation. An innovative technology for the production of a H-2 rich gas is the Sorption Enhanced Reforming (SER) of hydrocarbons: a solid CaO-based sorbent is used to capture CO2 produced by reforming and water gas shift, enhancing the equilibrium. CaCO3 is decomposed in a fluidized bed oxy-combustion calciner and the sorbent recycled. In this work, the interest is focused on the Calcium Looping (CaL) cycle, more specifically on the combustor/calciner fluidized bed reactor of the pilot scale platform ZECOMIX (ENEA - 5 kmol/h of H-2). The feasibility to feed O-2 to a bubbling fluidized bed calciner by means of Oxygen Transport Membranes (OTM) is studied using a simulation model. The fluidizing flow rate is made of CO2 and CH4, preliminarily heated up to 700-850 degrees C by heat exchange with the output gas stream (above 900 degrees C); overall gas flow rate and methane content are enough to reach vigorous bubbling fluidization (u approximate to 10 u(mf)) and temperature required by calcination, respectively. Cold model experimental tests with a cylindrical bubbling fluidized bed reactor with internals (vertical rods mimicking the OTM system) are carried out to support the design of the calciner unit in the ZECOMIX experimental platform. The hydrodynamic study is performed under ambient conditions to simulate fluidized bed expansion and to evaluate bubbles behavior in the calciner, in presence of vertical, tubular membranes for oxygen transfer.
引用
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页数:12
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