Coal Chemical-Looping with Oxygen Uncoupling (CLOU) Using a Cu-Based Oxygen Carrier Derived from Natural Minerals
Abstract
:1. Introduction
2. Experimental
2.1. Coal Char Preparation and Characterization
2.2. Cu-Based OC (Cu-OC) Preparation and Characterization
2.3. Analysis of the Cu-OC
2.3.1. Cu-OC Oxygen Uncoupling
2.3.2. Recyclability of the Cu-OC with Coal Char in a TGA-QMS
2.3.3. Recyclability of the Cu-OC with Coal Char in a Fixed Bed Reactor-QMS System
2.4. Data Analysis
3. Results and Discussion
3.1. Cu-OC Oxygen Uncoupling
3.2. Reduction and Reoxidization of Cu-OC with Coal Char
3.3. Recyclability of Cu-OC in Coal Char CLOU Tested in a TGA-QMS and Fixed-Bed Reactor-QMS
4. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
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Sample | Proximate Analysis (% Dry Basis) | Ultimate Analysis (% Dry Basis) | ||||||
---|---|---|---|---|---|---|---|---|
Fixed Carbon | Volatile Matter | Ash | C | H | N | S | O (Diff.) | |
PRB Coal | 47.66 | 45.08 | 7.26 | 65.44 | 4.39 | 0.72 | 0.48 | 21.71 |
PRB Char | 85.60 | 1.98 | 12.42 | 85.60 | 0.23 | 1.12 | 0.53 | 0.10 |
Chalcopyrite | Fresh Cu-OC | Uncoupled Cu-OC | Reduced Cu-OC | Reoxidized | |
---|---|---|---|---|---|
Chemical | wt% | with Char | Cu-OC with Char | ||
CuFeS2 | 75 | CuO | Cu2O | Cu2O | CuO |
CuFe2O4 (CuOFe2O3) (tetragonal) | CuFe2O4 (tetragonal) | ||||
CuFe2O4 (cubic) | CuFe2O4 (cubic) | CuFe2O4 (cubic) | |||
CuFeO2 (Cu2OFe2O3) | CuFeO2 | ||||
Fe2O3 | Fe2O3 | Fe2O3 | Fe2O3 | ||
SiO2 | 20 | SiO2 | SiO2 | SiO2 | SiO2 |
FeCO3 | 2 | ||||
kaolinite | 3 |
Sample | T (°C) | Oxygen Uncoupling | Carbon Conversion in Reduction | Test System | |||||
---|---|---|---|---|---|---|---|---|---|
momax | Tmax | dXo/dtmax | Xc | Sco2 | Tmax | dXc/dtmax | |||
Roc (%) | (°C) | (1/s) | (°C) | (1/s) | |||||
Cu ore OC | 900 | 3.3 | 900 | 0.0012 | TGA-QMS | ||||
Pure CuO | 850 | 10 | 850 | 0.0015 | fixed bed-QMS | ||||
950 | 10 | 922 | 0.0077 | fixed bed-QMS | |||||
Cu ore OC/char | 900 | 0.94 | 1 | 838 | 0.005 | TGA-QMS | |||
ϕ = 75 | 900 | 0.95 | 1 | 835 | 0.006 | fixed bed-QMS | |||
Pure CuO/char | 850 | 0.98 | 1 | 801 | 0.006 | fixed bed-QMS | |||
ϕ = 26 | 950 | 0.99 | 1 | 833 | 0.011 | fixed bed-QMS |
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Wang, P.; Howard, B.; Means, N.; Shekhawat, D.; Berry, D. Coal Chemical-Looping with Oxygen Uncoupling (CLOU) Using a Cu-Based Oxygen Carrier Derived from Natural Minerals. Energies 2019, 12, 1453. https://doi.org/10.3390/en12081453
Wang P, Howard B, Means N, Shekhawat D, Berry D. Coal Chemical-Looping with Oxygen Uncoupling (CLOU) Using a Cu-Based Oxygen Carrier Derived from Natural Minerals. Energies. 2019; 12(8):1453. https://doi.org/10.3390/en12081453
Chicago/Turabian StyleWang, Ping, Bret Howard, Nicholas Means, Dushyant Shekhawat, and David Berry. 2019. "Coal Chemical-Looping with Oxygen Uncoupling (CLOU) Using a Cu-Based Oxygen Carrier Derived from Natural Minerals" Energies 12, no. 8: 1453. https://doi.org/10.3390/en12081453
APA StyleWang, P., Howard, B., Means, N., Shekhawat, D., & Berry, D. (2019). Coal Chemical-Looping with Oxygen Uncoupling (CLOU) Using a Cu-Based Oxygen Carrier Derived from Natural Minerals. Energies, 12(8), 1453. https://doi.org/10.3390/en12081453