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1

Bai, Ruzhan, Na Li, Quansheng Liu, Shenna Chen, Qi Liu, and Xing Zhou. "Effect of Steam on Carbonation of CaO in Ca-Looping." Molecules 28, no. 13 (2023): 4910. http://dx.doi.org/10.3390/molecules28134910.

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Анотація:
Ca-looping is an effective way to capture CO2 from coal-fired power plants. However, there are still issues that require further study. One of these issues is the effect of steam on the Ca-looping process. In this paper, a self-madethermogravimetric analyzer that can achieve rapid heating and cooling is used to measure the change of sample weight under constant temperature conditions. The parameters of the Ca-looping are studied in detail, including the addition of water vapor alone in the calcination or carbonation stage and the calcination/carbonation reaction temperatures for both calcinati
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2

Lappeenranta-Lahti, University of Technology. "Dataset on the conceptual evaluation of carbon capture rates using Ca(OH)2 in the calcium looping process." Data in Brief 59 (March 7, 2025): 111415. https://doi.org/10.1016/j.dib.2025.111415.

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Анотація:
Abstract Carbon capture in industrial processes is essential for mitigating climate change, especially in energy-intensive sectors like cement and power generation. Among the available carbon capture technologies, calcium looping (CaL) stands out as a feasible post-process solution, which typically captures around 90% of emitted CO₂. However, injecting calcium hydroxide (Ca(OH)₂) can increase capture rates to about 99%. This dataset illustrates how introducing Ca(OH)₂ can help trap more carbon dioxide in industrial systems, highlighting the importance of key factors such as the injection rate
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3

Martini, M., M. Druiff, M. van Sint Annaland, and F. Gallucci. "Experimental demonstration of the Ca-Cu looping process." Chemical Engineering Journal 418 (August 2021): 129505. http://dx.doi.org/10.1016/j.cej.2021.129505.

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4

Li, Y., C. Zhao, H. Chen, and Y. Liu. "Enhancement of Ca-Based Sorbent Multicyclic Behavior in Ca Looping Process for CO2Separation." Chemical Engineering & Technology 32, no. 4 (2009): 548–55. http://dx.doi.org/10.1002/ceat.200800525.

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5

Luongo, Giancarlo, Felix Donat та Christoph R. Müller. "Structural and thermodynamic study of Ca A- or Co B-site substituted SrFeO3−δ perovskites for low temperature chemical looping applications". Physical Chemistry Chemical Physics 22, № 17 (2020): 9272–82. http://dx.doi.org/10.1039/d0cp01049a.

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6

Romano, Matteo C., Isabel Martínez, Ramón Murillo, et al. "Process simulation of Ca-looping processes: review and guidelines." Energy Procedia 37 (2013): 142–50. http://dx.doi.org/10.1016/j.egypro.2013.05.095.

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7

Itskos, Grigorios, Panagiotis Grammelis, Fabrizio Scala, et al. "A comparative characterization study of Ca-looping natural sorbents." Applied Energy 108 (August 2013): 373–82. http://dx.doi.org/10.1016/j.apenergy.2013.03.009.

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8

Anthony, E. J. Ben. "Ca looping technology: current status, developments and future directions." Greenhouse Gases: Science and Technology 1, no. 1 (2011): 36–47. http://dx.doi.org/10.1002/ghg3.2.

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9

Chen, Jian, Lunbo Duan, Tian Shi, et al. "A facile one-pot synthesis of CaO/CuO hollow microspheres featuring highly porous shells for enhanced CO2 capture in a combined Ca–Cu looping process via a template-free synthesis approach." Journal of Materials Chemistry A 7, no. 37 (2019): 21096–105. http://dx.doi.org/10.1039/c9ta04513a.

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Анотація:
The preparation of CaO/CuO composites with high performance is essential for combined Ca–Cu looping process, where the exothermic reduction of CuO with methane is used in situ to calcine CaCO<sub>3</sub>.
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10

Lara, Y., A. Martínez, P. Lisbona, and L. M. Romeo. "Heat integration of alternative Ca-looping configurations for CO2 capture." Energy 116 (December 2016): 956–62. http://dx.doi.org/10.1016/j.energy.2016.10.020.

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11

Lin, Shi-Ying. "Development of Ca Looping Three-Towers CFB Biomass/Coal gasification." Energy Procedia 63 (2014): 2116–21. http://dx.doi.org/10.1016/j.egypro.2014.11.228.

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12

De, Lena Edoardo, Maurizio Spinelli, Isabel Martínez, et al. "Process integration study of tail-end Ca-Looping process for CO2 capture in cement plants." International Journal of Greenhouse Gas Control 67 (November 5, 2017): 71–92. https://doi.org/10.1016/j.ijggc.2017.10.005.

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Анотація:
In this work, the integration of Calcium looping (CaL) process into a cement plant for post-combustion CO2 capture is assessed via process simulations. In the proposed scheme, the carbonator of the CaL process is used as an end-of-pipe unit to capture the CO2 from the cement kiln gas.
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13

Setia Febriatna, Triya, Prihadi Setyo Darmanto, and Firman Bagja Juangsa. "Experimental analysis on calcination and carbonation process in calcium looping for CO2 capture: study case of cement plants in Indonesia." Clean Energy 7, no. 2 (2023): 313–27. http://dx.doi.org/10.1093/ce/zkac072.

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Анотація:
Abstract Carbon dioxide (CO2) is the main contributor to greenhouse gases that affect global warming. The industrial sector is the third largest producer of CO2 and the cement industry is one of the industries that consistently produces the most significant CO2 emissions. The cement industry produces 5–8% of global CO2 emissions. Several methods for reducing specific CO2 emissions have been reported in the cement industry, including calcium looping, which uses the reversible reaction between calcination [calcium carbonate (CaCO3) decomposition] and carbonation [CO2 capture by calcium oxide (Ca
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14

Martínez, A., P. Lisbona, Y. Lara, and L. M. Romeo. "Energy Intensity Reduction of Ca-Looping CO2 Capture by Applying Mixing Loop Seals and Cyclonic Systems." International Journal of Chemical Reactor Engineering 13, no. 4 (2015): 523–32. http://dx.doi.org/10.1515/ijcre-2014-0155.

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Анотація:
Abstract This work faces the challenge of cutting the specific energy demand in the CO2 capture process based on Ca-looping technology. The use of high-temperature sorbents allows an efficient integration of the excess heat flows. Up to now, several investigations studied the Ca-looping integration with external systems such as a steam cycle. In this research, a further step is done by comparing technological solutions for the internal heat integration with the aim of reducing the energy needs. Particles preheating before entering the regeneration reactor appears as an opportunity for energy s
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15

Sahoo, Harekrushna, Andreas Hennig, and Werner M. Nau. "Temperature-dependent loop formation kinetics in flexible peptides studied by time-resolved fluorescence spectroscopy." International Journal of Photoenergy 2006 (2006): 1–9. http://dx.doi.org/10.1155/ijp/2006/89638.

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Анотація:
Looping rates in short polypeptides can be determined by intramolecular fluorescence quenching of a 2,3-diazabicyclo[2.2.2]oct-2-ene-labeled asparagine (Dbo) by tryptophan. By this methodology, the looping rates in glycine-serine peptides with the structure Trp-(Gly-Ser)n-Dbo-NH2of different lengths (n= 0–10) were determined in dependence on temperature inD2Oand the activation parameters were derived. In general, the looping rate increases with decreasing peptide length, but the shortest peptide(n=0)shows exceptional behavior because its looping rate is slower than that for the next longer one
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16

Tang, Genyang, Jing Gu, Zhen Huang, Haoran Yuan, and Yong Chen. "Cellulose gasification with Ca–Fe oxygen carrier in chemical-looping process." Energy 239 (January 2022): 122204. http://dx.doi.org/10.1016/j.energy.2021.122204.

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17

Martínez, I., G. Grasa, R. Murillo, B. Arias, and J. C. Abanades. "Modelling the continuous calcination of CaCO3 in a Ca-looping system." Chemical Engineering Journal 215-216 (January 2013): 174–81. http://dx.doi.org/10.1016/j.cej.2012.09.134.

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18

Spinelli, M., I. Martínez, E. De Lena, et al. "Integration of Ca-Looping Systems for CO2 Capture in Cement Plants." Energy Procedia 114 (July 2017): 6206–14. http://dx.doi.org/10.1016/j.egypro.2017.03.1758.

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19

Evdou, Antigoni, Theofilos Georgitsis, Charitini Matsouka, Eleni Pachatouridou, Eleni Iliopoulou, and Vassilios Zaspalis. "Defect Chemistry and Chemical Looping Performance of La1−xMxMnO3 (M = Sr, Ca, (x = 0–0.5)) Perovskites." Nanomaterials 12, no. 19 (2022): 3461. http://dx.doi.org/10.3390/nano12193461.

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Анотація:
La1−xMxMnO3 (M = Sr, Ca, (x = 0–0.5)) materials of the perovskite structure are synthesized by a co-precipitation method. They are subsequently investigated for their performance in a chemical looping process (fuel CH4) using thermogravimetric analysis with simultaneous reaction. The goal of this work is to determine the relation between the defect chemistry of the materials and their behavior in chemical looping processes. A defect model is proposed that provides an explanation of the dependency of the Oxygen Transfer Capacity and of the CO2/CO selectivity on composition. It appeared that the
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20

Ozcan, Dursun Can, Arturo Macchi, Dennis Y. Lu, et al. "Ca–Cu looping process for CO 2 capture from a power plant and its comparison with Ca-looping, oxy-combustion and amine-based CO 2 capture processes." International Journal of Greenhouse Gas Control 43 (December 2015): 198–212. http://dx.doi.org/10.1016/j.ijggc.2015.10.021.

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21

Tian, Hongjing, Xiude Hu, Jing Chang, Mingdong Han, Guanglin Sun, and Qingjie Guo. "Simulation of a New Chemical-Looping Combustion Process without Sulfur Evolution Based on Ca-Based Oxygen Carrier." International Journal of Chemical Reactor Engineering 12, no. 1 (2014): 13–24. http://dx.doi.org/10.1515/ijcre-2012-0039.

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Abstract Calcium sulfate (CaSO4) is a promising oxygen carrier for chemical-looping combustion system. The release of sulfurous gas in the circulating of Ca-based oxygen carrier is a crucial problem. In this paper, it is found that the released amount of sulfurous gas is greatly affected by the partial pressure of reductive gas. If the partial pressure of the mixed reductive gases, composed of H2 and CO, maintains higher than 40 kPa, the sulfurous gas can be completely eliminated even at the reacting temperature higher than 1,000°C. Therefore, a new chemical-looping combustion system based on
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22

Coppola, Antonio, Fabio Montagnaro, Fabrizio Scala, and Piero Salatino. "Performance of Ca-Based Sorbents for Calcium Looping Processes: Role of Steam." Advanced Science Letters 23, no. 6 (2017): 5920–22. http://dx.doi.org/10.1166/asl.2017.9069.

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23

Guo, Qingjie, Xiude Hu, Yongzhuo Liu, et al. "Coal chemical-looping gasification of Ca-based oxygen carriers decorated by CaO." Powder Technology 275 (May 2015): 60–68. http://dx.doi.org/10.1016/j.powtec.2015.01.061.

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24

Martínez, Ana, Yolanda Lara, Pilar Lisbona, and Luis M. Romeo. "Operation of a Cyclonic Preheater in the Ca-Looping for CO2 Capture." Environmental Science & Technology 47, no. 19 (2013): 11335–41. http://dx.doi.org/10.1021/es401601k.

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25

Valverde, Jose Manuel. "A model on the CaO multicyclic conversion in the Ca-looping process." Chemical Engineering Journal 228 (July 2013): 1195–206. http://dx.doi.org/10.1016/j.cej.2013.05.023.

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26

Lara, Yolanda, Pilar Lisbona, Ana Martínez, and Luis M. Romeo. "Design and analysis of heat exchanger networks for integrated Ca-looping systems." Applied Energy 111 (November 2013): 690–700. http://dx.doi.org/10.1016/j.apenergy.2013.05.044.

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27

Miranda-Pizarro, Juan, Antonio Perejón, Jose Manuel Valverde, Luis A. Pérez-Maqueda, and Pedro E. Sánchez-Jiménez. "CO2 capture performance of Ca-Mg acetates at realistic Calcium Looping conditions." Fuel 196 (May 2017): 497–507. http://dx.doi.org/10.1016/j.fuel.2017.01.119.

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28

Materic, Vlatko, Robert Holt, Margaret Hyland, and Mark I. Jones. "An internally circulating fluid bed for attrition testing of Ca looping sorbents." Fuel 127 (July 2014): 116–23. http://dx.doi.org/10.1016/j.fuel.2013.10.071.

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29

Tang, Genyang, Jing Gu, Guoqiang Wei, Benteng Wu, Haoran Yuan, and Yong Chen. "Kinetics analysis of cellulose chemical-looping gasification using Ca–Fe oxygen carrier." International Journal of Hydrogen Energy 64 (April 2024): 318–28. http://dx.doi.org/10.1016/j.ijhydene.2024.03.239.

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30

Ávila, I., A. Mortari, A. M. Santos, and P. M. Crnkovic. "THE CALCIUM LOOPING CYCLE STUDY FOR CAPTURING CARBON DIOXIDE APPLIED TO THE ENERGY GENERATION." Revista de Engenharia Térmica 12, no. 2 (2013): 28. http://dx.doi.org/10.5380/reterm.v12i2.62041.

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Анотація:
The calcium looping process (Ca-L) is a promising technology to reduce of the carbon dioxide (CO2) emissions when applied in energy generation systems. Ca-based materials (usually limestone) are used in this process as CO2 sorbents. Thus, the CO2 capture occurs by the reversible reaction between calcium oxide (CaO) and CO2, resulting in the calcium carbonate form (CaCO3). Compared to other technologies applied to carbon sequestration process, the Ca-L offers additional advantages such: the use of fluidized bed technology that is already well established; this process occurs at high temperature
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31

Spinelli, Maurizio, Isabel Martínez, and Matteo C. Romano. "One-dimensional model of entrained-flow carbonator for CO2 capture in cement kilns by calcium looping process." Chemical Engineering Science 191, no. 2018 (2018): 100–114. https://doi.org/10.1016/j.ces.2018.06.051.

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Анотація:
In this work, a 1D model of an entrained-flow carbonator of a Calcium looping process for cement plants is presented and the results of a sensitivity analysis on the main governing process parameters is discussed. Several design and operating parameters have been investigated through a wide sensitivity analysis, namely: adiabatic vs. cooled reactor, high gas velocity gooseneck reactor vs. low velocity downflow reactor, solid-to-gas ratio, sorbent capacity, reactor inlet temperature and solids recirculation. The effect of these design and process parameters on the CO2 capture efficiency and on
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32

Lai, Chin Wei. "Anodic CaO-TiO2Nanotubes Composite Film for Low Temperature CO2Adsorption." Journal of Nanomaterials 2014 (2014): 1–6. http://dx.doi.org/10.1155/2014/876571.

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A novel one-dimensional anodic CaO-TiO2nanotubes composite film was prepared using a rapid-anodic oxidation electrochemical anodization technique for low temperature CO2absorption application. This study aims to determine the optimum concentration of Ca(NO3)2·4H2O used as the CaO precursor for loading CaO species on TiO2nanotubes. In this study, an optimum content of CaO on TiO2nanotubes (0.15 at% of Ca element) could enhance the CO2adsorption capacity up to 2.45 mmol/g at 400°C. This behavior was attributed to the large active surface area of CaO species were covered on the surface of TiO2nan
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33

De, Lena Edoardo, Maurizio Spinelli, Manuele Gatti, et al. "Techno-economic analysis of calcium looping processes for low CO2 emission cement plants." International Journal of Greenhouse Gas Control 82 (January 24, 2019): 244–60. https://doi.org/10.1016/j.ijggc.2019.01.005.

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Анотація:
The scope of this work is to perform a techno-economic analysis of two Calcium Looping processes (CaL) for CO2 capture in cement plants. Both tail-end CaL system with fluidized bed reactors and integrated CaL system with entrained flow reactors have been considered in the analysis. The calculation of the heat and mass balances and the economic analysis are consistent with the methodology defined in the framework of the H2020 Cemcap project. The analysis shows that the assessed CaL systems (especially the tail-end configuration) involve a significant increase of fuel consumption compared to a r
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34

Teng, Liang, Yimin Xuan, Yun Da, Xianglei Liu, and Yulong Ding. "Modified Ca-Looping materials for directly capturing solar energy and high-temperature storage." Energy Storage Materials 25 (March 2020): 836–45. http://dx.doi.org/10.1016/j.ensm.2019.09.006.

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35

Valverde, J. M., F. Raganati, M. A. S. Quintanilla, J. M. P. Ebri, P. Ammendola, and R. Chirone. "Enhancement of CO2 capture at Ca-looping conditions by high-intensity acoustic fields." Applied Energy 111 (November 2013): 538–49. http://dx.doi.org/10.1016/j.apenergy.2013.05.012.

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36

Chen, Jian, Felix Donat, Lunbo Duan, et al. "Metal-oxide stabilized CaO/CuO composites for the integrated Ca/Cu looping process." Chemical Engineering Journal 403 (January 2021): 126330. http://dx.doi.org/10.1016/j.cej.2020.126330.

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37

Ozcan, Dursun Can, Hyungwoong Ahn, and Stefano Brandani. "Process integration of a Ca-looping carbon capture process in a cement plant." International Journal of Greenhouse Gas Control 19 (November 2013): 530–40. http://dx.doi.org/10.1016/j.ijggc.2013.10.009.

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38

Hrdlicka, Jan, Jan Opatril, Matej Vodicka, Pavel Skopec, and Lukas Pilar. "Modelling of Ca-looping for a 250 MWe Lignite Coal Fired Power Plant." Energy Procedia 114 (July 2017): 191–200. http://dx.doi.org/10.1016/j.egypro.2017.03.1161.

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39

Phalak, N., W. Wang, and L. S. Fan. "Ca(OH)2-Based Calcium Looping Process Development at The Ohio State University." Chemical Engineering & Technology 36, no. 9 (2013): 1451–59. http://dx.doi.org/10.1002/ceat.201200707.

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40

Martínez, Isabel, Ramón Murillo, Gemma Grasa, and Juan Carlos Abanades. "Integration of a Ca looping system for CO2 capture in existing power plants." AIChE Journal 57, no. 9 (2010): 2599–607. http://dx.doi.org/10.1002/aic.12461.

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41

Pascual, S., L. M. Romeo, and P. Lisbona. "Optimized Ca-looping thermochemical energy storage under dynamic operation for concentrated solar power." Journal of Energy Storage 68 (September 2023): 107587. http://dx.doi.org/10.1016/j.est.2023.107587.

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42

Wang, Yijie, Yi Xing, and Chen Hong. "Ca sorption/enhanced Fe-based oxygen carriers for chemical looping gasification of microalgae." Journal of Environmental Chemical Engineering 13, no. 3 (2025): 116274. https://doi.org/10.1016/j.jece.2025.116274.

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43

Madejski, Paweł, Karolina Chmiel, Navaneethan Subramanian, and Tomasz Kuś. "Methods and Techniques for CO2 Capture: Review of Potential Solutions and Applications in Modern Energy Technologies." Energies 15, no. 3 (2022): 887. http://dx.doi.org/10.3390/en15030887.

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Анотація:
The paper presents and discusses modern methods and technologies of CO2 capture (pre-combustion capture, post-combustion capture, and oxy-combustion capture) along with the principles of these methods and examples of existing and operating installations. The primary differences of the selected methods and technologies, with the possibility to apply them in new low-emission energy technologies, were presented. The following CO2 capture methods: pre-combustion, post-combustion based on chemical absorption, physical separation, membrane separation, chemical looping combustion, calcium looping pro
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44

Bian, Zhiguo, Yingjie Li, Chunxiao Zhang, Jianli Zhao, Zeyan Wang, and Wenqiang Liu. "CaO/Ca(OH)2 heat storage performance of hollow nanostructured CaO-based material from Ca-looping cycles for CO2 capture." Fuel Processing Technology 217 (June 2021): 106834. http://dx.doi.org/10.1016/j.fuproc.2021.106834.

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45

Wu, Jiawei, Zhifeng Hu, Zhenwu Miao, Wencheng Wu, and Enchen Jiang. "Effect of alkaline earth metal Ca in rice husk during chemical looping gasification process." Fuel 299 (September 2021): 120902. http://dx.doi.org/10.1016/j.fuel.2021.120902.

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46

Al-Jeboori, Mohamad J., Michaela Nguyen, Charles Dean, and Paul S. Fennell. "Improvement of Limestone-Based CO2Sorbents for Ca Looping by HBr and Other Mineral Acids." Industrial & Engineering Chemistry Research 52, no. 4 (2013): 1426–33. http://dx.doi.org/10.1021/ie302198g.

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47

Valverde, J. M., P. E. Sanchez-Jimenez, and L. A. Perez-Maqueda. "Effect of Heat Pretreatment/Recarbonation in the Ca-Looping Process at Realistic Calcination Conditions." Energy & Fuels 28, no. 6 (2014): 4062–67. http://dx.doi.org/10.1021/ef5007325.

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48

Coppola, Antonio, Eduardo Gais, Gabriella Mancino, Fabio Montagnaro, Fabrizio Scala, and Piero Salatino. "Effect of steam on the performance of Ca-based sorbents in calcium looping processes." Powder Technology 316 (July 2017): 578–84. http://dx.doi.org/10.1016/j.powtec.2016.11.062.

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Valverde, J. M., J. M. P. Ebri, and M. A. S. Quintanilla. "Acoustic Streaming Enhances the Multicyclic CO2 Capture of Natural Limestone at Ca-Looping Conditions." Environmental Science & Technology 47, no. 16 (2013): 9538–44. http://dx.doi.org/10.1021/es4019173.

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Martínez, I., R. Murillo, G. Grasa, and J. C. Abanades. "Integration of a Ca-looping system for CO2 capture in an existing power plant." Energy Procedia 4 (2011): 1699–706. http://dx.doi.org/10.1016/j.egypro.2011.02.043.

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