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Titlebook: Carbon Dioxide Mineralization and Utilization; Pen-Chi Chiang,Shu-Yuan Pan Book 2017 Springer Nature Singapore Pte Ltd. 2017 accelerated c

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Cancer Drug Discovery and Developmento-chemical properties of alkaline solid wastes for the utilization in civil engineering. The carbonation of industrial alkaline wastes, such as steel slags and metalworking wastewater, has been proved to be an effective way to capture CO..
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Birgit Burkhardt,Birte Wistinghausening performance, environmental benefit, and economic viability for decision making. Therefore, in this chapter, the methodologies and tools pertaining to the geospatial analysis, response surface analysis, life cycle assessment, and cost–benefit analysis are illustrated.
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Oussama Abla,Andishe Attarbaschizing natural ores to capture CO. from the flue gas, (1) accelerated mineral carbonation and (2) accelerated carbonate weathering, are discussed in detail in terms of theoretical process chemistry and practical applications, including challenges and barriers.
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Applications to Optimal Control Problems,waste. Since the chemistry of the cement hydrations is complicated and has not been completely clear, the principles and mechanisms of performance enhancement due to the use of carbonated waste in blended cement system are reviewed and discussed.
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Introduction,) Parties, i.e., Conferences of the Parties (COP), is provided to reveal key milestones in dealing with global greenhouse gas emissions. One such method uses accelerated carbonation of alkaline wastes to capture and utilize CO., the theoretical and practical considerations of which are presented in 19 Chapters in this book.
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Post-combustion Carbon Capture, Storage, and Utilizationlgae pond systems, is illustrated in detail. The principles of microalgae open pond systems, key parameters affecting productivity, and economic considerations of operating open ponds are systematically illustrated.
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System Analysising performance, environmental benefit, and economic viability for decision making. Therefore, in this chapter, the methodologies and tools pertaining to the geospatial analysis, response surface analysis, life cycle assessment, and cost–benefit analysis are illustrated.
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Natural Silicate and Carbonate Minerals (Ores)zing natural ores to capture CO. from the flue gas, (1) accelerated mineral carbonation and (2) accelerated carbonate weathering, are discussed in detail in terms of theoretical process chemistry and practical applications, including challenges and barriers.
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