Search Results - "Chang, Ribooga"

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  1. 1

    High Temperature CO2 Capture Performance and Kinetic Analysis of Novel Potassium Stannate by Baird, Ross, Chang, Ribooga, Cheung, Ocean, Sanna, Aimaro

    “…For the first time, the use of stannate-based sorbents was investigated as high temperature CO2 sorption to evaluate their potential to contribute towards…”
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    Journal Article
  2. 2

    Calcium Carbonate Precipitation for CO2 Storage and Utilization: A Review of the Carbonate Crystallization and Polymorphism by Chang, Ribooga, Kim, Semin, Lee, Seungin, Choi, Soyoung, Kim, Minhee, Park, Youngjune

    Published in Frontiers in energy research (10-07-2017)
    “…The transformation of CO2 into a precipitated mineral carbonate through an ex situ mineral carbonation route is considered a promising option for carbon…”
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    Journal Article
  3. 3

    Tuning Crystal Polymorphisms and Structural Investigation of Precipitated Calcium Carbonates for CO2 Mineralization by Chang, Ribooga, Choi, Dasol, Kim, Min Hee, Park, Youngjune

    Published in ACS sustainable chemistry & engineering (06-02-2017)
    “…Mineral carbonation, which involves spontaneous reactions of CO2 with alkaline earth metals such as calcium or magnesium, is considered one of the most…”
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    Journal Article
  4. 4

    An investigation of the Ni/carbonate interfaces on dual function materials in integrated CO2 capture and utilisation cycles by Wu, Xianyue, Chang, Ribooga, Tan, Mingwu, Tao, Longgang, Fan, Qianwenhao, Hu, Xiaochun, Tan, Hui Ling, Åhlén, Michelle, Cheung, Ocean, Liu, Wen

    Published in Applied catalysis. B, Environmental (05-12-2023)
    “…CO2 capture and utilisation (CCU) is a promising strategy to effectively mitigate the adverse greenhouse effects caused by CO2 emissions at an industrial…”
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    Journal Article
  5. 5

    High Temperature CO 2 Capture Performance and Kinetic Analysis of Novel Potassium Stannate by Baird, Ross, Chang, Ribooga, Cheung, Ocean, Sanna, Aimaro

    “…For the first time, the use of stannate-based sorbents was investigated as high temperature CO sorption to evaluate their potential to contribute towards…”
    Get full text
    Journal Article
  6. 6

    Achieving Molecular Sieving of CO 2 from CH 4 by Controlled Dynamical Movement and Host-Guest Interactions in Ultramicroporous VOFFIVE-1-Ni by Pillar Substitution by Chang, Ribooga, Bacsik, Zoltán, Zhou, Guojun, Strømme, Maria, Huang, Zhehao, Åhlén, Michelle, Cheung, Ocean

    Published in Nano letters (2024)
    “…Engineering the building blocks in metal-organic materials is an effective strategy for tuning their dynamical properties and can affect their response to…”
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    Journal Article
  7. 7

    Achieving Molecular Sieving of CO2 from CH4 by Controlled Dynamical Movement and Host–Guest Interactions in Ultramicroporous VOFFIVE-1-Ni by Pillar Substitution by Chang, Ribooga, Bacsik, Zoltán, Zhou, Guojun, Strømme, Maria, Huang, Zhehao, Åhlén, Michelle, Cheung, Ocean

    Published in Nano letters (26-06-2024)
    “…Engineering the building blocks in metal–organic materials is an effective strategy for tuning their dynamical properties and can affect their response to…”
    Get full text
    Journal Article
  8. 8