• Carbon chain analysis on a coal IGCC — CCS system with flexible multi-products 

      Zhang, Xiangping; Gundersen, Truls; Roussanaly, Simon; Brunsvold, Amy; Zhang, Suojiang (Journal article; Peer reviewed, 2013)
      A carbon chain analysis is applied to assess a complex energy conversion system with CO2 capture and storage (CCS). A coal integrated gasification combined cycle, with CCS, which co-produces electricity and liquid fuels ...
    • Poly(vinylimidazole-co-butyl acrylate) membranes for CO2 separation 

      Ting, Song; Deng, Jing; Deng, Liyuan; Bai, Lu; Zhang, Xiangping; Zhang, Suojiang; Szabo, Peter; Daugaard, Anders E. (Peer reviewed; Journal article, 2019)
      Room temperature ionic liquids (RTILs) are known to exhibit high CO2 solubility, which makes them interesting candidates for separation and purification of mixed gas streams. Particularly, RTILs based on imidazoles have ...
    • Post-combustion carbon capture technologies: Energetic analysis and life cycle assessment 

      Zhang, Xiangping; Singh, Bhawna; He, Xuezhong; Gundersen, Truls; Deng, Liyuan; Zhang, Suojiang (Journal article; Peer reviewed, 2014)
      An integrated framework focusing on the energetic analysis and environmental impacts of a CO2 capture and storage (CCS) system is presented, in which the process simulation method and the life cycle assessment (LCA) method ...
    • Strategy Combining Free Volume Theory and Fragment Contribution Corresponding State Method for Predicting Viscosities of Ionic Liquids 

      Tu, Wenhui; Zeng, Shaojuan; Zhang, Xiaochun; He, Xuezhong; Liu, Lei; Zhang, Suojiang; Zhang, Xiangping (Journal article; Peer reviewed, 2019)
      In this study, we proposed a strategy that combines the fragment contribution corresponding states (FCCS) and free volume theory (FVT) method, namely FCCS–FVT, to calculate the viscosities of ionic liquids (ILs) covering ...