Can I read Gasification characteristics and synergistic effects of typical organic solid wastes under CO2/steam atmospheres on EtoBox?
Gasification characteristics and synergistic effects of typical organic solid wastes under CO2/steam atmospheres by Yuna Ma; Zhenting Zha; Chen Huang; Zefeng Ge; Mingxun Zeng; Huiyan Zhang is a Environmental Science article available to read on EtoBox.
What is Gasification characteristics and synergistic effects of typical organic solid wastes under CO2/steam atmospheres about?
Gasification technology is an effective way to achieve efficient, safe, and resourceful disposal of organic solid wastes (OSWs). Due to the complex sources and variable components of the OSWs, the co-disposal is highly essential. Various typical OSWs, including food waste (cooked rice, CR), agricultural waste (rice husk, RH; sugarcane bagasse, SB), and industrial waste (furfural residue, FR), were selected for this study. The gasification characteristics and synergistic performance were examined in terms of thermal weight loss characteristics under the CO2 atmosphere and gaseous product characteristics under the steam atmosphere. The synergistic indices of performance parameters were introduced to quantify the synergistic effects. The gasification activity of FR was remarkably higher than that of other OSWs. In the co-gasification with CR under the CO2 atmosphere, FR played an excellent positive synergistic effect, but the agricultural wastes played a slight or no synergistic effect. In the steam co-gasification, RH, SB, and FR all promoted the generation of syngas, in which FR showed still significant synergistic effects, with the synergistic indices of H2 yield, syngas yield, CCE
Who reads Gasification characteristics and synergistic effects of typical organic solid wastes under CO2/steam atmospheres?
It is typically read by researchers, students, and practitioners in Environmental Science.
- Author
- Yuna Ma; Zhenting Zha; Chen Huang; Zefeng Ge; Mingxun Zeng; Huiyan Zhang
- Publisher
- Elsevier BV
- Published
- 2023
- Language
- EN
- Field
- Environmental Science (Physical Sciences)