Gasification biochar from biowaste (food waste and wood waste) for effective CO2 adsorption

  • Igalavithana, Avanthi Deshani
  • Choi, Seung Wan
  • Dissanayake, Pavani Dulanja
  • Shang, Jin
  • Wang, Chi-Hwa
  • ... Lee, Ki Bong
  • ... Ok, Yong Sik
  • 외 3명
Citations

WEB OF SCIENCE

196
Citations

SCOPUS

220

초록

Biochar is newly proposed as an innovative and cost-effective material to capture CO2. In this study, biochar was produced from feedstock mixtures of food waste and wood waste (i.e., 20%:80% WFW20, 30%:70% WFW30 and 40%:60% WFW40) by gasification. The two biochar adsorbents containing the highest percentage of food waste, i.e., WFW40-K and WFW40-KC, were activated by KOH and KOH + CO2, respectively. The biochar adsorbents were then tested for CO2 adsorption at room temperature of 25 degrees C by using a volumetric sorption analyzer. The WFW20 showed the highest CO2 adsorption capacity, while higher percentage of food waste in the feedstock was unfavorable for the CO2 adsorption. The presence of N and S on the biochar surface was the primary contributor to the high CO2 uptake on WFW20. The development of micropores by KOH activation significantly increased the CO2 adsorption on WFW40-K, but KOH + CO2 activation could not further increase the development of micropores and subsequent CO2 adsorption. Moreover, WFW40-K showed >99% recyclability during 10 consecutive adsorption-desorption cycles. The biochars derived from biowaste (food waste and wood waste) could be effective adsorbents for CO2 capture by providing green solution for food waste recycling.

키워드

Negative emission technologySustainable waste managementEngineered biocharSustainable Development Goals (SDGs)Waste recycling/valorizationMICROBIAL COMMUNITY ABUNDANCEACTIVATED CARBONSKOH ACTIVATIONMICROPOROUS CARBONSFUNCTIONAL-GROUPSCAPTUREPYROLYSISSOILDIOXIDEIMMOBILIZATION
제목
Gasification biochar from biowaste (food waste and wood waste) for effective CO2 adsorption
저자
Igalavithana, Avanthi DeshaniChoi, Seung WanDissanayake, Pavani DulanjaShang, JinWang, Chi-HwaYang, XiaoKim, SuminTsang, Daniel C. W.Lee, Ki BongOk, Yong Sik
DOI
10.1016/j.jhazmat.2019.121147
발행일
2020-06-05
유형
Article
저널명
Journal of Hazardous Materials
391