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CrossRef Text and Data Mining |
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Biomass Waste, Coffee Grounds-derived Carbon for Lithium Storage |
Ji Hyun Um, Yunok Kim, Chi-Yeong Ahn, Jinsoo Kim, Yung-Eun Sung, Yong-Hun Cho, Seung-Soo Kim, Won-Sub Yoon |
J. Electrochem. Sci. Technol. 2018;9(3):163-168. Published online September 30, 2018 DOI: https://doi.org/10.5229/JECST.2018.9.3.163 |
Activated carbon derived from waste coffee grounds for stable methane storage Waste coffee grounds derived nanoporous carbon incorporated with carbon nanotubes composites for electrochemical double-layer capacitors in organic electrolyte Properties of porous carbon electrode material derived from biomass of coffee waste grounds for capacitive deionization Biomass Waste, Coffee Grounds-derived Carbon for Lithium Storage Soil Amendments and Biostimulants from the Hydrothermal Processing of Spent Coffee Grounds In-situ O/N-heteroatom enriched activated carbon by sustainable thermal transformation of waste coffee grounds for supercapacitor material Spent Coffee Grounds Alkaline Pre-treatment as Biorefinery Option to Enhance their Anaerobic Digestion Yield The Application of Spent Coffee Grounds and Tea Wastes as Additives in Alkali-Activated Bricks Acute Toxicity of Experimental Fertilizers Made of Spent Coffee Grounds Study of Valorisation Routes of Spent Coffee Grounds |