Graphitic Biocarbon from Metal-Catalyzed Hydrothermal Carbonization of Lignin

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American Chemical Society

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info:eu-repo/semantics/openAccess

Özet

Lignin is a high-volume byproduct from the pulp and paper industry and is currently burned to generate electricity and process heat. The industry has been searching for high value-added uses of lignin to improve the process economics. In addition, battery manufacturers are seeking nonfossil sources of graphitic carbon for environmental sustainability. In this work, lignin (which is a cross-linked polymer of phenols, a component of biomass) is converted into graphitic porous carbon using a two-step conversion. Lignin is first carbonized in water at 300°C and 1500 psi to produce biochar, which is then graphitized using a metal nitrate catalyst at 900-1100°C in an inert gas at 15 psi. Graphitization effectiveness of three different catalysts - iron, cobalt, and manganese nitrates - is examined. The product is analyzed for morphology, thermal stability, surface properties, and electrical conductivity. Both temperature and catalyst type influenced the degree of graphitization. A good quality graphitic carbon was obtained using catalysis by Mn(NO3)2 at 900°C and Co(NO3)2 at 1100°C. © 2015 American Chemical Society.

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Anahtar Kelimeler

Byproducts, Carbonization, Lignins, Paper Industry, Pulps, Surface Properties, Carbonization, Catalysis, Catalysts, Cobalt deposits, Crosslinking, Graphite, Graphitization, Lignin, Manganese, Nitrates, Porous materials, Sustainable development, Cross-linked polymers, Electrical conductivity, Environmental sustainability, Generate electricity, Hydrothermal carbonization, Manganese nitrate, Process economics, Pulp and paper industry, Paper and pulp industry

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Industrial and Engineering Chemistry Research

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54

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43

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