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| Autore: |
Bedia Jorge
|
| Titolo: |
New Carbon Materials from Biomass and Their Applications
|
| Pubblicazione: | Basel, 2022 |
| Descrizione fisica: | 1 online resource (272 p.) |
| Soggetto topico: | Industrial chemistry and chemical engineering |
| Technology: general issues | |
| Soggetto non controllato: | activated carbon |
| adsorbability | |
| adsorbent | |
| adsorption | |
| application depth | |
| artemisia selengensis | |
| aspen plus | |
| bark | |
| bio-fuel | |
| biocarbon | |
| biochar | |
| biochar preparation | |
| biodiesel | |
| biomass | |
| biomass-based adsorbents | |
| blended biochar pellet | |
| briquetting | |
| carbonization | |
| carbonized sulfonation | |
| chicken manure compost | |
| CO2 emission | |
| crop productivity | |
| cupola furnace | |
| cyclic breakthrough measurements | |
| economic analysis | |
| environmental conservation | |
| foundry industry | |
| germination | |
| grape seeds | |
| greenhouse | |
| hierarchical porosity | |
| HTC | |
| humid conditions | |
| hydrochar | |
| hydrogenation | |
| hydrothermal carbonization | |
| lignocellulosic biomass | |
| methylene blue | |
| microplastics | |
| microwave pyrolysis | |
| modified Hyperbola | |
| n/a | |
| nutrient release | |
| one-step method | |
| phenol adsorption | |
| postcombustion CO2 capture | |
| production | |
| propagation mix | |
| pyrolysis | |
| regeneration | |
| remediation | |
| response surface method | |
| root-zone soil | |
| Salix carboniferous solid acid catalysts | |
| seed conditioning | |
| seedlings | |
| selectivity CO2/N2 | |
| sewage sludge | |
| Sida hermaphrodita L. Rusby | |
| simulation | |
| slow release fertilizer | |
| soil ameliorant | |
| soil pollution | |
| steam activation | |
| sulfamethoxazole | |
| tropical rainfed condition | |
| value-added product | |
| vermicompost | |
| waste-to-products | |
| water remediation | |
| zinc | |
| Persona (resp. second.): | BelverCarolina |
| BediaJorge | |
| Sommario/riassunto: | Carbon-based materials, such as chars, activated carbons, one-dimensional carbon nanotubes, and two-dimensional graphene nanosheets, have shown great potential for a wide variety of applications. These materials can be synthesized from any precursor with a high proportion of carbon in its composition. Although fossil fuels have been extensively used as precursors, their unstable cost and supply have led to the synthesis of carbon materials from biomass. Biomass covers all forms of organic materials, including plants both living and in waste form and animal waste products. It appears to be a renewable resource because it yields value-added products prepared using environmentally friendly processes. The applications of these biomass-derived carbon materials include electronic, electromagnetic, electrochemical, environmental and biomedical applications. Thus, novel carbon materials from biomass are a subject of intense research, with strong relevance to both science and technology. The main aim of this reprint is to present the most relevant and recent insights in the field of the synthesis of biomass-derived carbons for sustainable applications, including adsorption, catalysis and/or energy storage applications. |
| Titolo autorizzato: | New Carbon Materials from Biomass and Their Applications ![]() |
| Formato: | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione: | Inglese |
| Record Nr.: | 9910595078803321 |
| Lo trovi qui: | Univ. Federico II |
| Opac: | Controlla la disponibilità qui |