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- 01GMD2ZMGK236WD8MXZSGSF87V classification A1.
- 01GMD2ZMGK236WD8MXZSGSF87V date "2022".
- 01GMD2ZMGK236WD8MXZSGSF87V language "eng".
- 01GMD2ZMGK236WD8MXZSGSF87V type journalArticle.
- 01GMD2ZMGK236WD8MXZSGSF87V hasPart 01GQ58D5QR6EEKHBVK4F4NV4GP.pdf.
- 01GMD2ZMGK236WD8MXZSGSF87V subject "Chemistry".
- 01GMD2ZMGK236WD8MXZSGSF87V doi "10.1039/d1gc03436g".
- 01GMD2ZMGK236WD8MXZSGSF87V issn "1463-9262".
- 01GMD2ZMGK236WD8MXZSGSF87V issn "1463-9270".
- 01GMD2ZMGK236WD8MXZSGSF87V issue "7".
- 01GMD2ZMGK236WD8MXZSGSF87V volume "24".
- 01GMD2ZMGK236WD8MXZSGSF87V abstract "An overview of plasma technology for the electrified and sustainable conversion of lignocellulosic biomass.".
- 01GMD2ZMGK236WD8MXZSGSF87V abstract "Lignocellulosic biomass conversion to renewable, carbon-neutral materials, fuels, and chemicals is the cornerstone of the transition to a sustainable future bioeconomy. Green energy in the form of electricity needs to be coupled with or substitute conventional thermally driven processes to realize small-scale, economically viable and environmentally friendly biorefineries. Gas discharge plasmas enable the conversion of renewable electric energy, supplied in the form of an electric field, to chemical energy through the formation of a highly reactive environment that can induce several transformations related to agricultural waste valorization processes. Herein, we review the application of plasma technology to lignocellulosic biomass upgrade, aiming to provide the scientific background and technical challenges in this rapidly emerging research field. To bridge the gap between plasma science and biomass valorization technologies, we initially present the technical aspects of plasma reactors related to biomass processing and further discuss the advances in plasma processing for each biomass conversion technology, providing insights into the related plasma chemistry and interaction mechanisms. We first focus on the low and medium-temperature biomass conversion processes, including biomass pretreatment and delignification to promote enzyme or acid-catalyzed hydrolysis to sugars and biomass liquefaction using plasma electrolysis. Then we discuss the high and very high-temperature conversion processes, such as plasma-assisted pyrolysis and gasification to syngas and plasma application to tar removal, combustion, and vitrification. Overall, this review provides knowledge at the interface of plasma science and biomass conversion technology to promote the interaction between the individual communities, which is crucial for the further advancement of the field.".
- 01GMD2ZMGK236WD8MXZSGSF87V author 3b2e513f-e0d5-11ea-822d-9ec7889062f3.
- 01GMD2ZMGK236WD8MXZSGSF87V author 83442B6E-B25E-11E6-B104-2D2FD0AF0289.
- 01GMD2ZMGK236WD8MXZSGSF87V author urn:uuid:6ba008ed-54cb-4636-a8fb-2b2a45527838.
- 01GMD2ZMGK236WD8MXZSGSF87V author urn:uuid:bd73bbcc-2f63-4270-a859-bd4955b2881a.
- 01GMD2ZMGK236WD8MXZSGSF87V dateCreated "2022-12-16T09:06:59Z".
- 01GMD2ZMGK236WD8MXZSGSF87V dateModified "2024-10-29T08:51:04Z".
- 01GMD2ZMGK236WD8MXZSGSF87V name "Plasma technology for lignocellulosic biomass conversion toward an electrified biorefinery".
- 01GMD2ZMGK236WD8MXZSGSF87V pagination urn:uuid:cda475a2-2974-4b91-9f48-0c26dd45568b.
- 01GMD2ZMGK236WD8MXZSGSF87V sameAs LU-01GMD2ZMGK236WD8MXZSGSF87V.
- 01GMD2ZMGK236WD8MXZSGSF87V sourceOrganization urn:uuid:c10c31b9-b618-41c7-bd5b-11a1316f1f9c.
- 01GMD2ZMGK236WD8MXZSGSF87V type A1.