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- W2789442817 endingPage "428" @default.
- W2789442817 startingPage "407" @default.
- W2789442817 abstract "The world today is still relying mainly on fossil-based resources for the production of most economically important chemicals. To reduce the dependency on fossil resources, the development of a biorefinery using plant and microbial biomass has been given attention globally. In general, the plant and microbial biomasses are complex biomaterials that are complicated for utilization as biochemical producers. The use of biorefineries to produce biochemicals from biomass is a challenging task, specifically the development of a catalyst system that facilitates the conversion of complex materials into biomolecules. There are several kinds of catalysts and each has certain catalytic properties, with the combination of process coordination. Various physical, chemical, and biological methods are available for obtaining biomolecules; among them nanomaterials have gained much attention in biomass processing because they have shown excellent performance in a wide range of biomass conversion reactions. The fractionation of biomass using nanomaterials involves partial oxidation of biomass in the presence of charged molecules, resulting in the production of various macro- and micromolecules. Nanomaterial-mediated treatments are generally carried out in the presence of water at high temperature. The advantages of nanomaterials are that they are in a solid phase and can easily be recycled. The development of highly efficient nanomaterials is crucial for the cost-effectiveness of the production process." @default.
- W2789442817 created "2018-03-29" @default.
- W2789442817 creator A5066258412 @default.
- W2789442817 creator A5070535148 @default.
- W2789442817 date "2018-01-01" @default.
- W2789442817 modified "2023-10-04" @default.
- W2789442817 title "Nanoparticles and Organic Matter" @default.
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- W2789442817 doi "https://doi.org/10.1016/b978-0-12-811487-2.00018-9" @default.
- W2789442817 hasPublicationYear "2018" @default.