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Träfflista för sökning "WFRF:(Haldar Dibyajyoti) "

Search: WFRF:(Haldar Dibyajyoti)

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1.
  • Rani Singhania, Reeta, et al. (author)
  • Consolidated Bioprocessing of Lignocellulosic Biomass: Technological Advances and Challenges
  • 2022
  • In: Bioresource Technology. - : Elsevier. - 0960-8524 .- 1873-2976. ; 354
  • Journal article (peer-reviewed)abstract
    • Consolidated bioprocessing (CBP) is characterized by a single-step production of value-added compounds directly from biomass in a single vessel. This strategy has the capacity to revolutionize the whole biorefinery concept as it can significantly reduce the infrastructure input and use of chemicals for various processing steps which can make it economically and environmentally benign. Although the proof of concept has been firmly established in the past, commercialization has been limited due to the low conversion efficiency of the technology. Either a native single microbe, genetically modified microbe or a consortium can be employed. The major challenge in developing a cost-effective and feasible CBP process is the recognition of bifunctional catalysts combining the capability to use the substrates and transform them into value-added products with high efficiency. This article presents an in-depth analysis of the current developments in CBP around the globe and the possibilities of advancements in the future.
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2.
  • Singh, Anusuiya, et al. (author)
  • Production of bioethanol from food waste: Status and perspectives
  • 2022
  • In: Bioresource Technology. - : Elsevier. - 0960-8524 .- 1873-2976. ; 360
  • Journal article (peer-reviewed)abstract
    • There is an immediate global requirement for an ingenious strategy for food waste conversion to biofuels in order to replace fossil fuels with renewable resources. Food waste conversion to bioethanol could lead to a sustainable process having the dual advantage of resolving the issue of food waste disposal as well as meeting the energy requirements of the increasing population. Food waste is increasing at the rate of 1.3 billion tonnes per year, considered to be one-third of global food production. According to LCA studies discarding these wastes is detritus to the environment, therefore; it is beneficial to convert the food waste into bioethanol. The CO2 emission in this process offers zero impact on the environment as it is biogenic. Among several pretreatment strategies, hydrothermal pretreatment could be a better approach for pretreating food waste because it solubilizes organic solids, resulting in an increased recovery of fermentable sugars to produce bioenergy.
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