TITLE: WHEAT BIOREFINERY SYSTEM - ok 2025

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The four main technological processes involved in biorefineries include biochemical, thermochemical, mechanical/physical, and chemical processes (Cherubini, 2010). In general, biorefineries are grouped as biochemical or thermochemical platforms (Table 2).
Biorefineries are processing facilities that convert biomass into value-added products such as biofuels, biochemicals, bioenergy/biopower, and other biomaterials. Various types of biorefineries have been presented in the literature.
Biorefineries combine the necessary technologies between biological raw materials and industrial intermediates and final products. The principal goal in the development of biorefineries is defined by the following: (biomass) feedstock-mix + process-mix -- product-mix.
Second-generation biorefinery refers to the production of different types of biofuels, biomaterials, and biochemicals by using agri-based and other lignocellulosic biomasses as substrates, which do not compete with arable lands, water for irrigation, and food supply.
Abstract. Biorefinery involves integrated systems or routes/pathways for converting biomass into different targeted valuable products such as energy, fuels, and chemicals by various physical, chemical, thermochemical, and biochemical technologies.
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At its core, the biorefinery concept revolves around the synergy of biochemical and thermochemical processes (Bauer et al., 2018). It combines technologies such as fermentation, pyrolysis, and chemical conversion to unlock the latent potential of biomass.

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