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Titlebook: Bio-valorization of Waste; Trends and Perspecti Shachi Shah,V. Venkatramanan,Ram Prasad Book 2021 The Editor(s) (if applicable) and The Aut

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Transforming the Lignocellulosic Biomass into High Value-Added Bioproducts,ically viable biorefineries. Chemical, physical, physical-chemical, biological, or enzymatic conversion can be used as strategies to produce important bioproducts as carbohydrates, bioactive compounds, and lignin derivatives. Carbohydrates as xylose and glucose can be used for food, chemical blocks,
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Microbial Mediated Valorization of Lignocellulose: A Green Technology for Bioethanol Production, alternative option of exhaustible petroleum or other sources. The organic parts of agricultural wastes, forest residues, food wastes, and municipal and industrial wastes contain an unlimited source of lignocellulosic biomass which could potentially be used for generating second-generation biofuels
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Valorization of Agri-Food Wastes,mprove food security and also reduce hunger. It should be noted that several global organizations have estimated that food wastes could reach 126 million tons by 2020. Normally, agricultural wastes have been used as animal feeds and fertilizers. Nonetheless, most agricultural wastes have macro- and
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Bacterial Cellulose Production from Agro-Industrial and Food Wastes,us industries, e.g. in paper production, in wound healing, in food packaging and many more. In commercial scale, . is the common species used. Large-scale production of bacterial cellulose, however, is costly with defined chemical medium, i.e. Hestrin and Schramm (HS) medium. Thus, most researchers
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Transformation Process of Agricultural Waste to Chemical Production via Solid-State Fermentation,lantation. In every palm oil production, the biomass produced was fourfold greater than the palm oil produced. In 2020, the wastes produced reached up to 39 million tons. The wastes comprise of the empty fruit bunches (EFB), palm kernel shell (PKS), mesocarp fiber (MF), palm oil mill effluent (POME)
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Agricultural Waste Valorization: An Energy Production Perspective,us agricultural waste. The agricultural waste is rich in lignocellulose, which can be converted into various forms of energy like ethanol, methane, hydrogen, etc. by adopting different technologies. Therefore, the available surplus agricultural residues can be utilized for sustainable energy product
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