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Titlebook: Biomass and Bioenergy; Processing and Prope Khalid Rehman Hakeem,Mohammad Jawaid,Umer Rashid Book 2014 Springer International Publishing Sw

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https://doi.org/10.1007/978-3-322-81027-4hetic ability to present itself as an alternative energy source. Different species of algae, being environmental friendly, are strong candidates for generation of biomass, and are used in production of biogas and biofuel. Continuous efforts are being made to increase its large-scale production by ap
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Kai-Uwe Hellmann,Dominik Schrageposites. This interest comes from the combination of several advantages of natural fibers such as low cost, low density, non-toxicity, high specific properties, no abrasion during processing, and the possibility of recycling. The lack of compatibility between hydrophilic fibers and hydrophobic polym
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https://doi.org/10.1007/978-3-322-81027-46.10 %), hemicelluloses (18.40–28.90 %), lignin (25.80–40.70 %), ashes (2.10–11.70 %), and extractives (5.30–11.50 %). Sugarcane straw availability depends on the sugarcane variety and age of harvesting. It can be used for alternative energy production and improvement of soil properties such as soil
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https://doi.org/10.1007/978-3-322-81027-4. L. as an alternate energy biosystem. ., an underutilized, robust energy plant belonging to family Euphorbiaceae has ability to grow in wastelands and semi-arid areas with low nutrient requirements and produces wood, fruit shells, seed husks, seed oil, and press-cake which are potential sources of
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Die Konsumenten und die Werbungadicate air and water pollutants via bio-extraction. Augmentation of lipid contents through metabolic pathway engineering and growth conditions optimization along with the efficient harvesting and processing technologies are leading goals of today’s microalgae research. Although microalgae have huge
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