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Titlebook: Biofuels; Technology, Challeng Avinash Kumar Agarwal,Rashmi Avinash Agarwal,Bhola Book 2017 Springer Nature Singapore Pte Ltd. 2017 Biodies

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Avinash Kumar Agarwal,Rashmi Avinash Agarwal,BholaDetails bio-refinery approach of biofuel production.Covers various applications of biofuels.Outlines the challenges faced by biofuels with respect to commercialization.Includes supplementary material:
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Hans Philipsen,Myrra Vernooij-Dassenon was ~0.5 BTOE in 2008, which is expected to rise up to ~1.2 BTOE by 2035. In such a scenario, biofuel utilization program seems to be a promising solution because biofuels are relatively cleaner and can be produced from indigenous resources available locally. However availability and continuous s
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7 Conversatieanalyse: orde in de details,nd energy fuel precursors (drop-in-fuel) synthesis. The most common technique for biomass fragmentation is catalytic hydrolysis using various acid catalysts covering inorganic or organic liquid acids as well as solid acids (heterogeneous). Most research in the past decade has been focused on cost-ef
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7 Conversatieanalyse: orde in de details,ved into a sustainable and eco-friendly solutions owing to their diverse applications like microbial fuel cell (MFC), for power generation, bioelectrochemical treatment (BET) for wastewater remeduiation, microbial desalination cell (MDC) for salt removal and resource recovery, microbial electrolysis
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Een goede basis voor toetsing en inspectieng hydrothermal liquefaction (HTL) is presented. Thermal and catalytic HTL of cellulose and lignin was performed at 280 °C under biomass:H.O ratio of 1:6 at 15 min residence time. The use of alkaline catalysts significantly increased both bio-oil yield and conversion for cellulose as well as lignin.
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