首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancement of biofuels production by means of co-pyrolysis of Posidonia oceanica (L.) and frying oil wastes: Experimental study and process modeling
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Enhancement of biofuels production by means of co-pyrolysis of Posidonia oceanica (L.) and frying oil wastes: Experimental study and process modeling

机译:通过海洋热波塞冬(Posidonia oceanica,L.)和煎炸油废料的共热解提高生物燃料生产:实验研究和过程建模

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Energy recovery from lignocellulosic solid marine wastes, Posidonia oceanica wastes (POW) with slow pyrolysis responds to the growing trend of alternative energies as well as waste management. Physicochemical, thermogravimetric (TG/DTG) and spectroscopic (FTIR) characterizations of POW were performed. POW were first converted by pyrolysis at different temperatures (450 degrees C, 500 degrees C, 550 degrees C and 600 degrees C) using a fixed-bed reactor. The obtained products (bio-oil, syngas and bio char) were analyzed. Since the bio-oil yield obtained from POW pyrolysis is low (2 wt.%), waste frying oil (WFO) was added as a co-substrate in order to improve of biofuels production. The co-pyrolysis gave a better yield of liquid organic fraction (37 wt.%) as well as syngas (CH4, H-2...) with a calorific value around 20 MJ/kg. The stoichiometric models of both pyrolysis and co-pyrolysis reactions were performed according to the biomass formula: C alpha H beta O gamma N delta S epsilon. The thermal kinetic decomposition of solids was validated through linearized Arrhenius model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:从木质纤维素固体海洋废物,热解缓慢的波西多尼亚海洋废物(POW)中回收能量,对替代能源以及废物管理的增长趋势做出了回应。进行了POW的物理化学,热重(TG / DTG)和光谱(FTIR)表征。首先使用固定床反应器在不同温度(450摄氏度,500摄氏度,550摄氏度和600摄氏度)下通过热解将POW转化。分析了获得的产物(生物油,合成气和生物炭)。由于从POW热解获得的生物油产率低(2重量%),因此添加废煎炸油(WFO)作为共底物以改善生物燃料的生产。共热解产生更好的液态有机部分(37 wt。%)以及合成气(CH4,H-2 ...),其发热量约为20 MJ / kg。热解和共热解反应的化学计量模型是根据生物量公式:C alpha H beta OγN delta S epsilon进行的。通过线性化的阿伦尼乌斯模型验证了固体的热动力学分解。 (C)2016 Elsevier Ltd.保留所有权利。

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