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首页> 外文期刊>International journal of hydrogen energy >Evaluation of catalytic subcritical water gasification of food waste for hydrogen production: Effect of process conditions and different types of catalyst loading
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Evaluation of catalytic subcritical water gasification of food waste for hydrogen production: Effect of process conditions and different types of catalyst loading

机译:食品废物催化亚临界水气化制氢的评估:工艺条件和不同催化剂负载量的影响

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Food waste is a kind of wet bio-waste which has been a challenge for the ecological environment and disposal. In this paper, hydrogen production from subcritical water gasification (SbWG) of food waste with and without catalyst loading was systematically investigated. The effects of reaction temperature (300-360 degrees C), residence time (30-90 min), food waste concentration (10-30 wt%) and catalysts (Ni/gamma-Al2O3, Ni/ZrO2, NaOH, KOH, and FeCl3) were studied within a pressure range of 10.5-20 MPa. The optimal process condition for SbWG of food waste without catalysts loading was determined to be 360 degrees C and 90 min with 10 wt% food waste. The liquid products and hydrochar were characterized by TOC, TGA/DTG, and SEM. The TOC concentration of liquid products decreased vastly with increasing reaction temperature. The highest H-2 yield (1.88 mol/kg), H-2 mole fraction (35.01%), and H-2 selectivity (53.86%) were achieved at 360 degrees C for 90 min with 5 wt% loading of KOH. It can be concluded that the performance of the catalysts for improving hydrogen production in SbWG of food waste was in the following order: KOH > NaOH > Ni/gamma-Al2O3 > Ni/ZrO2 > FeCl3. The catalytic SbWG can be a potential alternative for energy conversion of food waste and hydrogen production. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:餐厨垃圾是一种湿生物垃圾,已经对生态环境和处置提出了挑战。在本文中,系统地研究了有载和无载催化剂下食物垃圾的亚临界水气化(SbWG)制氢。反应温度(300-360摄氏度),停留时间(30-90分钟),食物残渣浓度(10-30 wt%)和催化剂(Ni /γ-Al2O3,Ni / ZrO2,NaOH,KOH和在10.5-20 MPa的压力范围内对FeCl3进行了研究。在不添加催化剂的情况下,SbWG餐厨垃圾的最佳工艺条件确定为360摄氏度和90分钟(餐厨垃圾占10 wt%)。通过TOC,TGA / DTG和SEM对液体产物和水焦进行了表征。液体产物的总有机碳浓度随反应温度的升高而大大降低。在360摄氏度,90%的KOH负载下,H-2的最高H-2收率(1.88 mol / kg),H-2摩尔分数(35.01%)和H-2选择性(53.86%)达到了。可以得出结论,用于改善食物垃圾的SbWG中产氢的催化剂的性能依次为:KOH> NaOH> Ni /γ-Al2O3> Ni / ZrO2> FeCl3。催化性SbWG可以作为食物垃圾能量转化和制氢的潜在替代品。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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