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首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Production of an upgraded bio-oil with minimal water content by catalytic pyrolysis: Optimisation and comparison of CaO and MgO performances
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Production of an upgraded bio-oil with minimal water content by catalytic pyrolysis: Optimisation and comparison of CaO and MgO performances

机译:通过催化热解生产具有最低含水量的升级版生物油:CaO和MgO性能的优化和比较

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摘要

Pyrolysis of forest residues using CaO and MgO catalysts was carried out in an induction heating reactor, to produce an upgraded bio-oil with increased higher heating value (HHV). Optimisation with central composite design (CCD) included temperature (444 - 656 degrees C) and catalyst concentration (1.7-58.3 wt.%). A fractional condensation system with the first condenser heated to 40 degrees C was used to collect an organic-rich oil. The optimum HHV of the oil was 26.9 MJ/kg (560.0 degrees C and 33.8 wt.% catalyst) at 19.4 wt.% yield with MgO and 26.4 MJ/kg (550.0 degrees C and 30.0 wt.% catalyst) at 18.9 wt.% yield with CaO (based on a desirability function used to obtain significant oil yield). The combination of water-gas shift reaction (WGSR) catalysed by CaO and the fractional condensation system resulted in water content of the oil at the optimum of only 7.8 wt.%. Absorption of CO2 by CaO, together with significant H-2 production (400 % increase compared to non-catalytic case) allowed the production of a gas calorific value of 13.7 MJ/kg compared to 5.2 MJ/kg without catalyst.
机译:在感应加热反应器中,使用CaO和MgO催化剂对森林残留物进行热解,以生产出具有更高热值(HHV)的改良生物油。中央复合设计(CCD)的优化包括温度(444-656摄氏度)和催化剂浓度(1.7-58.3 wt。%)。将第一冷凝器加热至40摄氏度的分馏冷凝系统用于收集富含有机物的油。该油的最佳HHV为26.9 MJ / kg(560.0摄氏度和33.8重量%催化剂),MgO的收率为19.4%(重量),而26.4 MJ / kg(550.0摄氏度和30.0重量%的催化剂)(18.9重量%)。 CaO的%收率(基于用于获得显着油收率的期望函数)。 CaO催化的水煤气变换反应(WGSR)与分馏缩合系统的结合,使油中的水含量最佳仅为7.8 wt。%。 CaO吸收CO2以及显着的H-2产生(与非催化情况相比增加了400%),产生的气体发热量为13.7 MJ / kg,而无催化剂时为5.2 MJ / kg。

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