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首页> 外文期刊>Fuel >Hydrothermal liquefaction of Cyanidioschyzon merolae and Salicornia bigelovii Torr.: The interaction effect on product distribution and chemistry
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Hydrothermal liquefaction of Cyanidioschyzon merolae and Salicornia bigelovii Torr.: The interaction effect on product distribution and chemistry

机译:Cyanidioschyzon Merolae和Salicornia Bigelovii Torr的水热液化。:对产品分布和化学的相互作用

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Hydrothermal liquefaction (HTL) has proven to be a promising technology for processing wet biomass into valuable biofuel intermediates. We investigated the influence of HTL process parameters on the individual and co-liquefaction of Salicornia bigelovii Torr. (SL) and Cyanidioschyzon merolae (CM) biomass and their respective product properties and characteristics. SL and CM biomasses were subjected to HTL conditions of process temperatures (250-350 degrees C), 10 wt% solid loading, 30 min reaction time, and co-liquefaction ratios (80-20, 50-50, 20-80, CM-SL, respectively). The individual maximum HTL biocrude yields for CM (34.63 wt%) and SL (7.63 wt%) were obtained at 300 degrees C. In both cases, biocrude oils had a higher carbon and hydrogen content relative to those of the original biomass. The HHV (higher heating value) values for the biocrude samples ranged from 24.2 to 33.12 MJ/kg, which were significantly higher than those of the original biomasses. A positive synergistic effect was observed during the co-liquefaction of two biomasses, where the experimental yield of biocrude oil was higher than the theoretical value. During the co-liquefaction experiments, a maximum biocrude yield of 32.95 wt% was obtained at 300 degrees C and 80-20 CM-SL biomass mix ratio. Co-liquefaction led to an increase in the energy content of the co-liquefied biocrude oil and a higher energy recovery rate. The properties of HTL products and biomasses were determined with TGA, CHN elemental analyzer, GC/MS, bomb calorimeter, HACH Spectrophotometer, and ICP OES.
机译:水热液化(HTL)已被证明是加工湿生物质进入有价值的生物燃料中间体的有希望的技术。我们调查了HTL过程参数对Salicornia Bigelovii Torr的个体和互补的影响。 (SL)和Cyanidioschyzon Merolae(CM)生物质及其各自的产品性质和特性。对Sl和Cm生物量进行HTL条件的处理温度(250-350℃),10wt%固体负载,30分钟反应时间和碳化液化比(80-20,50-50,20-80,cm -SL分别)。在300摄氏度下,在300℃下获得Cm(34.63wt%)和S1(7.63wt%)的个体最大HTL生物屈服率。在这两种情况下,生物化油相对于原始生物质的碳和氢含量较高。生物化样品的HHV(更高的加热值)值范围为24.2至33.12mJ / kg,其显着高于原始生物量的MJ / kg。在两种生物量的互补期间观察到阳性协同效应,其中生物油的实验产量高于理论值。在共液化实验期间,在300℃和80-20cm-SL生物质混合物比例下获得32.95wt%的最大生物屈服。共液化导致共液化的生物油的能量含量增加和更高的能量回收率。用TGA,CHN元素分析仪,GC / MS,炸弹量热计,HACH分光光度计和ICP OES测定HTL产品和生物质的性质。

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