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Catalytic effect of ultrananocrystalline Fe3O4 on algal bio-crude production via HTL process

机译:催化效果ultrananocrystalline Fe3O4通过HTL藻bio-crude生产过程

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摘要

We report a comprehensive quantitative study of the production of refined bio-crudes via a controlled hydrothermal liquefaction (HTL) process using Ulva fasciata macroalgae (UFMA) as biomass and ultrananocrystalline Fe3O4 (UNCFO) as catalyst. X-ray diffraction and electron microscopy were applied to elucidate the formation of the high-quality nanocatalysts. Gas chromatographymass spectroscopy (GC-MS) and CHNS analyses showed that the bio-crude yield and carbon/oxygen ratios increase as the amount of UNCFO increases, reaching a peak value of 32% at 1.25 wt% (a 9% increase when compared to the catalyst-free yield). The biocrude is mainly composed of fatty acids, alcohols, ketones, phenol and benzene derivatives, and hydrocarbons. Their relative abundance changes as a function of catalyst concentration. FTIR spectroscopy and vibrating sample magnetometry revealed that the asproduced bio-crudes are free of iron species, which accumulate in the generated bio-chars. Our findings also indicate that the energy recovery values via the HTL process are sensitive to the catalyst loading, with a threshold loading of 1.25 wt%. GC-MS studies show that the UNCFO not only influences the chemical nature of the resulting bio-crudes and bio-chars, but also the amount of fixed carbons in the solid residues. The detailed molecular characterization of the bio-crudes and bio-chars catalyzed by UNCFO represents the first systematic study reported using UFMA. This study brings forth new avenues to advance the highly-pure bio-crude production employing active, heterogeneous catalyst materials that are recoverable and recyclable for continuous thermochemical reactions.
机译:我们报告一个全面的量化研究生产的精制bio-crudes通过控制水热液化(HTL)过程使用石莼fasciata macroalgae (UFMA)生物量和ultrananocrystalline Fe3O4 (UNCFO)催化剂。显微镜是用来阐明优质nanocatalysts的形成。chromatographymass光谱法(gc - ms)和中文分析表明,bio-crude产量和碳/氧比例增加的数量UNCFO增加,达到32%的峰值1.25 wt %(相比增加了9%catalyst-free收益率)。由脂肪酸、醇、酮、苯酚和苯衍生物,碳氢化合物。他们的相对丰度变化的函数催化剂浓度。振动样品磁力测定显示asproduced bio-crudes铁物种都是免费的,在生成的bio-chars积累。结果也表明,能量回收通过HTL过程敏感值催化剂加载,加载一个阈值1.25 wt %。只影响的化学性质bio-crudes和bio-chars,但也固定碳的固体残留物。详细的分子特征bio-crudes UNCFO bio-chars催化代表第一个系统研究报道使用UFMA。推动高纯bio-crude生产积极运用,非均相催化剂可回收和可回收的材料连续热化学反应。

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