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Effect of operating conditions on the sorption enhanced steam reforming of blends of acetic acid and acetone as bio-oil model compounds

机译:操作条件对作为生物油模型化合物的乙酸和丙酮混合物的吸附增强蒸汽重整的影响

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摘要

Hydrogen production by sorption enhanced steam reforming (SESR) of bio-oil model compounds was thermodynamically and experimentally studied by mixing acetic acid (AcH) and acetone (AcCO), in a fluidized bed reactor. In the SESR process the catalytic reforming reaction and CO2 removal by sorption were carried out simultaneously in a single reactor. The SESR of the model compounds and their blends was performed under atmospheric pressure over a Pd/Ni–Co hydrotalcite-like material (HT) catalyst using dolomite as CO2 sorbent. The effects of the reaction temperature (475–725 °C), steam/C molar ratio and weight hourly space velocity (WHSV) were studied. For the SESR of acetic acid, acetone and their blends it was observed that the H2 yield and H2 concentration increase as the temperature increases, reaching a maximum value, and then they decrease with the temperature. It was also found that the CH4 concentration decreases as the temperature increases, while the CO and CO2 concentrations increase with the rise in temperature. High steam/C molar ratio values and low WHSV values favor the H2 yield and H2 concentration, while they lead to a decrease in the CH4 concentration. Hydrogen purities as high as 99.2–99.4% with small amounts of methane, CO and CO2 were obtained for the SESR of the model compounds of bio-oil and their blends at a temperature of 575 °C at atmospheric pressure. The effect of temperature on the SESR of the blends of model compounds of bio-oil is similar to that of the individual model compounds studied, except in the fact that lower H2 yield values are obtained by the SESR of the blends (83.3–88.6%) compared to the individual model compounds (90.2–95.9%), a decrease which becomes more noticeable as the proportion of acetone in the blend is increased.
机译:通过在流化床反应器中混合乙酸(AcH)和丙酮(AcCO),对生物油模型化合物的吸附增强蒸汽重整(SESR)制氢进行了热力学和实验研究。在SESR工艺中,催化重整反应和通过吸附去除二氧化碳的过程在单个反应器中同时进行。在大气压下,使用白云石作为CO2吸附剂,在Pd / Ni-Co类水滑石材料(HT)催化剂上进行模型化合物及其混合物的SESR。研究了反应温度(475–725°C),蒸汽/ C摩尔比和重时空速(WHSV)的影响。对于乙酸,丙酮及其混合物的SESR,观察到H2收率和H2浓度随温度升高而增加,达到最大值,然后随温度降低。还发现CH4浓度随温度升高而降低,而CO和CO2浓度随温度升高而升高。高的蒸汽/ C摩尔比值和低的WHSV值有利于H2收率和H2浓度,而它们却导致CH4浓度降低。在575°C的大气压下,对于生物油及其混合物的模型化合物的SESR,获得的氢气纯度高达99.2–99.4%,并带有少量的甲烷,CO和CO2。温度对生物油模型化合物掺合物的SESR的影响与所研究的单个模型化合物相似,不同之处在于,通过掺混物的SESR获得较低的H2收率值(83.3–88.6%) )与单独的模型化合物(90.2–95.9%)相比,随着丙酮在共混物中比例的增加,这种降低变得更加明显。

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