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HYDROGEN PRODUCTION USING AUTOTHERMAL REFORMING OF BIODIESEL AND OTHER HYDROCARBONS FOR FUEL CELL APPLICATIONS

机译:利用自热改性生物柴油和其他烃用于燃料电池应用的氢气产生

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The department of Chemical Engineering of the University of Puerto Rico (UPRM) in collaboration with Argonne National Laboratory (ANL) works in the development of a reforming catalyst characterization program. The purpose of this research is to study the viability of using new catalysts to convert Biodiesel, Glycerin and Methanol to a hydrogen rich product gas and compare their production potential, identify the conditions for the accumulation of coke and determine the influence of reactor temperature and water to carbon and oxygen to carbon ratios. A Basket Stirred Tank Reactor (BSTR), Plug Flow Reactor (PFR), Gas Chromatography Mass Spectrophotometer (GCMS) and Gas Chromatography Thermal Conductivity Detector (GCTCD), and Pt and Rh-based catalysts synthesized at ANL were used. During the preliminary ATR experiments, methanol, glycerol and biodiesel showed an increase in H{sub}2 production with decreasing O2/C ratio and increases in the reactor temperature. Additionally, Scanning Electron Microscopy (SEM) and EDAX analysis has been performed in some of the catalysts samples. All biodiesel and glycerol experiments performed had shown coke formation. Future research will include, experiments with bio-ethanol and methane as fuel using a Ni-based catalyst synthesized at ANL.
机译:波多黎各大学化学工程系与阿贡国家实验室(ANL)合作,在制定改革催化剂特征方案方面的作用。本研究的目的是研究使用新催化剂将生物柴油,甘油和甲醇转化为富含氢产物气体的活力,并比较它们的生产潜力,确定焦炭积聚的条件,并确定反应器温度和水的影响碳和氧气对碳比。使用篮子搅拌釜反应器(BSTR),塞流反应器(PFR),气相色谱质谱仪(GCMS)和气相色谱热导探测器(GCTCD),以及在AN1上合成的基于PT和RH基催化剂。在初步ATR实验期间,甲醇,甘油和生物柴油显示出H {亚} 2的增加,随着O 2 / C的比例降低并增加反应器温度。另外,已经在一些催化剂样品中进行了扫描电子显微镜(SEM)和edax分析。进行的所有生物柴油和甘油实验表明焦炭形成。未来的研究将包括使用在AN1上合成的Ni的催化剂用生物乙醇和甲烷的生物乙醇和甲烷进行实验。

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