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Corrosion and Chemical Characterization of Bio-Oils from Biomass with Varying Ash and Moisture Contents

机译:不同灰分和水分含量的生物质生物油的腐蚀和化学特性

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As part of the Feedstock Conversion Interface Consortium four samples of pine chips (all combinations of low and high moisture and ash content) were collected and processed for fast pyrolysis. The prepared biomass samples were liquefied at the National Renewable Energy Laboratory (NREL) using the fast pyrolysis process. Following some characterization of the bio-oils at NREL, the bio-oils were shipped to Oak Ridge National Laboratory (ORNL) for corrosion testing and further characterization. The content and composition of ash in each bio-oil was determined. Corrosion testing consisted of exposing selected metallic and elastomer samples for 1000 hr at 50°C and for longer times at room temperature as well as electrochemical impedance spectroscopy measurements to assess relative corrosivity of the bio-oils. Chemical characterization was conducted to identify the corrosive component of the bio-oils as well as to define the chemical differences among the oils. It was hypothesized that there could be a catalytic effect from the higher ash content in two of the biomass sources. Results of these characterization and corrosion studies will be reported.
机译:作为原料转化接口联盟的一部分,收集并处理了四个松树切片样品(所有低水分和灰分含量的组合),用于快速热解。制备的生物质样品在国家可再生能源实验室(NREL)使用快速热解过程进行液化。在NREL对生物油进行了一些表征之后,这些生物油被运往橡树岭国家实验室(ORNL)进行腐蚀测试和进一步表征。测定了每种生物油中灰分的含量和组成。腐蚀测试包括将选定的金属和弹性体样品在50°C下暴露1000小时,在室温下暴露更长时间,以及电化学阻抗谱测量,以评估生物油的相对腐蚀性。进行化学表征以确定生物油的腐蚀性成分,并确定油之间的化学差异。据推测,两种生物质源中较高的灰分含量可能会产生催化效应。将报告这些表征和腐蚀研究的结果。

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