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首页> 外文期刊>Biomass Conversion and Biorefinery >Influence of ethylene on the formation of mixed alcohols over a MoS_2 catalyst using biomass-derived synthesis gas
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Influence of ethylene on the formation of mixed alcohols over a MoS_2 catalyst using biomass-derived synthesis gas

机译:乙烯对生物质衍生的合成气在MoS_2催化剂上混合醇形成的影响

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摘要

Since 2011, a pilot plant for the production of mixed alcohols (MAs) from biomass-derived synthesis gas has been in operation. The pilot plant uses synthesis gas provided by a biomass-based combined heat and power plant (CHP) in Güssing, in which the fixed bed reactor is filled with a sulfidized molybdenum catalyst (MoS_2). The advantage of a sulfidized catalyst is resistance to sulfur components. Sulfur resistance significantly lowers the operating costs of such a plant. The main parts of the mixed alcohol synthesis plant in Güssing are a steam reforming unit, a glycol scrubber, a compression step, a fixed bed reactor for the synthesis itself, a condensation vessel for the separation of alcohols from the gas stream, and an expansion valve. The main aim of this project in the last year was to perform parameter variation to investigate the optimal operation point of the plant and to use these parameters to conduct long-time trials over several days. Parameter variation showed the impact of reaction temperature, pressure, and space velocity on product yield and distribution. The influence of the gas composition on the product distribution and side products was also investigated. This study was dedicated to investigating the influence of the ethylene content in the synthesis gas on the formation of propanol and ethyl mercaptan (C_2H_6S). During the experiments, several liters of MAs were produced. The alcohols consisted mainly of alcohols from carbon numbers between one and three. One of the main results of the first experiments was that the ethylene content in the synthesis gas has a high impact on the product distribution and is also responsible for side reactions to sulfur components.
机译:自2011年以来,用于从生物质衍生的合成气生产混合醇(MA)的中试工厂已经投入运营。该中试装置使用由位于古辛的基于生物质的热电联产装置(CHP)提供的合成气,其中固定床反应器装有硫化钼催化剂(MoS_2)。硫化催化剂的优点是耐硫组分。耐硫性显着降低了这种工厂的运营成本。 Güssing混合醇合成厂的主要部件是蒸汽重整装置,乙二醇洗涤塔,压缩步骤,用于合成本身的固定床反应器,用于从气流中分离出醇的冷凝容器和膨胀装置。阀。去年,该项目的主要目的是执行参数更改以调查工厂的最佳运行点,并使用这些参数进行几天的长时间试验。参数变化表明反应温度,压力和空速对产物收率和分布的影响。还研究了气体组成对产物分布和副产物的影响。这项研究致力于研究合成气中乙烯含量对丙醇和乙基硫醇(C_2H_6S)形成的影响。在实验过程中,产生了几升的MA。所述醇主要由碳数为1-3的醇组成。第一个实验的主要结果之一是合成气中的乙烯含量对产物分布有很大影响,并且还导致与硫组分的副反应。

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