首页> 外国专利> A process for cobvertir Carbonaceous material in water containing synthesis gas in slurry have a relation to Hydrogen to carbon monoxide in the desired synthesis gas and a process for converting Biomass, Municipal Waste, Wood, Coal, or a natural or Synthetic Polymer in water Q

A process for cobvertir Carbonaceous material in water containing synthesis gas in slurry have a relation to Hydrogen to carbon monoxide in the desired synthesis gas and a process for converting Biomass, Municipal Waste, Wood, Coal, or a natural or Synthetic Polymer in water Q

机译:浆液中含合成气的水中的含碳物质的工艺与所需合成气中的氢转化为一氧化碳有关,而将水中的生物质,市政废物,木材,煤炭或天然或合成聚合物转化为Q

摘要

A method for controlling the composition of the synthesis gas comes from a steam methane reformer (SMR), who obtains its raw material as a natural gas directly from a steam hydration reactor (SHR). This method allows controlling the H2 / CO relationship and adjusting the hydrogen supply and water content in raw materials.This is a steam water reactor that provides Elmer. The gas rich in methane and steam in the steam hydrogenation furnace is produced by hydrogenation of a pile of carbon and water slurry. The mass percentage of product flow in each processing stage is calculated using the model program.Just like the balance process of Aspen plusm As the parameters of the water water relationship and the hydrogen carbon relationship change, we can conduct a sensitivity analysis so that we can determine the optimal composition from dairy feedstock to gasified hydrogen reactor, so as to obtain the required methane reformer and Steam. De Esther(e) The hydrogen supply and water content of raw materials in the steam hydrogenation reactor (SHR) provided by the methane steam reformer (SMR) can be adjusted to determine the co production of methane reformer and steam.
机译:一种控制合成气成分的方法来自蒸汽甲烷重整器(SMR),后者直接从蒸汽水合反应器(SHR)获得其原料,即天然气。这种方法可以控制H2 / CO关系并调节原料中的氢供应和水含量。这是提供Elmer的蒸汽水反应器。蒸汽加氢炉中富含甲烷和蒸汽的气体是通过一堆碳和水浆的氢化而产生的。使用模型程序计算每个处理阶段产品流量的质量百分比。就像Aspen plusm的平衡过程一样,由于水水关系和氢碳关系的参数发生变化,我们可以进行敏感性分析,以便我们可以确定从乳制品原料到气化氢反应器的最佳组成,从而获得所需的甲烷重整器和蒸汽。 De Esther(e)可以调整由甲烷蒸汽重整器(SMR)提供的蒸汽加氢反应器(SHR)中原料的氢供应和水含量,以确定甲烷重整器和蒸汽的联产。

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