首页> 外国专利> Separate removal of sulphur cpds. and carbon di:oxide from gas - by desulphurisation catalytically then with doped activated charcoal and pressure swing adsorption to remove carbon di:oxide

Separate removal of sulphur cpds. and carbon di:oxide from gas - by desulphurisation catalytically then with doped activated charcoal and pressure swing adsorption to remove carbon di:oxide

机译:分别去除硫的cpds。和气体中的二氧化碳:通过催化脱硫,然后与掺杂的活性炭和变压吸附法去除二氧化碳:

摘要

Separate removal of S cpds. (I) and CO2 from gas comprises redn. of the S content to max. 3000, pref. max. 1500, esp. up to 1000 ppm catalytically and then to less than 10 mg/cu.m over doped activated charcoal (II); followed by removal of CO2 to a residual content less than 10(wt.)%, pref. between 0 and 5%, by pressure swing adsorption ( USE/ADVANTAGE - The process is used for purifying synthesis gas and (synthesis) gas contg. H2S (claimed). H2S and CO2 are removed without costly scrubbing stages, in which both are removed at the same time and must be sepd. selectively from the solvent. Since no solvent is used, there is no solvent emission. No gas stream is recycled in the desulphurisation stages, which increases the economy, and S is obtd. as prod. in both stages. The process is very flexible for gases of varying compsn..
机译:分别删除S cpds。 (I)和气体中的CO2变红。 S含量的最大值3000,首选最高1500,特别是催化活性炭最高可达1000 ppm,然后低于掺杂活性炭(II)的10 mg / cu.m;然后除去CO2,使其残留含量小于10(wt。)%,优选。通过变压吸附在0%到5%之间(使用/优势-该工艺用于纯化含H2S的合成气和(合成)气(要求保护)。无需昂贵的洗涤步骤即可除去H2S和CO2,在此过程中都将其除去同时,必须有选择地从溶剂中分离出来,因为不使用溶剂,所以没有溶剂排放,在脱硫阶段没有气流被再循环,这增加了经济性,并且S被废弃。这两个阶段对于不同组分的气体都非常灵活。

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