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- W98285552 abstract "The selective adsorption properties of a Pennsylvania anthracite, having a particle diameter of 6..mu.., have been investigated before and after the anthracite has been subjected to various process conditions, namely temperature and amount of carbon burn-off. The adsorption capacity of the raw anthracite was markedly different for different molecular size hydrocarbons, indicating a molecular sieve type structure in the anthracite. The activation of the anthracite in a fixed bed apparatus using carbon dioxide increased the adsorption capacity of the anthracite and the diffusion rates of the hydrocarbons into the anthracite. The activated anthracite appears to have definite commercial possibilities as a selective adsorbent. Unlike Linde ''molecular sieves'', anthracite does not have a unique pore size but a distribution of pore sizes. Therefore, the selective adsorption effect of anthracite is not as good as Linde ''molecular sieves''. However, because of the low cost of anthracite, the simple process conditions, and the large adsorption capacity, anthracite should be an important source-material for a selective adsorbent. One very promising use of the activated anthracite would be to employ it in conjunction with a Linde ''molecular sieve'' trimmer column. This would entail using the activated anthracite r a ''rough separation'' and the Linde ''lmolecularmore » sieve'' for the final separation. This should prove to be a much more economical method than just using Linde ''molecular sieves''.« less" @default.
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- W98285552 date "1962-11-16" @default.
- W98285552 modified "2023-09-27" @default.
- W98285552 title "Molecular sieve material from anthracite" @default.
- W98285552 hasPublicationYear "1962" @default.
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