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- W2021107019 abstract "Abstract The oil and gas industry has long sought ways of converting difficult to transport natural gas into easily transported liquids, especially from remote locations where local opportunities to market natural gas are limited. In recent years, interest in Gas To Liquids (GTL) has expanded beyond such stranded gas because of a widening spread between the market value of natural gas and hydrocarbon liquids even in locations with mature natural gas markets such as the USA. The Fischer Tropsch (FT) process is a well-known and established method of producing hydrocarbon liquids from natural gas; for some, it has become synonymous with GTL. This paper points out that commercial and near commercial alternatives to the FT process exist and may be commercially superior in somesettings. The focus is on technologies that have been successfully piloted. Available alternatives to FT are primarily natural gas to methanol and methanol derivatives. Methanol synthesis is one of the most mature industrial processes and methanol annual production volume ranks among the top three products in the petrochemical industry. Traditionally, methanol has been primarily a precursor to formaldehyde and acetic acid. In recent years, methanol has achieved added importance as an precursor to olefins and motor fuels, including direct blending into the gasoline pool, and also as a precursor to many motor fuel products such as gasoline and MTBE, a gasoline additive still very important outside the U.S., and DME, a diesel fuel substitute. Natural gas to ethanol, ammonia, and ammonia derivatives will also be considered." @default.
- W2021107019 created "2016-06-24" @default.
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- W2021107019 date "2013-10-22" @default.
- W2021107019 modified "2023-10-18" @default.
- W2021107019 title "Gas to Liquids: Beyond Fischer Tropsch" @default.
- W2021107019 doi "https://doi.org/10.2118/165757-ms" @default.
- W2021107019 hasPublicationYear "2013" @default.
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