Technology for efficiently purifying glycol obtained through oxalate hydrogenation
A technology for purifying oxalate and ethylene glycol, applied in the separation/purification of hydroxyl compounds, organic chemistry, etc., can solve problems such as unscientific utilization, damage to marine ecological environment, and consumption of natural gas resources, so as to alleviate negative impacts, Reduced energy consumption and high productivity
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[0021] figure 1 It is a process flow diagram of the present invention, with reference to figure 1 As shown, the apparatus used includes a heat exchange unit 2, a supplemental refrigeration unit 3, and a separation unit 4 for ethylene glycol, 1,2-propanediol and 1,2-butanediol. The heat exchange unit 2 is connected to the LNG storage tank 1 through a pipeline 101, and the LNG cryogenic liquid at -162°C is heated up to room temperature and vaporized through the heat exchange unit 2. The gasified natural gas is transported by the natural gas pipeline 102 to the natural gas usage place outside the boundary area. The temperature is 180°C, the pressure is 30bar, and the crude product of ethylene glycol is produced by hydrogenation of oxalate (the mass fraction of ethylene glycol is 70%, the mass fraction of 1,2-propanediol is 15%, and the mass fraction of 1,2-butanediol is The mass fraction is 15%) enters the heat exchange unit 2 through the crude product delivery pipeline 103 at ...
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