Oxidation inhibitor, carbon dioxide absorbent and carbon dioxide absorption method thereof

An oxidation inhibitor, carbon dioxide technology, applied in the direction of chemical instruments and methods, separation methods, reagents, etc., can solve the problems of reduced absorption capacity, lack of antioxidants, MEA loss, etc., achieve low addition amount, inhibit oxidation degradation, reduce The effect of absorbing costs

Active Publication Date: 2021-03-26
TSINGHUA UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the absorbent still has the problem of being easily oxidized by oxygen in the mixed gas, resulting in serious loss of MEA and reduced absorption capacity.
However, research on antioxidants for physical-chemical mixed amine solutions with liquid-liquid phase transition properties, especially antioxidants for MEA-TMS two-phase absorbents, is still lacking.

Method used

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  • Oxidation inhibitor, carbon dioxide absorbent and carbon dioxide absorption method thereof
  • Oxidation inhibitor, carbon dioxide absorbent and carbon dioxide absorption method thereof
  • Oxidation inhibitor, carbon dioxide absorbent and carbon dioxide absorption method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] Example 1 and comparative example 1 each absorbent 48h MEA retention rate is as follows figure 1 As shown, the main degradation product ammonium ion concentration curve with time is as follows figure 2 shown. Embodiment 2 and comparative example 2 each absorber 48h MEA retention rate is as follows image 3 As shown, the main degradation product ammonium ion concentration curve with time is as follows Figure 4 shown.

[0029] Example 1

[0030] The oxidation inhibitor is 0.1mol / L erythritol (mass concentration: 1.2%), denoted as sd7.

Embodiment 2

[0034] In the mixed aqueous solution of the absorbent MEA and TMS, different amounts of glycerin, D-sorbitol, and xylitol were added as oxidation inhibitors, among which, 2wt.% glycerol, denoted as od2; 2wt.% D-sorbitol, Recorded as od3; 2wt.% xylitol, recorded as od4; 5wt.% glycerol, recorded as od5.

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PUM

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Abstract

The invention discloses an oxidation inhibitor, a carbon dioxide absorbent and a carbon dioxide absorption method thereof. The carbon dioxide absorbent comprises a mixed aqueous solution of ethanolamine (MEA) and sulfolane (TMS) and an oxidation inhibitor, wherein the oxidation inhibitor is selected from glycerol, D-sorbitol, xylitol and erythritol; and MEA and TMS account for 25%-50% and 20%-50%respectively, and the content of the oxidation inhibitor is greater than 0 and less than or equal to 10%. The method comprises the following steps: adding the carbon dioxide absorbent into an absorption tower for an absorption reaction with carbon dioxide gas to form a carbon dioxide absorption liquid; enabling the carbon dioxide absorption liquid to enter a phase splitter for standing and layering to form an enriched phase enriched with carbon dioxide and a lean carbon dioxide absorption phase; and enabling the enriched phase to enter a desorption tower to desorb high-purity carbon dioxide, and returning the absorption phase to the absorption tower as the carbon dioxide absorbent to continuously participate in the absorption reaction. The method has the advantages of good absorbent oxidation inhibition, high carbon dioxide absorption efficiency and the like.

Description

technical field [0001] The invention relates to an oxidation inhibitor, a carbon dioxide absorbent and a carbon dioxide absorption method thereof, belonging to the technical field of gas separation. Background technique [0002] CO 2 Capture and storage technology is an important technology that can reduce carbon emissions and alleviate the greenhouse effect. in various CO 2 Among the capture technologies, the alkaline solution absorption separation method is currently widely used and the technology is relatively mature. Among them, the alcohol amine solution absorbent has the advantages of strong absorption capacity, high absorption efficiency, and excellent cycle absorption performance, but its high energy consumption and degradation problems cannot be ignored. [0003] Aiming at the problem of the degradation of the absorbent itself, there are continuous reports on its inhibition methods in the open literature. For example, the patent document CN100352536C discloses t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01D53/78B01D53/62B01D53/96C01B3/52C10L3/10
CPCB01D53/78B01D53/62B01D53/96C10L3/104C01B3/52B01D2252/202B01D2252/20484B01D2252/2056B01D2258/0283B01D2257/504C10L2290/541C01B2203/0415Y02P20/151
Inventor 王淑娟马超许咪咪徐立珍
Owner TSINGHUA UNIV
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