Absorption liquid for desulfurization and decarburization in SNG synthesis gas

文档序号:1703944 发布日期:2019-12-13 浏览:28次 中文

阅读说明:本技术 用于sng合成气中脱硫脱碳的吸收液 (Absorption liquid for desulfurization and decarburization in SNG synthesis gas ) 是由 毛松柏 余勇 朱道平 陈园园 于 2018-06-06 设计创作,主要内容包括:本发明SNG合成气净化技术领域,涉及一种从SNG合成气中高效脱硫脱碳的吸收液,由醇胺、位阻胺、消泡剂、以及水组成。采用本发明吸收液能够有效的脱除SNG合成气中的H<Sub>2</Sub>S和CO<Sub>2</Sub>。在合成气压力为3.5-5.5MPa,温度为160-180℃,其中,CO<Sub>2</Sub>~35%、H<Sub>2</Sub>S~0.68%v,经过净化后,净化气中H<Sub>2</Sub>S含量≤20mg/Nm3,CO<Sub>2</Sub>~2-2.5%,达到SNG合成气净化指标,并脱硫脱碳率高、再生能耗低、稳定性好等显著优点。(The invention belongs to the technical field of SNG synthesis gas purification, and relates to an absorption liquid for efficient desulfurization and decarburization from SNG synthesis gas, which consists of alcohol amine, steric hindrance amine, a defoaming agent and water. The absorption liquid can effectively remove H in the SNG synthesis gas 2 S and CO 2 . Under the conditions of synthesis gas pressure of 3.5-5.5MPa and temperature of 160-180 ℃, wherein, CO 2 ~35%、H 2 S ~ 0.68% v, purifying H in gas 2 s content less than or equal to 20mg/Nm3, CO 2 ~ 2-2.5%, reaching the SNG synthesis gas purification index, and having the advantages of high desulfurization and decarburization rate, low regeneration energy consumption, good stability, etc.)

1. An absorption liquid for desulfurization and decarburization in SNG synthesis gas is characterized by comprising alcohol amine, steric hindrance amine, a defoaming agent and water; the concentration of the alcohol amine is 25-65% (wt); the sterically hindered amine is a mixture of a plurality of sterically hindered amines, and the sterically hindered amine is a nonlinear alcohol amine compound which brings one or more sterically hindered structures on a nitrogen atom; the concentration of the hindered amine is 5-35% (wt), the concentration of the defoaming agent is 0.01-0.05% (wt), and the balance is water.

2. The absorption liquid according to claim 1, wherein the alcohol amine is two mixed alcohol amines, and the concentration of the two mixed alcohol amines is 30-60% (wt).

3. The absorbent solution according to claim 1 or 2, wherein the alcohol amine is a mixture of methyldiethanolamine and diethanolamine.

4. The absorption liquid according to claim 1, wherein the concentration of the hindered amine is 5 to 30% (wt).

5. The absorption liquid according to claim 1, wherein the hindered amine is hydroxyethyl piperazine, morpholine and diazabicyclo, the hydroxyethyl piperazine accounts for 5-20% (wt) of the absorption liquid, the morpholine accounts for 5-15% (wt) of the absorption liquid, and the diazabicyclo accounts for 5-15% (wt) of the absorption liquid.

6. The absorbent solution according to claim 1, wherein the concentration of the defoaming agent is 0.02 to 0.05% (wt).

7. The absorbent solution of claim 1, wherein the defoaming agent is a mixture of dimethicone and tributyl phosphate.

8. The absorption liquid as claimed in claim 1, wherein the pressure of the SNG synthesis gas is 3.5-5.5MPa, the temperature is 160-180 ℃, and CO is present2 0-35%、H2S 0-0.68%v。

Technical Field

The invention belongs to the field of gas purification, and particularly relates to an absorption liquid for desulfurization and decarburization in SNG synthesis gas.

Background

Natural gas is a clean, efficient energy product. The rapid increase of the economy of China promotes the demand of natural gas, and along with the implementation of the strategies of sustainable development and the policies of strengthening environmental protection and the like in China, the demand of natural gas in China is increasing day by day. Based on the basic national situation of 'more coal, less oil and gas shortage' in China, in recent years, a coal-to-natural gas project becomes an important development direction of coal chemical industry.

Coal-based natural gas has been favored in recent years due to its relatively high energy conversion efficiency and low water consumption and carbon dioxide emissions. The SNG is an effective way for converting high-carbon energy into low-carbon and hydrogen-rich energy, has the advantages of efficient utilization of energy, converts coal into the SNG through thermochemical processes such as gasification and methanation, and achieves the maximum chemical efficiency. Along with CH in the product gas4With an increased content, the overall chemical efficiency is increased, since less heat is released in the methanation reaction.

among them, acid gas removal is one of the important steps of the SNG process. So far, the technologies applied to gas desulfurization and decarburization are not hundreds of, and are also dozens of more widely applied. The choice of acid gas removal process depends on many factors, both the characteristics of the process itself and the overall process flow combined with raw material routes, processing methods, utility costs, etc., and none of these methods are suitable for use under a variety of conditions.

In the traditional SNG process, after coal gasification, CO in coal gas is converted into CO through a conversion process2And then, removing the acid gas, wherein the acid gas to be removed is relatively large, and low-temperature methanol washing, NHD (polyethylene glycol dimethyl ether) and other physical methods are adopted for desulfurization and decarburization in consideration of the occupied area of the device and the number of the devices, but the physical methods need low temperature and are not matched with the high-temperature processes of the previous and subsequent processes, and meanwhile, a large amount of heat generated by methanation is not effectively utilized. And secondly, the solvent absorption and regeneration effects of the conventional amine method are stable, but the energy consumed in the regeneration process accounts for more than 90% of the energy consumption, so that the consumption is large. Therefore, the absorption liquid for novel desulfurization and decarburization in the SNG synthesis gas is developed, so that the energy can be saved, and the aim of improving the economic benefit is fulfilled.

disclosure of Invention

The invention aims to provide an absorption liquid for desulfurization and decarburization in SNG synthesis gas. The absorption liquid can show high absorption performance and regeneration performance.

The main technical scheme of the invention is as follows: an absorption liquid for desulfurization and decarburization from SNG synthesis gas comprises alcohol amine, hindered amine, defoamer and water; the concentration of the alcohol amine is 25-65% (wt); the sterically hindered amine is a mixture of a plurality of sterically hindered amines, and the sterically hindered amine is a nonlinear alcohol amine compound which brings one or more sterically hindered structures on a nitrogen atom; the concentration of the hindered amine is 5-35% (wt), the concentration of the defoaming agent is 0.01-0.05% (wt), and the balance is water.

Generally, the alcohol amine is a mixture of two kinds, and the concentration is 30-60% (wt).

The alcohol amine is a mixture of methyldiethanolamine and diethanolamine.

The concentration of the hindered amine is 5-30% (wt).

The sterically hindered amine is hydroxyethyl piperazine, morpholine and diazabicyclo, wherein the hydroxyethyl piperazine accounts for 5-20% (wt) of the absorption liquid, the morpholine accounts for 5-15% (wt) of the absorption liquid, and the diazabicyclo accounts for 5-15% (wt) of the absorption liquid.

The concentration of the defoaming agent is 0.02-0.05% (wt).

The defoaming agent is a mixture of dimethyl silicone oil and tributyl phosphate.

The pressure of the SNG synthetic gas is 3.5-5.5MPa, the temperature is 160-180 ℃, wherein, CO2 0~35%、H2S 0~0.68%v。

The invention has the following remarkable characteristics: compared with the common alcohol amine solvent, the absorption liquid has the remarkable advantages of high desulfurization and decarburization rate, low regeneration energy consumption, good stability and the like, and has obvious effect on purification of the SNG synthesis gas.

Detailed Description

The present invention will be described in detail with reference to examples.

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