IP Library Granted Patent US 9,943,775
Granted Patent B2
US 9,943,775 · App. 14/547,233 · Granted Apr 17, 2018

Flexible process for treating solvent, such as monoethylene glycol, used in natural gas extraction

Inventors: Jeremie Esquier (Paris, FR); Bernard Chambon (Acheres, FR); Christian Streicher (Rueil Malmaison, FR)
Assignee: PROSERNAT
B01D3/06B01D3/10B01D3/148B01D3/34B01D53/1425C07C29/80B01D2252/2023
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Quick Facts
Patent No.
US 9,943,775
App. No.
14/547,233
Granted
Apr 17, 2018
Kind
B2
Abstract

The invention concerns a flexible process for purifying a solvent which inhibits the formation of hydrates during gas processing, in particular monoethylene glycol (MEG), said solvent having a boiling point which is higher than that of water and, at least at one point in time, being mixed with water and salts, the process operating in a different manner with the same facility as a function of the quantity of salts in the MEG to be treated. The process operates in accordance with a phase known as reclaiming (separation of salts under vacuum followed by vacuum distillation) when the salts content exceeds the precipitation threshold and if not, the process operates in a regeneration phase (absence of separation of salts and no operation under vacuum). Advantageously, the change is made under the control of means for testing the salts.

Claims (20)

1. A process for purifying a hydrate formation inhibiting solvent, said solvent having a boiling point which is higher than that of water and, at least at one point in time, being mixed with water and salts, the process comprising:

optionally, a pre-treatment of said solvent to be treated, said pre-treatment separating at least a portion of the hydrocarbons, condensates, and gases, and said pre-treatment optionally comprising adding a chemical neutralization agent;

determining whether the quantity of salts in a treated mixture is above, equal to, or below a precipitation threshold;

a reclaiming phase carried out when the quantity of salts in said solvent, which has optionally been pre-treated, is equal to or greater than the precipitation threshold in the treated mixture;

said phase comprising a vacuum flash, operating at a pressure which is below atmospheric pressure and at a temperature which is below the degradation temperature of the solvent, by which a stream of solvent containing salts and a vaporized stream of solvent and water are obtained, said stream of solvent and water being vacuum distilled at a pressure which is substantially equal to that prevailing in said vacuum flash in order to separate the water and recover a stream of purified solvent, the salts being separated from said stream of solvent containing the salts, then the solvent obtained being recycled to the flash;

wherein when said quantity of salts in the treated mixture is below a precipitation threshold, stopping the reclaiming phase and carrying out a phase termed regeneration;

said regeneration phase comprising releasing the vacuum, the solvent to be treated, which has optionally been pre-treated, undergoing a flash step, operating at a pressure greater than or equal to atmospheric pressure and at a temperature which is below the degradation temperature of the solvent, by which a first stream of purified solvent and a stream of solvent and water are obtained, said stream of solvent and water being distilled under a pressure substantially equal to that prevailing in said flash, the water being separated and a second stream of purified solvent being obtained, said second stream being mixed with said first stream and/or recycled to said flash.

2. The process according to claim 1 , in which the solvent is monoethylene glycol.

3. The process according to claim 1 , in which the solvent is an alkanolamine.

4. The process according to claim 3 , in which the solvent is selected from the group formed by monoethanolamine (MEA), diethanolamine (DEA) and methyldiethanolamine (MDEA).

5. The process according to claim 1 , in which the solvent to be treated does not undergo a treatment for separating divalent salts.

6. The process of claim 1 , wherein the pressure of the vacuum flash is in the range of 0.2 to 0.5 bar absolute.

7. The process of claim 1 , wherein the pressure of the regeneration phase is in the range 1 to 2 bar absolute.

8. A process for purifying a hydrate formation inhibiting solvent, said solvent having a boiling point which is higher than that of water and, at least at one point in time, being mixed with water and salts, the process comprising:

optionally, a pre-treatment of said solvent to be treated, said pre-treatment separating at least a portion of the hydrocarbons, condensates, and gases, and said pre-treatment optionally comprising adding a chemical neutralization agent;

a reclaiming phase carried out when the quantity of salts in said solvent, which has optionally been pre-treated, reaches a precipitation threshold in the treated mixture;

said phase comprising a vacuum flash, operating at a pressure which is below atmospheric pressure and at a temperature which is below the degradation temperature of the solvent, by which a stream of solvent containing salts and a vaporized stream of solvent and water are obtained, said stream of solvent and water being vacuum distilled at a pressure which is substantially equal to that prevailing in said vacuum flash in order to separate the water and recover a stream of purified solvent, the salts being separated from said stream of solvent containing the salts, then the solvent obtained being recycled to the flash;

wherein when said quantity of salts in the treated mixture is below a precipitation threshold, stopping the reclaiming phase and carrying out a phase termed regeneration;

said regeneration phase comprising releasing the vacuum, the solvent to be treated, which has optionally been pre-treated, undergoing a flash step, operating at a pressure greater than or equal to atmospheric pressure and at a temperature which is below the degradation temperature of the solvent, by which a first stream of purified solvent and a stream of solvent and water are obtained, said stream of solvent and water being distilled under a pressure substantially equal to that prevailing in said flash, the water being separated and a second stream of purified solvent being obtained, said second stream being mixed with said first stream and/or recycled to said flash, and

wherein said process includes at least one regeneration phase and at least one reclaiming phase.

Assignments (4)
TRANSFER OF ASSETS Recorded Jul 15, 2020
From: HEURTEY PETROCHEM
To: AXENS
Reel/Frame 053212/0957 →
TRANSFER OF ASSETS Recorded Jul 13, 2020
From: PROSERNAT
To: HEURTEY PETROCHEM
Reel/Frame 053196/0924 →
DECREE OF DISTRIBUTION Recorded Jun 1, 2020
From: PROSERNAT
To: HEURTEY PETROCHEM
Reel/Frame 052800/0206 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2015
From: ESQUIER, JEREMIE; CHAMBON, BERNARD; STREICHER, CHRISTIAN
To: PROSERNAT
Reel/Frame 034820/0103 →
Priority Claims (1)
FR 13 61500 · Nov 22, 2013 · national
Continuity (1)
Related Publication 20150144477A1 · May 28, 2015