CN103833877A - Synthesis technology of chelating terpolymer scale inhibitor based on group monomer consumption control - Google Patents

Synthesis technology of chelating terpolymer scale inhibitor based on group monomer consumption control Download PDF

Info

Publication number
CN103833877A
CN103833877A CN201210471555.5A CN201210471555A CN103833877A CN 103833877 A CN103833877 A CN 103833877A CN 201210471555 A CN201210471555 A CN 201210471555A CN 103833877 A CN103833877 A CN 103833877A
Authority
CN
China
Prior art keywords
chelating
group monomer
scale inhibitor
reaction
terpolymer scale
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201210471555.5A
Other languages
Chinese (zh)
Inventor
谭正怀
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN201210471555.5A priority Critical patent/CN103833877A/en
Publication of CN103833877A publication Critical patent/CN103833877A/en
Pending legal-status Critical Current

Links

Landscapes

  • Polymerisation Methods In General (AREA)

Abstract

The invention discloses a synthesis technology of a chelating terpolymer scale inhibitor based on group monomer consumption control. The technology comprises the following steps: 1, putting chelating group monomers, AM and AA in a reaction container according to a certain ratio, wherein the mass of the chelating group monomers accounts for 80.0-95.0% of the mass of total reaction monomers; 2, adding a solvent for dissolving; 3, adding a catalyst and an initiator; 4, placing the reaction container in a water bath, and reacting to obtain a reaction product mixture; and 5, adding a proper amount of ethanol into the reaction product mixture, carrying out cooling filtration, distilling the obtained filtered liquid, and drying to obtain a target product. The chelating terpolymer scale inhibitor can be successfully synthesized through the technology, and the synthesized chelating terpolymer scale inhibitor has the advantages of excellent performances, simple synthesis steps and low synthesis cost; and the group monomer consumption in the synthesis process is controlled to improve the reaction conversion rate and the quality of the product.

Description

Control the synthesis technique of the chelating type terpolymer scale inhibitor of group monomer consumption
Technical field
The present invention relates to a kind of synthesis technique of the chelating type terpolymer scale inhibitor of controlling group monomer consumption.
Background technology
In oilfield exploitation procedure, fluid (oil, G&W) in hydrocarbon-bearing pool flows out from stratum, to surface gathering system, due to the variation of the condition such as temperature, pressure and the thermodynamic phase of water and chemical incompatibility, cause oil gas water balance state to be destroyed through pit shaft, well head.Often cause water filling stratum, tubing and casing, down-hole, uphole equipment and gathering system to occur fouling.Fouling has larger impact to the normal production of oil well, in the time that dirt deposition is on the equipment such as pit shaft, oil pipe, oil well pump, waterflood system, gathering system, heating system, can cause equipment not run well, heat transfer efficiency reduces, cause throughput to decline, and fouling also can cause the corrosion of equipment and pipeline, cause serious financial loss to oil field.
Existing scale inhibitor mainly contains aminopolycanboxylic acid's salt, organic multicomponent phosphonic acid based and organic polymer three major types.Aminopolycanboxylic acid's salt Chelate stability constants is large, can be used for comparatively high temps, but consumption is large, and cost is high; Organic multicomponent phosphonic acids to barium sulfate, Strontium Sulphate without antiscaling effect; And what mostly use is organic polymer scale inhibitor, uses monomer and maleic anhydride, acrylic acid copolymer to expect raising antiscaling rate more, but owing to fundamentally not changing polymer architecture, do not reach the antiscaling effect of expection.
In crude oil production process, fouling is a kind of ubiquitous phenomenon, and fouling is simultaneously one of the most serious problem running in the control of oil-field water water quality.Fouling has larger impact to the normal production of oil well, and dirt deposition can stop up formation pore, crack on stratum, cause permeability reduction, and crude production rate is declined, and even causes oil well to stop production when serious, and the oil reservoir lower on rate of permeation affects more very; In the time that dirt deposition is on the equipment such as pit shaft, oil pipe, oil well pump, waterflood system, gathering system, heating system, can cause equipment not run well, heat transfer efficiency reduces, cause throughput to decline, and fouling also can cause the corrosion of equipment and pipeline, cause serious financial loss to oil field.
The major cause of fouling is due to pressure or temperature change, evaporation or two kinds of water of 5 of mismatching mix mutually, make the inorganic salt (CaCO3, CaSO4 or BaSO4) that are originally present in the aqueous solution with ionic condition reach hypersaturated state, exceeded their solubleness and crystallize out into dirt.Fouling process is the process of certain density incrustation ion crystallization and gathering under certain physical and chemical condition (as pressure, temperature) and equipment surface situation.It is the basic reason that causes fouling that equilibrium state goes to pot.
Chemical scale inhibition agent is the gentle Technology of separating fouling of inhibition that oil field is commonly used the most.In order to prevent fouling, ground flow, oil well and water-injection plant need be connected or in system, add scale inhibitor off and on.For the various fouling situations in oil field, there are two class solutions: the one, scale removal; The 2nd, antiscale.Scale removal is a kind of remedial measures, and when scale removal, the corrosion that it has produced the underproduction and equipment, has caused larger financial loss, therefore, prevents that dirty generation is only a kind of good measure.In the method for antiscale, with chemical agent antiscale be people generally acknowledge the simplest, effectively, convenient, economic method.Therefore each oil field all adapts to the chemical scale inhibition agent of different condition for block the characteristic study separately.And develop the efficient scale inhibitor common objective that just generally pursue in each oil field especially.
In the synthesis process of chelating type terpolymer scale inhibitor, group monomer consumption will directly have influence on reaction conversion ratio and quality product, therefore determine a suitable group monomer consumption, the synthesis technique of chelating type terpolymer scale inhibitor be seemed to particularly important.
Summary of the invention
The object of the invention is to overcome the shortcoming and defect of above-mentioned prior art, a kind of synthesis technique of the chelating type terpolymer scale inhibitor of controlling group monomer consumption is provided, this synthesis technique can successfully synthesize chelating type terpolymer scale inhibitor, and the excellent property of the chelating type terpolymer scale inhibitor synthesizing, synthesis step is simple, and synthetic cost is low; And by controlling the consumption of the chelating group monomer in building-up process, thereby reaction conversion ratio and quality product are improved.
Object of the present invention is achieved through the following technical solutions: a kind of synthesis technique of the chelating type terpolymer scale inhibitor of controlling group monomer consumption, comprises the following steps:
(a) first, chelating group monomer, AM and AA are put into reaction vessel according to a certain percentage, and the quality of control chelating group monomer accounts for 80.0~95.0% of total reaction monomer mass;
(b) then add dissolution with solvents;
(c) add catalyzer and initiator;
(d) will in reaction vessel, be placed in water-bath, reaction obtains mixture of reaction products;
(e) will in mixture of reaction products, add appropriate ethanol, and cold filtration processing, liquid distillation after filtering, then dry, obtain target product.
Described reaction vessel is beaker.
In described step (e), carry out filtration treatment by molecular sieve.
In described step (e), carry out underpressure distillation by rotatory evaporator.
The quality of described chelating group monomer accounts for 85.0% of total reaction monomer mass.
The quality of described chelating group monomer accounts for 88.0% of total reaction monomer mass.
The quality of described chelating group monomer accounts for 92.0% of total reaction monomer mass.
In sum, the invention has the beneficial effects as follows: can successfully synthesize chelating type terpolymer scale inhibitor, and the excellent property of the chelating type terpolymer scale inhibitor synthesizing, synthesis step is simple, and synthetic cost is low; And by controlling the group monomer consumption in building-up process, thereby reaction conversion ratio and quality product are improved.
Embodiment
Below in conjunction with embodiment, the present invention is described in further detail, but embodiments of the present invention are not limited only to this.
Embodiment:
The synthesis technique of a kind of chelating type terpolymer scale inhibitor of controlling group monomer consumption the present invention relates to, comprises the following steps:
(a) first, chelating group monomer, AM and AA are put into reaction vessel according to a certain percentage, and the quality of control chelating group monomer accounts for 80.0~95.0% of total reaction monomer mass;
(b) then add dissolution with solvents;
(c) add catalyzer and initiator;
(d) will in reaction vessel, be placed in water-bath, reaction obtains mixture of reaction products;
(e) will in mixture of reaction products, add appropriate ethanol, and cold filtration processing, liquid distillation after filtering, then dry, obtain target product.
Described reaction vessel is beaker.
In described step (e), carry out filtration treatment by molecular sieve.
In described step (e), carry out underpressure distillation by rotatory evaporator.
The quality of described chelating group monomer accounts for 85.0% of total reaction monomer mass.
The quality of described chelating group monomer accounts for 88.0% of total reaction monomer mass.
The quality of described chelating group monomer accounts for 92.0% of total reaction monomer mass.
In the synthesis process of chelating type terpolymer scale inhibitor, group monomer consumption will directly have influence on reaction conversion ratio and quality product, therefore determine a suitable group monomer consumption, the synthesis technique of chelating type terpolymer scale inhibitor be seemed to particularly important.In order to obtain best group monomer consumption, the present invention has done the impact experiment of different group monomer consumptions on reaction conversion ratio and quality product, result is known by experiment: control suitable group monomer consumption and be very helpful to improving reaction conversion ratio and quality product, suitably increase group monomer consumption, can improve reaction conversion ratio, but, in the time that group monomer consumption is increased to certain value, increase again group monomer consumption, do not produce any impact for improving reaction conversion ratio, on the contrary, can reduce the quality of product, therefore should consider.
To sum up, the quality of the chelating group monomer in the present invention accounts for 80.0~95.0% of total reaction monomer mass, and the best is 88.0%.
The above, be only preferred embodiment of the present invention, not the present invention done to any pro forma restriction, every foundation technical spirit of the present invention, and any simple modification, equivalent variations that above embodiment is done, within all falling into protection scope of the present invention.

Claims (7)

1. the synthesis technique of controlling the chelating type terpolymer scale inhibitor of group monomer consumption, is characterized in that, comprises the following steps:
(a) first, chelating group monomer, AM and AA are put into reaction vessel according to a certain percentage, and the quality of control chelating group monomer accounts for 80.0~95.0% of total reaction monomer mass;
(b) then add dissolution with solvents;
(c) add catalyzer and initiator;
(d) will in reaction vessel, be placed in water-bath, reaction obtains mixture of reaction products;
(e) will in mixture of reaction products, add appropriate ethanol, and cold filtration processing, liquid distillation after filtering, then dry, obtain target product.
2. the synthesis technique of the chelating type terpolymer scale inhibitor of control group monomer consumption according to claim 1, is characterized in that, described reaction vessel is beaker.
3. the synthesis technique of the chelating type terpolymer scale inhibitor of control group monomer consumption according to claim 1, is characterized in that, in described step (e), carries out filtration treatment by molecular sieve.
4. the synthesis technique of the chelating type terpolymer scale inhibitor of control group monomer consumption according to claim 1, is characterized in that, in described step (e), carries out underpressure distillation by rotatory evaporator.
5. the synthesis technique of the chelating type terpolymer scale inhibitor of control group monomer consumption according to claim 1, is characterized in that, the quality of described chelating group monomer accounts for 85.0% of total reaction monomer mass.
6. the synthesis technique of the chelating type terpolymer scale inhibitor of control group monomer consumption according to claim 1, is characterized in that, the quality of described chelating group monomer accounts for 88.0% of total reaction monomer mass.
7. the synthesis technique of the chelating type terpolymer scale inhibitor of control group monomer consumption according to claim 1, is characterized in that, the quality of described chelating group monomer accounts for 92.0% of total reaction monomer mass.
CN201210471555.5A 2012-11-20 2012-11-20 Synthesis technology of chelating terpolymer scale inhibitor based on group monomer consumption control Pending CN103833877A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201210471555.5A CN103833877A (en) 2012-11-20 2012-11-20 Synthesis technology of chelating terpolymer scale inhibitor based on group monomer consumption control

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201210471555.5A CN103833877A (en) 2012-11-20 2012-11-20 Synthesis technology of chelating terpolymer scale inhibitor based on group monomer consumption control

Publications (1)

Publication Number Publication Date
CN103833877A true CN103833877A (en) 2014-06-04

Family

ID=50797801

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201210471555.5A Pending CN103833877A (en) 2012-11-20 2012-11-20 Synthesis technology of chelating terpolymer scale inhibitor based on group monomer consumption control

Country Status (1)

Country Link
CN (1) CN103833877A (en)

Similar Documents

Publication Publication Date Title
CN103833877A (en) Synthesis technology of chelating terpolymer scale inhibitor based on group monomer consumption control
CN103833879A (en) Synthesis technology of chelating terpolymer scale inhibitor based on AA consumption control
CN103833880A (en) Synthesis technology of chelating terpolymer scale inhibitor based on AM consumption control
CN103833875A (en) Synthesis technology of chelating terpolymer scale inhibitor based on drying time control
CN103833878A (en) Synthesis technology of chelating terpolymer scale inhibitor based on drying temperature control
CN103833876A (en) Synthesis technology of chelating terpolymer scale inhibitor based on distillation temperature control
CN103833891A (en) Synthesis technology of chelating terpolymer scale inhibitor based on distillation time control
CN103833904A (en) Synthesis technology of chelating terpolymer scale inhibitor based on cooling time control
CN103804564A (en) Synthetic process of chelating tertiary copolymerized scale inhibitor based on reaction temperature control
CN103804567A (en) Synthesis process of chelating trinary copolymerized anti-scaling agent capable of controlling catalyst concentration
CN103833906A (en) Synthesis technology of novel chelating terpolymer scale inhibitor
CN103804566A (en) Synthetic technology of chelated ternary copolymerization scale inhibitor based on control of initiating agent concentration
CN103804565A (en) Synthetizing technology of chelation type ternary polymerization antisludge agent based on control reaction time
CN103804583A (en) Chelated ternary copolymerized anticrustator synthesis technology capable of controlling pH value of system
CN103804575A (en) Synthesis process of chelated type ternary co-polymerized anti-scaling agent based on control of stirring time
CN103833881A (en) Synthetic process of chelate ternary copolymerization scale inhibitor based on controlling distillation pressure
CN103804576A (en) Monomer ratio control based synthesis process for chelated ternary copolymerization scale inhibitor
CN103804563A (en) Synthetic process of chelating ternary copolymerization anti-scale agent based on control of stirring speed
CN103804581A (en) Process for synthesizing chelated ternary-copolymerized antiscaling agent
CN103804586A (en) Synthetic process of binary copolymerized scale inhibitor on basis of controlling drying time
CN103804584A (en) Binary copolymerized anticrustator synthesis technology capable of controlling cooling time
CN103804585A (en) Synthesis process of binary copolymerized anti-scale agent based on control of drying temperature
CN103804588A (en) Synthesis process based on control of distillation temperature for binary copolymerized anti-scaling agent
CN103804579A (en) Binary copolymerized anticrustator synthesis technology based on control of stirring time
CN103804582A (en) Synthesis process of binary co-polymerized anti-scaling agent based on control of cooling temperature

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C02 Deemed withdrawal of patent application after publication (patent law 2001)
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20140604