CN103837443A - Method for testing influence of temperature on apparent viscosity of hydrophobic association polymer - Google Patents

Method for testing influence of temperature on apparent viscosity of hydrophobic association polymer Download PDF

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CN103837443A
CN103837443A CN201210481868.9A CN201210481868A CN103837443A CN 103837443 A CN103837443 A CN 103837443A CN 201210481868 A CN201210481868 A CN 201210481868A CN 103837443 A CN103837443 A CN 103837443A
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hydrophobic
apparent viscosity
polymer
temperature
hydrophobic associated
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唐静
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Abstract

The invention discloses a method for testing the influence of the temperature on the apparent viscosity of a hydrophobic association polymer. The method comprises the following steps: 1, preparing the hydrophobic association polymer; 2, dissolving the hydrophobic association polymer in a solvent to form solutions having a same mass concentration; 3, respectively placing the hydrophobic association polymer solutions in different experiment containers; 4, respectively placing the experiment containers in water baths having different temperatures; and 5, measuring the apparent viscosity of the hydrophobic association polymer under a same speed stirring condition through a viscometer, and analyzing data to obtain the influence of the temperature on the apparent viscosity of the hydrophobic association polymer. The method can be successfully applied to test the influence of the temperature on the apparent viscosity of the hydrophobic association polymer, and has the advantages of accurate test result, simple test steps, and substantial reduction of the test cost.

Description

The method of testing of hydrophobic associated polymer apparent viscosity temperature influence
Technical field
The present invention relates to a kind of method of testing of hydrophobic associated polymer apparent viscosity temperature influence.
Background technology
Hydrophobic associated polymer, refers to the water-soluble polymers with a small amount of hydrophobic grouping on polymer hydrophilicity macromolecular chain.On water-soluble macromolecule chain, introducing a small amount of hydrophobic grouping makes its aqueous solution show unique rheological property.On certain polymer concentration, hydrophobic part associates and forms dynamic three-dimensional net structure, thereby forms very large supermolecule chain aggregation body, increases the hydrodynamic volume of polymkeric substance, improves significantly the viscosity of solution.The electrolytical polarity that can increase solvent that adds of little molecule, strengthens hydrophobic association effect, produces obvious salt-resistance.Under high shear forces, the dynamic physical cross-linked network structure that hydrophobic association forms is destroyed, solution viscosity declines, shear action reduction or the physical crosslinking of eliminating between rear macromolecular chain form again, viscosity will be recovered again, the irreversible machinery degraded of the polymkeric substance that general high molecular do not occur under high-rate of shear.Just because of its unique SOLUTION PROPERTIES, it may be applied in a lot of fields, as tertiary oil recovery, pharmacy, sun power conversion, cosmetics, coating, water treatment and drag reducer etc.Its correlative study in recent years receives much attention.
Hydrophobic close ester phenomenon is very general, below critical association concentration, mainly forms in molecule and associates, and consequently makes a ball of string shrink, and hydrodynamic volume reduces; More than CAC, main formation taking Interpolymer Association as main supramolecular structure has good tackifying.By Interpolymer Association, on the macro property of solution, show the feature that tackifying is strong, have certain temperature resistance, anti-salt and anti-shear ability.These special performances of hydrophobic associated polymer make it in many industrial technologies, all show huge application potential, and have great importance for the solution behavior that imitates the amphiphilic class material in life entity, thereby the exploration of hydrophobic associated water-soluble polymer is become to recent two decades carry out one of problem the most interesting in water-soluble polymers research field, and become the focus that industry and academia are studied.
Should trace back to the fifties initial stage to the research of amphiphilic base polymer, Strauss and assistant thereof have synthesized the solution behavior of a series of polysoaps in order to mimic protein for this reason, first Kauzmann has proposed the concept of " hydrophobic interaction ", and describes XC polymer as a series of phenomenons relevant to life science such as the formation of film in the constraint to enzyme of the conformation transition of protein, matrix, biosome with it.In the later stage in the sixties, Strauss group has synthesized again a series of hydrophobic super coil polymkeric substance that have.Contemporaneity, hydrophobically modified urea alkane (HEUR) comes out and is very fast for improving the rheological of water-based latex coating.Until today, researchist, still in effort, attempts that HEUR is made further improvements or find new material and replaces HEUR.
Last century the eighties, the SOLUTION PROPERTIES of hydrophobic associated polymer uniqueness and huge application potential thereof have attracted a large amount of researchists.Landoll is considered to study the real beginning of hydrophobic associated water-soluble polymer about the research of hydroxyethyl cellulose (HEC) hydrophobically modified.The people such as Emmons have delivered the patent with chain alkyl N-substituted acrylamide (CnAM) copolymerization cooperation water-based paint with acrylamide (AM).Before and after 1984, the researchist of Exxon research and engineering corporation starts to inquire into hydrophobic associated polymer the feasibility for oil-gas mining, and this is carried out to lasting and deep research, develop various hydrophobic monomer, and invent the novel polymeric method that solves hydrophilic monomer and the inconsistent problem of hydrophobic monomer in hydrophobic associated polymer polymerization process, it is micellar free radical copolymerization method, be called for short micellar copolymerization, the method is still the best approach in all polymerizations of hydrophobic associated polymer up to now.
Hydrophobic associated water-soluble polymer is by the atom difference that forms main chain, can be divided into carbochain and heteroatoms molecular backbone polymkeric substance, the former is mainly the multipolymer being obtained by the alkene monomer polymer of hydrophilic radical and hydrophobic grouping, what hydrophilic monomer was conventional mainly contains acrylamide and acrylic acid etc., and hydrophobic monomer mainly contains acrylamide derivative, long-chain acrylate etc.; The latter mainly passes through water-soluble high-molecular compound modification through macromolecular reaction, introduces hydrophobic functional group.Macromolecular reaction method advantage is directly to make initiation material with commercial polymer, and the product relative molecular mass obtaining is high, and its shortcoming is that reaction is carried out in full-bodied polymer solution, and reactant is not easy to mix.Hydroxyethyl cellulose (HEC) can be reacted with the hydrophobic compound with reactive group in this way, these hydrophobic compounds can be with the epoxy compound of chain alkyl, halogenated hydrocarbons, carboxylic acid halides, isocyanates etc., also can be at polyglycol (PEG) two termination hydrophobic groupings, but the amount of the general hydrophobic grouping of introducing is all little, because the high dissolubility that can significantly reduce water soluble polymer of content of hydrophobic monomers, and heteroatoms trunk polymer is compared with carbochain polymer, thermal stability is poor.Because when the carbon atom in macromolecular chain is replaced by heteroatomss such as oxygen, sulphur, nitrogen, the bond energy of C-O, C-S, C-N key is lower than C-C key, and polymer thermostable reduces.Therefore be, mainly the multipolymer being obtained by the vinyl monomer polymerization of hydrophilic radical and hydrophobic grouping for the hydrophobic associated water-soluble polymer of tertiary oil production in oil field at present.The conventional hydrophilic monomer of hydrophobic associated polymer that utilizes process for copolymerization to prepare is acrylamide (AM), because acrylamide is suitable for preparing the water-soluble polymers of high molecular, reasonable price.In addition, in order to increase the dissolubility of multipolymer, the anionic monomer that also can add other as acrylic acid (methacrylic acid), vinylsulfonate, 2-methyl-2-acrylamido propane sulfonic acid (AMPS) etc. with cationic monomer as β-dimethyl-aminoethylmethacrylate base trimethyl ammonium chloride, 2-acrylimide base-2-trimethoxysilyl propyl methacrylate ammonium chloride (AMPTAC), diallyldimethylammonium chloride etc.
The architectural feature of hydrophobic associated water-soluble polymer is on the strand of polymkeric substance, to introduce a small amount of hydrophobic grouping.The polar group of hydrophilic segment can form hydrogen bond and show very strong affinity with hydrone.What form hydrophobic associated polymer molecule hydrophobic part is non-polar group, between they and hydrone, only has Van der Waals force, this acting force a little less than than the interaction hydrogen bond between hydrone many, thereby can not effectively replace with hydrone with interaction of hydrogen bond.The hydrophobic grouping of this type of solute molecule in dissolved state is present in water environment, and the approach that hydrophobic group is fled from water environment is that hydrophobic associated polymer molecule associates and forms aggregation together with hydrophobic group at the inner association body that forms of solution.Hydrophobic grouping, due to water insoluble, is close together under the driving of hydrone, also can be understood as conversely the effect that hydrophobic grouping is subject to association force and flocks together.
Because hydrophobic associated water-soluble polymer has unique structure, thereby there is good temperature resistance, anti-salt and the special solution property that is different from general polymerization thing such as anti-shearing.In recent years, the exploitation of hydrophobic associated water-soluble polymer new product, structure investigation, performance study become the emphasis of people's research gradually.The character of twin tail hydrophobic associated water-soluble polymer in solution also should have relation with external factor such as the internal factors such as the concentration of polymkeric substance, structure and composition, molecular weight and temperature, shear rate, solution ion strength, surfactants, is necessary it further to inquire into.
Summary of the invention
The object of the invention is to overcome the shortcoming and defect of above-mentioned prior art, a kind of method of testing of hydrophobic associated polymer apparent viscosity temperature influence is provided, this method of testing can be successfully applied to the test of hydrophobic associated polymer apparent viscosity temperature influence, and test result is accurate, testing procedure is simple, greatly reduces testing cost.
Object of the present invention is achieved through the following technical solutions: a kind of method of testing of hydrophobic associated polymer apparent viscosity temperature influence, comprises the following steps:
(a) first, prepare hydrophobic associated polymer;
(b) then, hydrophobic associated polymer is become to the solution of equal in quality concentration by dissolution with solvents;
(c) get respectively hydrophobic association polymer solution and be placed in different experiment containers;
(d) experiment container is placed in respectively to the water-bath of different temperatures;
(e) under the stirring condition of identical speed, record the apparent viscosity of the hydrophobic association polymer solution under different temperatures by viscosity meter, by analyzing data, thereby show that hydrophobic associated polymer apparent viscosity is subject to the impact of temperature.
Described experiment container is beaker.
Described viscosity is counted the fast rotational viscosimeter of ZNN-D6 type six.
The mass concentration of described hydrophobic associated polymer is respectively 6.0g/L.
Described bath temperature is respectively 25 DEG C, 35 DEG C, 45 DEG C, 55 DEG C, 65 DEG C, 75 DEG C.
In sum, the invention has the beneficial effects as follows: can be successfully applied to the test of hydrophobic associated polymer apparent viscosity temperature influence, and test result is accurate, testing procedure is simple, greatly reduces testing cost.
Brief description of the drawings
?fig. 1 is the apparent viscosity schematic diagram of hydrophobic associated polymer under different temperatures.
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 method of testing of a kind of hydrophobic associated polymer apparent viscosity temperature influence the present invention relates to, comprises the following steps:
(a) first, prepare hydrophobic associated polymer;
(b) then, hydrophobic associated polymer is become to the solution of equal in quality concentration by dissolution with solvents;
(c) get respectively hydrophobic association polymer solution and be placed in different experiment containers;
(d) experiment container is placed in respectively to the water-bath of different temperatures;
(e) under the stirring condition of identical speed, record the apparent viscosity of the hydrophobic association polymer solution under different temperatures by viscosity meter, by analyzing data, thereby show that hydrophobic associated polymer apparent viscosity is subject to the impact of temperature.
Described experiment container is beaker.
Described viscosity is counted the fast rotational viscosimeter of ZNN-D6 type six.
The mass concentration of described hydrophobic associated polymer is respectively 6.0g/L.
Described bath temperature is respectively 25 DEG C, 35 DEG C, 45 DEG C, 55 DEG C, 65 DEG C, 75 DEG C.
The result being recorded by said method as shown in Figure 1, as shown in Figure 1: viscosity of hydrophobic associated polymer solution-temperature relation is different from general polymerization thing solution viscosity-temperature relation.In the time that content of hydrophobic monomers is 2.00% and 1.20%, copolymer solution viscosity slowly raises with the rising of temperature at 25 DEG C~55 DEG C, and 55 DEG C are significantly reduced later; In the time that content of hydrophobic monomers is 0.4%, copolymer solution viscosity raises with temperature at 25 DEG C~35 DEG C and slowly rises, and in the time that temperature is more than 35 DEG C, with the rising of temperature, multipolymer viscosity is on a declining curve.And the apparent viscosity of HPAM solution is with the rising of temperature, decline always.This be because, on the one hand temperature raises and makes the thermal motion aggravation of hydrophobic grouping and hydrone, hydrophobic grouping hydration layer is around destroyed, hydrophobic association effect weakens; Hydrophobic association is the entropy driving process of a heat absorption on the other hand, and temperature raises and is conducive to the hydrophobic association between polymer molecule, makes polymer solution apparent viscosity increase.In the time that temperature is lower and hydrophobic grouping content is higher, under the acting in conjunction at this aspect two, increase temperature and be conducive to intermolecular hydrophobic association, polymer solution apparent viscosity is raise; In the time that temperature is lower and hydrophobic grouping content is very low, the rising of temperature is conducive to aggravate the thermal motion of hydrophobic grouping, and hydrophobic association is weakened, and causes solution apparent viscosity to reduce; And in the time of excess Temperature, hydrophobic association effect is weakened greatly, solution apparent viscosity also correspondingly significantly reduces.And HPAM is not because there is no hydrophobic grouping, thereby its solution does not have the similar phenomenon that above hydrophobic association polymer solution occurs yet.
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 (5)

1. the method for testing of hydrophobic associated polymer apparent viscosity temperature influence, is characterized in that, comprises the following steps:
(a) first, prepare hydrophobic associated polymer;
(b) then, hydrophobic associated polymer is become to the solution of equal in quality concentration by dissolution with solvents;
(c) get respectively hydrophobic association polymer solution and be placed in different experiment containers;
(d) experiment container is placed in respectively to the water-bath of different temperatures;
(e) under the stirring condition of identical speed, record the apparent viscosity of the hydrophobic association polymer solution under different temperatures by viscosity meter, by analyzing data, thereby show that hydrophobic associated polymer apparent viscosity is subject to the impact of temperature.
2. the method for testing of hydrophobic associated polymer apparent viscosity temperature influence according to claim 1, is characterized in that, described experiment container is beaker.
3. the method for testing of hydrophobic associated polymer apparent viscosity temperature influence according to claim 1, is characterized in that, described viscosity is counted the fast rotational viscosimeter of ZNN-D6 type six.
4. the method for testing of hydrophobic associated polymer apparent viscosity temperature influence according to claim 1, is characterized in that, the mass concentration of described hydrophobic associated polymer is respectively 6.0g/L.
5. the method for testing of hydrophobic associated polymer apparent viscosity temperature influence according to claim 1, is characterized in that, described bath temperature is respectively 25 DEG C, 35 DEG C, 45 DEG C, 55 DEG C, 65 DEG C, 75 DEG C.
CN201210481868.9A 2012-11-24 2012-11-24 Method for testing influence of temperature on apparent viscosity of hydrophobic association polymer Pending CN103837443A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109357967A (en) * 2018-10-24 2019-02-19 中国石油大学(华东) A kind of polymer solution apparent viscosity loss method for quantitatively evaluating that oilfield sewage is prepared
CN109357968A (en) * 2018-10-24 2019-02-19 中国石油大学(华东) A kind of polymer solution apparent viscosity stability method for quantitatively evaluating that oilfield sewage is prepared
CN113544233A (en) * 2019-03-05 2021-10-22 罗地亚经营管理公司 Associative polymer suspensions for treating subterranean formations

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109357967A (en) * 2018-10-24 2019-02-19 中国石油大学(华东) A kind of polymer solution apparent viscosity loss method for quantitatively evaluating that oilfield sewage is prepared
CN109357968A (en) * 2018-10-24 2019-02-19 中国石油大学(华东) A kind of polymer solution apparent viscosity stability method for quantitatively evaluating that oilfield sewage is prepared
CN109357967B (en) * 2018-10-24 2019-05-28 中国石油大学(华东) A kind of polymer solution apparent viscosity loss method for quantitatively evaluating that oilfield sewage is prepared
CN113544233A (en) * 2019-03-05 2021-10-22 罗地亚经营管理公司 Associative polymer suspensions for treating subterranean formations

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Application publication date: 20140604