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Novel powder cationic polymer for preventing clay from hydration swelling

A cationic polymer, hydration expansion technology, applied in the direction of drilling compositions, chemical instruments and methods, etc., can solve the problems of molecular weight drop, low heat exchange efficiency, unfavorable energy saving, etc., to reduce washing, increase packaging and transportation cost effect

Inactive Publication Date: 2015-05-27
JINGZHOU TIANHE SCI TECH CHEM IND
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This drying method has low dehydration strength, long material residence time, uneven granulation during granulation, and very inconsistent feeding speed in the rotary drum, resulting in uneven drying of the product, resulting in poor water solubility and a significant drop in molecular weight, thus affecting product quality. influences
Moreover, the heat exchange efficiency of this kind of drying equipment is low, and the energy consumption is huge, which is not conducive to energy saving.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025]In a 2000L reactor with mechanical stirring, a thermometer, a condenser, and a nitrogen device, 1340 kilograms of deionized water was dropped, 225 kilograms of acrylamide was added, and stirred until completely dissolved; then dimethyl diallyl ammonium chloride ( The mass fraction is 60% aqueous solution) 62 kg, stir until it dissolves evenly; then add 60 kg of methacryloxyethyltrimethylammonium chloride (75% aqueous solution), stir until it dissolves evenly. Slowly add 15% sodium carbonate solution dropwise, adjust the pH value of the reaction solution to 7.1, evacuate for 20 minutes, pressurize nitrogen, continue to pass nitrogen for 30 minutes, while slowly raising the temperature and maintaining the temperature at 47 ° C, add 15% ammonium persulfate aqueous solution 8 After stirring for 10 minutes, add 4.5 kilograms of 15% sodium bisulfite aqueous solution. React for 2 hours to obtain the cationic polymer aqueous solution. The above materials are transferred to micro...

Embodiment 2

[0028] In a 2000L reactor with mechanical stirring, a thermometer, a condenser, and a nitrogen device, 1180 kilograms of deionized water and 205 kilograms of acrylamide were added and stirred until completely dissolved; then dimethyl diallyl ammonium chloride ( The mass fraction is 60% aqueous solution) 68 kg, stir until it dissolves evenly; then add 40 kg of methacryloyloxyethyltrimethylammonium chloride (75% aqueous solution), stir until it dissolves evenly. Slowly add 15% sodium carbonate solution dropwise, adjust the pH value of the reaction solution to 7.8, evacuate for 20 minutes, pressurize the nitrogen gas, continue to pass the nitrogen gas for 30 minutes, while slowly raising the temperature and maintaining the temperature at 55 °C, add 15% ammonium persulfate aqueous solution for 10 After stirring for 10 minutes, add 5.5 kilograms of 15% sodium bisulfite aqueous solution. React for 3 hours to obtain the cationic polymer aqueous solution. The above materials are trans...

Embodiment 3

[0031] In a 2000L reactor with mechanical stirring, a thermometer, a condenser, and a nitrogen device, 1500 kilograms of deionized water and 185 kilograms of acrylamide were added and stirred until completely dissolved; then dimethyl diallyl ammonium chloride ( The mass fraction is 60% aqueous solution) 55 kg, stir until it is uniformly dissolved; then add 35 kg of methacryloxyethyltrimethylammonium chloride (75% aqueous solution), and stir until it is uniformly dissolved. Slowly add 15% sodium carbonate solution dropwise, adjust the pH value of the reaction solution to 8.8, evacuate for 20 minutes, pressurize nitrogen, continue to pass nitrogen for 30 minutes, while slowly raising the temperature and maintaining the temperature at 52°C, add 15% ammonium persulfate aqueous solution 10 kg; after stirring for 10 minutes, add 5.5 kg of 15% sodium bisulfite aqueous solution. React for 2 hours to obtain the cationic polymer aqueous solution. The above materials are transferred to m...

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PUM

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Abstract

The invention relates to a novel powder cationic polymer for preventing clay from hydration swelling, and belongs to the technical field of clay hydration swelling prevention in oil-gas field development. The novel powder cationic polymer is prepared from acrylamide, dimethyl diallyl ammonium chloride and methyl acrylyl ethyl trimethyl ammonium chloride as raw materials, and an ammonium persulfate and sodium hydrogen sulfite redox initiation system is adopted to prepare a novel powder cationic polymer solution for preventing clay from hydration swelling through polymerization of solution free radicals, and the cationic polymer solution is further transferred into micro drying equipment to be dried, and is successively further prepared into crude powder and fine powder, thereby obtaining the powder cationic polymer. By adopting the novel powder cationic polymer, a great amount of expensive, combustible or even toxic solvents are not used, separation equipment is not needed, and the problems that to maintain the flowability of a polymer solution, a conventional solution cationic polymer is relatively low in effective concentration, the package and transportation cost can be increased, a raw material holding space is large and the cationic polymer is inadaptive to the space of an ocean marine petroleum exploitation working platform can be solved.

Description

technical field [0001] The invention relates to a novel powdery cationic polymer for preventing clay hydration expansion, which belongs to the technical field of preventing clay hydration expansion during oil and gas field development. Background technique [0002] The hydration expansion of clay minerals can be divided into the following two stages: one is the surface hydration expansion stage: since the silicon-oxygen bonds and hydrogen-oxygen bonds on the surface of the clay crystal surface are polar, they can adsorb polar water molecules. It is the hydration energy of the clay surface that plays a major role. The second is the osmotic hydration expansion stage: a hydration film is formed on the surface of the clay particles, and the distance between clay lattice layers increases, causing swelling and even dispersion. The effect of surface hydration energy on hydration is greatly weakened, and the surface hydration is also over. When the clay is in a low-salinity aqueous...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08F220/56C08F226/02C08F220/34C08F2/10C09K8/035
Inventor 肖稳发倪航夏长林彭一兵黄立
Owner JINGZHOU TIANHE SCI TECH CHEM IND
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