Method for improving adsorption selectivity of sodium polyacrylat oil dewatering material

A selective adsorption and oil technology, applied in chemical instruments and methods, alkali metal oxides/hydroxides, inorganic chemistry, etc., can solve the problems of easy blockage of adsorption pores, short service life, difficulty in balancing dehydration efficiency and selectivity, etc. problems, to achieve the effect of increasing the adsorption rate and achieving balance control

Inactive Publication Date: 2013-11-06
CHONGQING TECH & BUSINESS UNIV
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Problems solved by technology

[0006] In order to overcome the problems of low oil-water selective adsorption performance, easy blockage of adsorption pores and short service life caused by the oil-water amphiphilic properties of organic polymer adsorption materials, especially when other solutions are difficult to work, and it is difficult to balance dehydration efficiency and selectivity, The inve

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  • Method for improving adsorption selectivity of sodium polyacrylat oil dewatering material
  • Method for improving adsorption selectivity of sodium polyacrylat oil dewatering material
  • Method for improving adsorption selectivity of sodium polyacrylat oil dewatering material

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Embodiment Construction

[0017] Specific implementation according to the appended figure 1 Follow the steps shown:

[0018] 1. Preparation steps of a series of adsorbent materials: add 60mL cyclohexane and 2mL cetyl alcohol phosphate into 6 flasks respectively, and pass nitrogen gas to drive out the oxygen in the bottles, and raise the temperature to 60°C to dissolve them. At the same time, 7.5g of acrylic acid was placed in 6 conical flasks, neutralized with a 41% NaOH solution to the acrylic acid monomer weight under cooling conditions, and 0.6% of the acrylic acid monomer weight was added to the conical flasks. Potassium sulfate is used as an initiator, and then respectively continue to add N, N'-methylenebisacrylamide with a weight of 0.04%, 0.06%, 0.08%, 0.09%, 0.10%, and 0.12% of acrylic acid monomers as a crosslinking agent, blowing Enter nitrogen, pour the mixed solution into the dropping funnel, drop the mixed monomer in the dropping funnel into the flask at a speed of 1-2dr / s, and then reac...

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Abstract

The invention belongs to a method for improving oil-water adsorption selectivity of an oil adsorbing separating purifying dewatering material sodium polyacrylat. The method mainly consists of the following steps: (1) taking N, N'-Methylenebisacrylamide as a cross-linking agent, potassium persulphate as an initiator and cyclohexane as a continuous phase, adjusting the amount of the cross-linking agent, and employing inverse suspension polymerization to prepare a series of sodium polyacrylat dewatering resin materials; (2) respectively determining dewatering performance and oil-water adsorption selectivity of a series of the sodium polyacrylat dewatering resin materials; and (3) according to the performance data of a series of the sodium polyacrylat dewatering resin materials, drafting a curve map to determine optimum balance control amount of the cross-linking agent, and adopting the optimum balance control amount of the cross-linking agent to prepare an adsorptive resin material with high dewatering performance and high adsorption selectivity.

Description

technical field [0001] The invention belongs to the field of organic polymer materials and oil purification and separation, and its technical content relates to a method for improving the oil-water selective adsorption performance of sodium polyacrylate adsorption resin, an oil-liquid adsorption, separation, purification and dehydration material, especially the use of original technical means to improve the oil-water adsorption material Choose the method of adsorption capacity and service life. Background technique [0002] The development and application of adsorption separation materials is the core of oil purification technology based on adsorption. Sodium polyacrylate adsorption resin material is a new type of oil dehydration purification material. However, the oil-water amphiphilic properties of most resin materials will lead to competitive adsorption of oil-water molecules on the material interface, causing a large number of oil molecules to enter the adsorption pores...

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Application Information

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IPC IPC(8): C08F120/06C08F2/32B01J20/30B01J20/26B01J20/28
Inventor 吴云张贤明陈彬
Owner CHONGQING TECH & BUSINESS UNIV
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