Nanocellulose-compound nanofiltration membrane (CNF-NF) and production method thereof

A composite nanofiltration membrane and nanocellulose technology is applied in the field of nanocellulose-composite nanofiltration membrane (CNF-NF) and its preparation. The effect of adhesion and stability improvement

Active Publication Date: 2019-08-20
深圳市爱玛特科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the nanofiltration membrane prepared by traditional organic membrane materials has excellent mechanical properties and selectivity, there are also disadvantages: most organic matter is obtained from fossil resources through a series of reactions, and the increasing shortage of resources will inevitably restrict the development of membranes; There will be certain environmental problems in the process of membrane production and the treatment stage of the life cycle of polymers, such as the difficulty of degrading waste membrane materials, etc.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] A nanocellulose-composite nanofiltration membrane (CNF-NF), comprising a bottom membrane, a main support layer, and a separation skin layer arranged in sequence with decreasing pore sizes, and the main support layer is provided with carboxymethyl with a mass ratio of 1:15 A dopamine adhesive composed of sodium cellulose base and methacrylamide dopamine; wherein, the bottom film is a polyacrylonitrile film, the thickness of the polyacrylonitrile film is 90 μm, and the pore size of the polyacrylonitrile film is 40 nm; the main support layer is fiber In the plain nanocrystal layer, the diameter of the cellulose nanocrystal is 20nm, the length is 400nm, and the aperture is 45nm; the separation cortex is a polyamide layer; the thickness of the polyamide layer is 9nm, and the aperture is 25nm.

[0034] A preparation method of nanocellulose-composite nanofiltration membrane (CNF-NF), comprising the following steps:

[0035] (1) To prepare polyacrylonitrile membrane, dissolve p...

Embodiment 2

[0037]A nanocellulose-composite nanofiltration membrane (CNF-NF), comprising a polyacrylonitrile membrane with decreasing pore size, a cellulose nanocrystal layer and a polyamide layer; and a polyvinyl alcohol adhesive is provided on the cellulose nanocrystal layer , the polyvinyl alcohol adhesive is composed of polyvinyl alcohol and tea polyphenols with a mass ratio of 5:1; among them, the thickness of the polyacrylonitrile film is 110 μm, and the pore diameter is 50 nm; the diameter of the cellulose nanocrystal is 30 nm, and the length is 500nm, the pore diameter is 55nm; the thickness of the polyamide layer is 11nm, the pore diameter is 31nm.

[0038] A preparation method of nanocellulose-composite nanofiltration membrane (CNF-NF), comprising the following steps:

[0039] Referring to Example 1, (1) To prepare a polyacrylonitrile membrane, dissolve polyacrylonitrile with N,N-dimethylformamide, stir in a constant temperature water bath, filter, and stand for defoaming to obt...

Embodiment 3

[0041] A nanocellulose-composite nanofiltration membrane (CNF-NF), comprising a polyacrylonitrile membrane, a cellulose nanocrystal layer and a polyamide layer; and the cellulose nanocrystal layer is provided with a polyvinyl alcohol adhesive, polyethylene The alcohol binder is composed of polyvinyl alcohol and tea polyphenols with a mass ratio of 15:1; among them, the polyacrylonitrile membrane has a thickness of 110 μm and a pore size of 50 nm; a cellulose nanocrystal has a diameter of 30 nm, a length of 500 nm, and a pore size of is 55nm; the thickness of the polyamide layer is 11nm, and the pore size is 31nm.

[0042] A preparation method of nanocellulose-composite nanofiltration membrane (CNF-NF), comprising the following steps:

[0043] Referring to Example 1, (1) To prepare a polyacrylonitrile membrane, dissolve polyacrylonitrile with N,N-dimethylformamide, stir in a constant temperature water bath, filter, and stand for defoaming to obtain a polyacrylonitrile film with...

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Abstract

The invention relates to the field of polymeric separation membrane, in particular to nanocellulose-compound nanofiltration membrane (CNF-NF). The nanocellulose-compound nanofiltration membrane (CNF-NF) comprises base membrane, a main supporting layer and a separation skin layer which are sequentially arranged, wherein pore diameters of the base membrane, the main supporting layer and the separation skin layer decrease progressively; a water-based binder located between the base membrane and the main supporting layer is arranged on the main supporting layer; and the base membrane, the main supporting layer and the separation skin layer are polyacrylonitrile membrane, a cellulose nanocrystalline layer and a polyamide layer respectively. The nanocellulose-compound nanofiltration membrane (CNF-NF) is of a multi-layer compound structure, wherein cellulose nanocrystalline is a one-dimensional nanometer material, and has good hydrophilicity, mechanical strength and resistance to swelling; byintroducing the cellulose nanocrystalline middle layer, physical support can be provided for the skin layer; and a production process of the nanofiltration membrane is simple to operate and mild in reaction condition, and the nanofiltration membrane has a good industrial production basis and wide application prospects.

Description

technical field [0001] The invention relates to the field of polymer separation membranes, in particular to a nanocellulose-composite nanofiltration membrane (CNF-NF) and a preparation method thereof. Background technique [0002] The nanofiltration membrane is a new type of separation membrane with a pore size between the reverse osmosis membrane and the ultrafiltration membrane. It still has a high desalination rate. Compared with ultrafiltration and reverse osmosis, nanofiltration is selective for the interception of inorganic salts. Its rejection rate for monovalent salts is relatively low, and its rejection rate for divalent or multivalent salts is relatively high, usually higher than 90%. , so nanofiltration membranes can be used to separate salt ions of different valence states. In addition, the relative molecular weight cut-off of the nanofiltration membrane is between 200 and 1000 Da, so it has a good cut-off effect on small molecular organic substances with a mol...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01D71/42B01D69/12B01D69/02B01D67/00B01D61/02
CPCB01D71/42B01D71/10B01D69/12B01D69/02B01D67/0002B01D61/027B01D2323/39B01D2325/36B01D2325/48Y02A20/131
Inventor 李文国
Owner 深圳市爱玛特科技有限公司
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