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A kind of novel rgo/mxene composite film and preparation method thereof

A composite membrane and industrial wastewater technology, applied in the field of materials, can solve the problems of increased separation cost, increased risk of RGO falling off, acid and alkali resistance, etc., and achieve the effect of improving hydrophilicity and retention rate

Active Publication Date: 2021-07-20
CHENGDU QINHUAN TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] However, the above-mentioned process has the following disadvantages: ① directly filter the reduced graphene oxide (RGO) on the surface of the membrane, it is impossible to determine whether the membrane stack is uniform, and the change of the interlayer distance between RGO and GO cannot be quantitatively judged through characterization or theoretical calculation. Realize the precise construction and directional regulation of the membrane
② With the expansion of the interlayer spacing after dopamine modification, the risk of RGO detachment on the support layer CA membrane is increased, so the mechanical properties of the final PDA-RGO composite membrane will be reduced
In the actual process, the membrane will be repeatedly impacted by the liquid to be separated, resulting in the destruction of the final membrane structure, shortening the service life of the membrane, and increasing the separation cost
③The cellulose acetate membrane (CA) material itself is not resistant to acid and alkali, and its mechanical properties are also poor. Therefore, the PDA-RGO composite membrane constructed with the cellulose acetate (CA) membrane as the support layer is suitable for high acid-base, high temperature or high-salt wastewater processing, basically has no practical application value
This technology shows that the most suitable MXene content is 0.2g, which obviously leads to too thick MXene separation layer, and it is impossible to determine the separation mechanism of MXene for the separation of pollutant molecules in water
③The functional groups on the surface of MXene itself are relatively simple, and the performance of the pure MXene / PES composite membrane needs to be further improved. For example, the rejection rate of the composite membrane for salt ions is very low, only about 10%, so it is necessary to micro-control the MXene

Method used

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  • A kind of novel rgo/mxene composite film and preparation method thereof
  • A kind of novel rgo/mxene composite film and preparation method thereof
  • A kind of novel rgo/mxene composite film and preparation method thereof

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Embodiment 1

[0040] A novel RGO / MXene composite membrane:

[0041] (1) Preparation of MXene homogeneous solution: MXene two-dimensional materials were prepared by etching the MAX phase with LiF+HCl mixed reagent and ultrasonically assisted exfoliation, as follows: 1g Ti 3 AlC 2 and 1g of LiF powder were added to 10ml of HCl solution (mole fraction 9M), magnetically stirred at 35°C for 24h, and then the product was centrifuged and washed with deionized water at 3500rpm for several times until the pH of the solution supernatant was 6; The precipitate was shaken vigorously for 10 min, and centrifuged at 3500 rpm for 1 h to obtain a homogeneous MXene solution;

[0042] (2) Preparation of RGO: Dopamine is used to reduce and modify GO to prepare RGO, which expands the layer spacing of the material and provides more adsorption sites. Take 400mg and add it to the beaker; add 200ml of deionized water, and at the same time use an ultrasonic cleaner to ultrasonically disperse for 0.5h, so that GO i...

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Abstract

The invention discloses a new type of RGO / MXene composite film and its preparation method. RGO is prepared by reducing GO with DA; MAX is stripped by a mixed solution of LiF and HCl to obtain a two-dimensional MXene material with a clear lamellar structure. ; The MXene dispersion solution and the RGO dispersion solution were mixed ultrasonically, and the RGO / MXene composite membrane was constructed on the PVDF membrane substrate by vacuum filtration, which was used for the treatment of industrial wastewater. The invention explores the synergistic film-forming mechanism and separation mechanism of RGO and MXene in detail, and provides some references for further broadening the application range of MXene, developing and constructing more new high-performance membrane materials. From the perspective of improving the structure of the membrane material itself, the treatment efficiency and recyclability of the membrane are improved, and finally the realistic goal of reducing the cost of industrial wastewater treatment is achieved.

Description

technical field [0001] The invention relates to the field of material technology, in particular to a preparation method of a novel RGO / MXene composite membrane and a novel RGO / MXene composite membrane prepared by the method. Background technique [0002] Industrial wastewater refers to the wastewater and waste liquid produced in the process of industrial production. Its pollutants are various and complex (common such as oil, dyes, heavy metals and microorganisms, etc.). If they are not treated effectively before discharge, the surrounding ecological environment will and human health constitute a huge threat. Membrane separation technology has the characteristics of high separation efficiency and environmental friendliness. It has been widely used in industrial wastewater treatment and other fields, and has the reputation of "21st century water treatment technology". Membrane material is the key to membrane separation technology and the core component of membrane technology ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01D71/82B01D69/12B01D69/02B01D67/00C02F1/44C02F101/38
CPCB01D67/0079B01D69/02B01D69/12B01D71/82B01D2325/24C02F1/44C02F2101/40
Inventor 曾广勇严钧杨登磊曾向东魏柯何双江詹迎青张俊万昕艺杨强斌
Owner CHENGDU QINHUAN TECH CO LTD
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