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a ni 2 Preparation method and application of p/nico-ldh composite photocatalytic material

A composite photocatalysis and reaction technology, applied in metal/metal oxide/metal hydroxide catalysts, chemical instruments and methods, physical/chemical process catalysts, etc., to achieve the effect of simple and convenient preparation process and excellent degradation effect

Active Publication Date: 2022-01-11
JIANGSU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Is it possible to construct a kind of Ni 2 P-LDH composite materials are used for photocatalytic removal of tetracycline antibiotic pollution in the environment, and there are no related studies and reports.

Method used

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  • a ni  <sub>2</sub> Preparation method and application of p/nico-ldh composite photocatalytic material
  • a ni  <sub>2</sub> Preparation method and application of p/nico-ldh composite photocatalytic material
  • a ni  <sub>2</sub> Preparation method and application of p/nico-ldh composite photocatalytic material

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] (1) Ni 2 Preparation of P precursor: Dissolve 0.72 g of nickel nitrate hexahydrate in 108 mL of deionized water, add dropwise 75 mL of 0.5 mol / L dilute ammonia solution, stir in a water bath at 70 °C for 10 h, centrifuge to separate the precipitate, and deionized water , ethanol, and dried at 90°C for later use;

[0030] (2) Ni 2 P preparation: 0.199 g sodium hypophosphite and 0.03 g Ni prepared in step (1) 2 The P precursor was thoroughly ground and mixed, reacted in a tube furnace under the protection of Ar, and was calcined at 300 °C for 5 h to obtain a black solid powder, which was washed and vacuum-dried at 70 °C to obtain Ni 2 P material, the Ni 2 Material P was added to water to disperse into Ni with a concentration of 1 mg / mL 2 P mixture, spare;

[0031] (3) Ni 2 Preparation of P / NiCo-LDH composite photocatalytic material: Dissolve 0.90 mmol nickel nitrate hexahydrate, 0.60 mmol cobalt nitrate hexahydrate, and 8.0 mmol ammonium chloride in 40 mL deionized ...

Embodiment 2

[0035] (1) Ni 2 P precursor: Dissolve 0.72 g nickel nitrate hexahydrate in 72 mL deionized water, add dropwise 75.mL 0.5mol / L dilute ammonia solution, stir in a water bath at 90 °C for 12 h, centrifuge to separate the solid, deionized water, Wash with ethanol and dry at 60°C for later use;

[0036] (2) Ni 2 P preparation: 0.199 g sodium hypophosphite and 0.03 g Ni prepared in step (1) 2 The P precursor is fully ground and mixed, and the N 2 The reaction was carried out in a tube furnace under protection, the heating rate was 2 ℃ / min, and after calcination at 300 ℃ for 5 h, a black solid powder was obtained, which was washed and vacuum-dried at 60 ℃ to obtain Ni 2 P material, the Ni 2 Material P was added to water to disperse into Ni with a concentration of 1 mg / mL 2 P mixture, spare;

[0037] (3) Ni 2 Preparation of P / NiCo-LDH composite photocatalytic material: Dissolve 0.90 mmol nickel nitrate hexahydrate, 0.90 mmol cobalt nitrate hexahydrate, and 8.0 mmol ammonium chl...

Embodiment 3

[0041] (1) Ni 2 P precursor: Dissolve 0.72 g of nickel nitrate hexahydrate in 100 mL of deionized water, add dropwise 75 mL of 0.5 mol / L dilute ammonia solution, stir in a water bath at 80 °C for 12 h, centrifuge to separate the solid, deionized water, ethanol Wash and dry at 60°C for later use;

[0042] (2) Ni 2 P preparation: 0.199 g sodium hypophosphite and 0.03 g Ni prepared in step (1) 2 The P precursor is fully ground and mixed, and the N 2 Reaction in a tube furnace under protection, black solid powder was obtained after calcination at 300 °C for 5 h, washed and vacuum dried at 60 °C to obtain Ni 2 P material, the Ni 2 Material P was added to water to disperse into Ni with a concentration of 1 mg / mL 2 P mixture, spare;

[0043] (3) Ni 2 Preparation of P / NiCo-LDH composite photocatalytic material: Dissolve 0.90 mmol nickel nitrate hexahydrate, 0.60 mmol cobalt nitrate hexahydrate, and 8.0 mmol ammonium chloride in 40 mL deionized water, stir, and then dropwise add...

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Abstract

The invention belongs to the field of environmental materials, in particular to a Ni 2 Preparation method and application of P / NiCo‑LDH composite photocatalytic material. The present invention uses transition metal nickel phosphide as a cocatalyst that can replace noble metals to carry out loading modification on NiCo-LDH, and Ni is added in the process of synthesizing NiCo-LDH at low temperature 2 P mixture, through in-situ growth, makes Ni 2 P loading to get Ni on NiCo‑LDH 2 P / NiCo‑LDH composite photocatalytic material. The preparation process of the composite photocatalytic material prepared by the invention is simple and convenient, and compared with the pure NiCo-LDH catalytic material, it has a better degradation effect on tetracycline in the simulated degradation process.

Description

technical field [0001] The invention belongs to the field of environmental materials, in particular to a Ni 2 Preparation method and application of P / NiCo-LDH composite photocatalytic material. Background technique [0002] Layered double hydroxides (LDH) is a kind of layered compound composed of positively charged brucite layer structure and negatively charged anions filled between the layers, called layered double metal hydrogen Oxide, also known as hydrotalcite. Due to the adjustability of metal elements and anions in LDH materials, LDH materials with different physical and chemical properties can be regulated by changing metal ions and anions. LDH materials have good adsorption, specific surface area and abundant peak groups on the surface, and are often used as carrier materials and adsorption materials. [0003] The modification of noble metals or rare earth metals generally shows good catalytic performance and stability, but due to the price and content of noble me...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J27/185B01J23/755C02F1/30C02F101/38C02F101/34
CPCB01J27/1853B01J23/755B01J23/007C02F1/30C02F2101/38C02F2101/34C02F2305/10B01J35/19B01J35/39
Inventor 汪涛刘锡清孙宇轩马长畅闫永胜霍鹏伟
Owner JIANGSU UNIV