A method and application of using industrial solid waste to prepare desulfurization adsorbent

An industrial solid waste and adsorbent technology, applied in the field of adsorbent materials, can solve the problems of reducing the production cost of desulfurization adsorbents, pollute environmental resources, waste, etc., and achieve the effects of low preparation cost, good effect, and increased economic benefits

Active Publication Date: 2019-11-15
柳晶(长春)环保科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The purpose of the present invention is to provide a method for preparing desulfurization adsorbent by using industrial solid waste. The prepared desulfurization adsorbent is easy to use and can be reused; since industrial solid waste is added to the raw materials for preparation, the production of desulfurization adsorbent is significantly reduced. low cost, and solve the problems of industrial solid waste polluting the environment and causing waste of resources

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] A method for preparing a desulfurization adsorbent by utilizing industrial solid waste, comprising the steps of:

[0035] (1) Preparation of a solution:

[0036] Add industrial steel scrap slag into the pulverizer for pulverization, and the particle size after pulverization is 100 mesh; take 100 parts of pulverized steel slag powder and add it to the reactor, and drop 55 parts of 20% hydrochloric acid solution into the reactor, and wait for After the reaction is complete, the solution is filtered to remove insoluble impurities, and the filtrate is added with 60 parts of distilled water, 30 parts of ZnCl 2 ·6H 2 O after stirring evenly, a solution was obtained.

[0037] (2) Preparation of b solution: After cleaning the industrial waste glass, put it into a pulverizer for pulverization, the particle size after pulverization is 50 mesh; take 150 parts of pulverized powder and add it into the reactor, and add 70 parts of The sodium hydroxide solution with a mass fraction...

Embodiment 2

[0042] A method for preparing a desulfurization adsorbent by utilizing industrial solid waste, comprising the steps of:

[0043] (1) Preparation of a solution:

[0044] Add industrial scrap steel slag into the pulverizer for pulverization, and the particle size after pulverization is 140 mesh; take 115 parts of pulverized steel slag powder and add it to the reactor, and add 70 parts of 18% hydrochloric acid solution dropwise to the reactor, and wait for After the reaction is complete, the solution is filtered to remove insoluble impurities, and the filtrate is added to 54 parts of distilled water, 33 parts of ZnCl 2 ·6H 2 O after stirring evenly, a solution was obtained.

[0045] (2) Preparation of b solution: After cleaning the industrial waste glass, put it into a pulverizer for pulverization, the particle size after pulverization is 80 mesh; take 133 parts of pulverized powder and add it into the reactor, and add 85 parts of Sodium hydroxide solution with a mass fraction...

Embodiment 3

[0050] A method for preparing a desulfurization adsorbent by utilizing industrial solid waste, comprising the steps of:

[0051] (1) Preparation of a solution:

[0052] Add industrial scrap steel slag into the pulverizer for pulverization, and the particle size after pulverization is 170 mesh; Get 108 parts of pulverized steel slag powder and add it to the reactor, add 80 parts of 14% hydrochloric acid solution dropwise in the reactor, wait After the reaction is complete, the solution is filtered to remove insoluble impurities, and the filtrate is added with 40 parts of distilled water, 40 parts of ZnCl 2 ·6H 2 O after stirring evenly, a solution was obtained.

[0053] (2) Preparation of b solution: After cleaning the industrial waste glass, put it into a pulverizer for pulverization, the particle size after pulverization is 75 mesh; take 127 parts of pulverized powder and add it into the reactor, and add 100 parts of Sodium hydroxide solution with a mass fraction of 43% wa...

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Abstract

The invention discloses a method for preparing a desulfurization adsorbent from industrial solid wastes. The method comprises the following steps: adding a solution a into a reaction kettle, adding aNi(NO3)2 solution, performing stirring, adding an adsorbent carrier into the reaction kettle, heating the reaction kettle, and performing a reaction; dropwise adding a sodium bicarbonate solution intothe reaction kettle by a constant pressure burette, increasing the rotating speed, continuing stirring, and stopping the stirring to obtain a mixed solution a; weighing excess anhydrous Na2CO3, pouring the anhydrous Na2CO3 into the mixed solution a, dropwise adding a solution b into the reaction kettle by the constant pressure burette, continuing stirring after the dropwise addition is completed,and stopping the stirring to obtain a mixed solution b; performing suction filtration on the mixed solution b, and washing a filter cake with deionized water in the suction filtration process until the obtained filtrate is neutral; and taking the filter cake, drying and calcining the filter cake, and cooling the filter cake to room temperature to obtain the desulfurization adsorbent. The industrial solid wastes used in the invention enhance the strength and the wear resistance of the desulfurization adsorbent, and makes the desulfurization adsorbent have a large specific surface area, have good selectivity to sulfur and have a good adsorption effect.

Description

technical field [0001] The invention belongs to the technical field of adsorption materials, and in particular relates to a method for preparing a desulfurization adsorbent by utilizing industrial solid waste, and an application of the prepared desulfurization adsorbent. Background technique [0002] As people pay more and more attention to environmental protection, environmental regulations are becoming stricter, and reducing the sulfur content of gasoline and diesel is considered to be one of the most important measures to improve air quality, because sulfur in fuel will affect the performance of automotive catalytic converters produce adverse effects. Sulfur oxides present in automobile engine exhaust can inhibit and irreversibly poison precious metal catalysts in converters. Exhaust gases from inefficient or poisoned converters contain unburned non-methane hydrocarbons and oxides of nitrogen and carbon monoxide, which are catalyzed by sunlight to form photochemical smog...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J20/10B01J20/28B01J20/30B01D15/08B01D53/04
CPCB01D15/08B01D53/04B01D2257/30B01J20/10B01J20/103B01J20/28004B01J20/28016
Inventor 任文强
Owner 柳晶(长春)环保科技有限公司
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