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Desulphurization catalysis improved synergist

A synergist, magnesium sulfide technology, applied in the chemical industry, can solve the problems of power plant economy decline, increase power plant investment, increase operating energy consumption, etc., and achieve the effect of reducing power generation cost, improving desulfurization efficiency, and improving desulfurization rate

Inactive Publication Date: 2017-12-22
胡健
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, when the height of the desulfurization tower is limited and the increased spray layer cannot meet the required liquid-gas ratio, a new desulfurization tower needs to be built, which will increase the investment of the power plant
At the same time, increasing the liquid-gas ratio of the desulfurization system will increase the energy consumption of the system, increase the power consumption rate of the plant, and reduce the economical efficiency of the power plant operation.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0010] Embodiment 1: get benzoic acid 11%, adipic acid 8%, magnesium oxide 12%, magnesium sulfide 9%, calcium carbonate 21%, calcium chloride 22%, manganese sulfate 3%, potassium permanganate 3% by weight percentage %, 4% sodium hypochlorite, 3% polysiloxane, and 4% silicon dioxide, mix and stir evenly to prepare a desulfurization catalytic improvement synergist.

Embodiment 2

[0011] Embodiment 2: get benzoic acid 10%, adipic acid 14%, magnesium oxide 10%, magnesium sulfide 16%, calcium carbonate 20%, calcium chloride 16%, manganese sulfate 2%, potassium permanganate 4% by weight percentage %, 3% of sodium hypochlorite, 2% of polysiloxane, and 3% of silicon dioxide, mixed and stirred uniformly to prepare a synergist for improving desulfurization catalysis.

Embodiment 3

[0012] Embodiment 3: get benzoic acid 15%, adipic acid 6%, magnesium oxide 10%, magnesium sulfide 11%, calcium carbonate 20%, calcium chloride 26%, manganese sulfate 2%, potassium permanganate by weight percentage 2%, 3% sodium hypochlorite, 2% polysiloxane, and 3% silicon dioxide are mixed and stirred uniformly to prepare a synergist for improving desulfurization catalysis.

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PUM

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Abstract

The invention provides a desulphurization catalysis improved synergist. The synergist is prepared from the following raw materials by weight: 10 to 15 parts of benzoic acid, 6-14% of adipic acid, 10-18% of magnesia, 7-16% of magnesium sulfide, 20-26% of calcium carbonate, 20-26% of calcium chloride, 2-5% of manganese sulfate, 2-5% of potassium permanganate, 3-6% of sodium hypochlorite, 2-5% of polysiloxane and 3-6% of silicon dioxide. The synergist provided by the invention can improve desulphurization efficiency, reduce the number of operating circulating slurry pumps and lower a liquid-gas ratio in desulphurization operation, thereby achieving the purposes of energy conservation and reduction in operation cost.

Description

technical field [0001] The invention belongs to the technical field of chemical industry, and in particular relates to a desulfurization catalytic improvement synergist. Background technique [0002] At present, the existing pollutant removal equipment in thermal power plants basically meets the emission standards, but the "Coal Power Energy Conservation and Emission Reduction Upgrading and Transformation Action Plan (2014-2020)" puts forward higher requirements for "ultra-clean" emissions, so the use of existing The coordinated removal of multiple pollutants by flue gas treatment equipment has good timeliness and economy. In order to meet the increasingly stringent environmental protection requirements, most power plants increase the number of desulfurization tower spray layers to increase the liquid-gas ratio of the desulfurization tower, thereby improving the desulfurization efficiency. But when the height of the desulfurization tower is limited, if the increased spray l...

Claims

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Application Information

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IPC IPC(8): B01D53/80B01D53/50B01J31/32
CPCB01D53/502B01D53/80B01D2251/404B01D2258/0283B01J31/32
Inventor 胡健
Owner 胡健
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