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Production technology for preparing calcium oxide and sulfur dioxide through utilizing desulfurized gypsum

A desulfurization gypsum, sulfur dioxide technology, applied in the direction of calcium/strontium/barium oxides/hydroxides, sulfur compounds, chemical instruments and methods, etc., can solve the problem of large particle size of phosphogypsum and carbon particles, insufficient contact of reactants, Affect the utilization rate of sulfur dioxide and other issues, and achieve the effect of reducing mining, saving carbon consumption, and reducing energy consumption

Active Publication Date: 2014-01-01
NANJING UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Phosphogypsum CaSO 4 The content is low and also contains P 2 o 5 , F - and other harmful ingredients, which will affect product quality and cause corrosion to equipment
[0006] 2. Using coal gas or natural gas to burn and heat, the concentration of carbon dioxide produced is relatively high. According to the principle of chemical balance, carbon dioxide will inhibit the formation of the main product calcium oxide, and the output is low
In addition, due to the inclusion of air, it will not only increase the consumption of carbon, but also inevitably produce NO when the temperature is above 1000 °C x Harmful gases such as sulfur dioxide will affect the utilization rate of sulfur dioxide. If not handled properly, it will also cause air pollution
[0007] 3. The particle size of the phosphogypsum and carbon used is too large, and the reactants cannot be fully contacted, resulting in a long reaction time and incomplete reaction

Method used

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  • Production technology for preparing calcium oxide and sulfur dioxide through utilizing desulfurized gypsum
  • Production technology for preparing calcium oxide and sulfur dioxide through utilizing desulfurized gypsum
  • Production technology for preparing calcium oxide and sulfur dioxide through utilizing desulfurized gypsum

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0037] 1. The raw material composition of desulfurization gypsum (excluding free water and crystal water) is shown in Table 1-1:

[0038] Table 1-1 Composition analysis of desulfurized gypsum

[0039] name SO 3 CaO SiO 2 al 2 o 3 Fe 2 o 3 MgO K 2 o TiO 2 SROs content% 55.9 40.1 2.12 1.23 0.29 0.18 0.073 0.035 0.018

[0040] Note: Data errors are within the allowable range.

[0041] According to the composition analysis results, it can be known that the SO in desulfurized gypsum 3 content and CaO content is higher. Referring to the national standard for gypsum and anhydrite (GB / T5483-1996), gypsum is divided into three grades according to its grade, grade one: CaSO in gypsum 4 Mass fraction ≥ 80%, CaSO is required for secondary and tertiary 4 The quality fractions were 70% and 60%, respectively. CaSO in the desulfurization gypsum sample after removal of crystal water in the test 4 The composition is as high as 96%, ...

Embodiment 2

[0053] 1. The raw material composition of desulfurization gypsum (excluding free water and crystal water) is shown in Table 2-1:

[0054] Table 2-1 Composition analysis of desulfurized gypsum

[0055] name SO 3 CaO SiO 2 Al 2 o 3 Fe 2 o 3 MgO K 2 o TiO 2 SROs content% 53.8 38.0 3.12 2.23 1.29 1.18 0.10 0.235 0.045

[0056] Note: Data errors are within the allowable range.

[0057] According to the composition analysis results, it can be known that the SO in desulfurized gypsum 3 content and CaO content is higher. Referring to the national standard for gypsum and anhydrite (GB / T5483-1996), gypsum is divided into three grades according to its grade, grade one: CaSO in gypsum 4 Mass fraction ≥ 80%, CaSO is required for secondary and tertiary 4 The quality fractions were 70% and 60%, respectively. CaSO in the desulfurization gypsum sample after removal of crystal water in the test 4 The composition is as high as 91.8%,...

Embodiment 3

[0069] 1. The raw material composition of desulfurization gypsum (excluding free water and crystal water) is shown in Table 3-1:

[0070] Table 3-1 Composition analysis of desulfurized gypsum

[0071] name SO 3 CaO SiO 2 Al 2 o 3 Fe 2 o 3 MgO K 2 o TiO 2 SROs content% 56.8 40.5 1.98 0.20 0.23 0.18 0.072 0.028 0.010

[0072] Note: Data errors are within the allowable range.

[0073] According to the composition analysis results, it can be known that the SO in desulfurized gypsum 3 content and CaO content is higher. Referring to the national standard for gypsum and anhydrite (GB / T5483-1996), gypsum is divided into three grades according to its grade, grade one: CaSO in gypsum 4 Mass fraction ≥ 80%, CaSO is required for secondary and tertiary 4 The quality fractions were 70% and 60%, respectively. CaSO in the desulfurization gypsum sample after removal of crystal water in the test 4 The composition is as high as 97.3%...

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Abstract

The invention discloses a production technology for preparing calcium oxide and sulfur dioxide through utilizing desulfurized gypsum. The technology comprises the following steps: drying desulfurized gypsum at 230-300DEG C for 0.5-1.5h, wherein drying pretreatment is carried out at 40-50DEG C for 0.5-1h if the water content of carbon is above 5%; screening the desulfurized gypsum and the carbon for controlling the gypsum particle size below 40mum and the carbon particle size below 187.5mum; and mixing the screened carbon and the screened desulfurized gypsum according to a carbon-to-calcium sulfate mole ratio of 1:1-1.2:1 to obtain a mixed sample, putting the mixed sample in a high temperature reaction device, and reacting at 1000-1100DEG C under the protection of nitrogen or an inert gas under a gas flow velocity of 4-10m / s for 10-15min. The technology has the advantages of high reaction efficiency, fast reaction speed, less carbon consumption, high finally-obtained product quality, and no atmospheric pollution.

Description

technical field [0001] The invention belongs to the production field of calcium oxide and sulfur dioxide, in particular to a production process for preparing calcium oxide and sulfur dioxide by using desulfurized gypsum. Background technique [0002] China is the world's largest sulfur dioxide emitter. The conditions of coal-based energy resources determine that China's coal-based energy consumption structure will not change for quite a long time. With the continuous optimization and adjustment of the energy consumption structure, the new coal consumption in the future will be mainly used for power generation. Currently, coal-fired power plants provide about 80% of China's total electricity generation. It is expected that by 2020, about 60% of electricity generation will still come from coal-fired power plants. By the end of the "Eleventh Five-Year Plan", the sulfur dioxide emissions of thermal power plants are still on the rise. However, there are 300 million kW coal-fir...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B17/50C01F11/08
Inventor 韩卫清郑达鲁海琳王连军孙秀云李健生沈锦优刘晓东
Owner NANJING UNIV OF SCI & TECH
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