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Method for rapidly determining total iron in sulfur acid residue

A rapid determination, sulfuric acid residue technology, applied in the direction of chemical analysis by titration, analysis by chemical indicators, etc., can solve the problems of cumbersome methods, high energy consumption, affecting the accuracy and fairness of analysis results, and shorten the analysis time. Period, the effect of reducing labor intensity

Inactive Publication Date: 2010-12-08
武钢集团有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

These two methods all have high energy consumption (11~14kW·h) and long detection time (3~4h). If they are directly dissolved in acid, many sulfuric acid slag samples will not be completely decomposed, which will affect the accuracy and accuracy of the analysis results. Therefore, it is a requirement for development to study an economical, simple, fast and accurate detection method for the determination of iron content in sulfuric acid slag, which is of great significance to the comprehensive utilization of sulfuric acid slag.
[0004] Che Diqiang from the Product Quality Supervision and Inspection Institute of Deyang City, Sichuan Province used hydrochloric acid to dissolve samples, and potassium dichromate redox titration of ferrous ions determined the content of total iron in sulfuric acid slag; Tao Ying, Department of Chemical Engineering, Kaifeng University, used redox titration, Complexometric titration and spectrophotometry were used to analyze and determine the total iron content in pyrite slag, and the advantages and disadvantages of the three analysis methods were compared, but the decomposition of the sample was not involved at all, only the decomposition of the sample after decomposition The test solution was compared with different assay methods
As mentioned above, in many sulfuric acid slag samples submitted for inspection, if they are directly acid-dissolved, the decomposition of the sample will not be complete, resulting in low analysis results, which will affect the accuracy of the analysis.
The method of recovering and decomposing sulfuric acid slag samples from alkali fusion or acid soluble residues is cumbersome and consumes a lot of energy, which is not the development requirement of today's analysis and detection technology

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Embodiment Construction

[0039] The implementation of the present invention will be described in detail below, but they do not constitute a limitation of the present invention, and are only examples. At the same time, it will become clearer and easier to understand by illustrating the advantages of the present invention

[0040] The present invention a kind of method for rapid determination of total iron in sulfuric acid slag, it comprises the steps:

[0041](1) Weigh 0.10g~0.50g (accurate to 0.0001g) of sulfuric acid slag sample that is dried at 105~110°C and cooled to room temperature with a particle size of less than 0.100mm, preferably 0.20g sample, and placed in a 0.5 In a porcelain crucible with g to 2 g of mixed flux, preferably 1 g of mixed flux, mix well, transfer all of it to a conical filter paper, wrap it into a small bag, and place it in a porcelain crucible lined with burnt magnesia. The size of the magnesium porcelain crucible is arbitrary, as long as there is a large enough magnesium ...

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Abstract

The invention provides a method for rapidly determining total iron in sulfur acid residue, which is as follows: reagent is used for analyzing in public and in a blank way volume difference of potassium dichromate standard titrimetric solution which is consumed by front and back titration, wherein the volume difference is blank valve (V0=V1-V2); milliliter quantity obtained by V1-V0 is used for calculating mass friction of total iron in sulfur acid residue test sample. The method overcomes shortcomings that the existing analytic method has poor accuracy, and a method of recycling and resolvingsulfur acid residue test sample by alkali fusion or acid soluble is fussy, and has high energy consumption and the like. The method determining total iron in sulfur acid residue has the advantages ofeconomy, environmental protection, simplicity, rapidness and accuracy.

Description

technical field [0001] The invention relates to a method for rapidly determining total iron in sulfuric acid slag. Background technique [0002] Sulfuric acid slag is a solid waste discharged during the production of sulfuric acid using pyrite or sulfur-containing tailings as raw materials. The comprehensive utilization of it can not only eliminate the harm to the environment, but also be reused as a resource. Millions of tons of sulfuric acid slag are discharged every year in our country. At present, some countries have fully utilized it, and our country's utilization is only about 50%. The iron content in sulfuric acid slag is generally 30% to 50%, and it also contains a certain amount of copper, lead, zinc, silver, gold and other rare and precious metals and radioactive elements. It is a valuable raw material. After magnetic separation and gravity separation, the sulfuric acid slag with an iron content of 50% to 65% can be used as an iron-making raw material, and an iron...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N31/16G01N31/22
Inventor 闻向东潘菁张春兰文斌张前香沈金科魏继红赵希文严露范志国
Owner 武钢集团有限公司
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