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Experimental method for evaluating pulverized coal properties of spray-blow coal

A technology of coal grinding and characteristics, applied in measuring devices, instruments, mechanical devices, etc., can solve the problems of not characterizing the crushing characteristics of coal larger than 1.25mm

Active Publication Date: 2014-07-02
SHANXI LUAN ENVIRONMENTAL ENERGY DEV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, this method has the following disadvantages: Since the coal sample size in the grindability test is 0.63-1.25mm, HGI cannot characterize the crushing characteristics of coal larger than 1.25mm
However, in the actual production of the blast furnace injection industry, it is impossible for the raw coal entering the coal mill to be less than 1.25mm, so HGI cannot fully characterize the coal grinding characteristics of the coal.

Method used

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  • Experimental method for evaluating pulverized coal properties of spray-blow coal
  • Experimental method for evaluating pulverized coal properties of spray-blow coal
  • Experimental method for evaluating pulverized coal properties of spray-blow coal

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0047] The test of embodiment 1 Shenhua low-rank coal

[0048] The coal quality analysis results of the test coal samples are shown in Table 1. Its total moisture is 13.6%, and the air-dry basis moisture is 9.16%. Since Shenhua's low-rank coal has high moisture content, which affects the coal grinding characteristics of coal, it needs to be dried before the test, and industrial coal mills are also dried by heating flue gas. The PCI coal has a lower ash content of 5.16%. The coal has a grindability index HGI of 59.

[0049] Table 1 Coal quality analysis of test coal samples

[0050]

[0051] In Table 1 above, M ar is the moisture content of the coal as received, M ad is the moisture content on an air-dried basis, A d is the dry basis ash content, V d is the volatile matter yield on a dry basis, V daf is the volatile yield on a dry ash-free basis, FC d is the fixed carbon yield on a dry basis, CRC is the coke characteristic, HGI is the Hastelloy grindability of coal,...

Embodiment 2

[0058] Example 2 Lean Coal - Coal Grinding Characteristics of Lu'an Zhangcun Coal

[0059] According to the method of Example 1, the coal grinding characteristics of Lu'an Zhangcun coal were measured. The coal quality analysis of Lu'an Zhangcun coal is shown in Table 3. See Table 4 and figure 2 .

[0060] Table 3 Coal Quality Analysis of Lu'an Zhangcun Test Coal Samples

[0061]

[0062] Table 4 The relationship between pulverization rate, fineness and coal grinding time of test coal samples <6mm in Zhangcun, Lu'an

[0063]

Embodiment 3

[0064] Coal grinding characteristics of embodiment 3 Taixi anthracite

[0065] According to the method of Example 1, the coal grinding characteristics of Taixi anthracite were measured. The coal quality analysis of Lu'an Zhangcun coal is shown in Table 5. See Table 6 and image 3 .

[0066] table 5

[0067]

[0068] Table 6 The relationship between the powder rate and fineness of the Taixi anthracite <6mm test coal sample and the coal grinding time

[0069]

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Abstract

The invention relates to a method for evaluating pulverized coal properties. The method is characterized by comprising the steps of crushing a coal sample by a jaw crusher, and screening the coal sample by a screen being 6mm until the particle size of the coal sample is smaller than 6mm; grinding for a period of time by a ball grinding mill, screening by a screen being 1mm, calculating the proportion of pulverized coal smaller than 1mm in the total weight of raw material coal after different coal pulverizing time, taking the proportion as power yield, and respectively calculating the content of pulverized coal with the particle sizes being smaller than 200 meshes and smaller than 100 meshes; drawing a curve of the change of the proportion of the pulverized coal smaller than 1mm, the content of the pulverized coal smaller than 200 meshes and the content of the pulverized coal smaller than 100 meshes along with the time; and evaluating the pulverized coal properties of the coal sample according to the following standards: (i) if the proportion of the pulverized coal smaller than 1mm is more than 90% and the contents of pulverized coal with the particle sizes being smaller than 200 meshes and smaller than 100 meshes are respectively more than 50% and 40%, showing that the coal can be ground and can be finely ground; (ii) if the proportion of the pulverized coal smaller than 1mm is less than 90%, showing that the coal is hard to grind; and (iii) if the proportion of the pulverized coal smaller than 1mm is more than 90% and the contents of pulverized coal with the particle sizes being smaller than 200 meshes and smaller than 100 meshes are respectively less than 50% and 40% after a period of time, showing that the coal can be ground, but is poor in grinding degree.

Description

technical field [0001] The invention relates to a method for evaluating coal grinding characteristics of blast furnace injection coal, a method for selecting coal raw materials for blast furnace injection, and a method for selecting coal raw materials for blast furnace injection and determining the coal grinding time. Background technique [0002] The particle size of pulverized coal is very important for blast furnace injection, and the particle size of pulverized coal has a great influence on the process performance of pulverized coal injection, such as explosiveness, combustibility and fluidity. For low-rank coal, due to its high volatile content and strong explosiveness, its explosiveness can be reduced by increasing the particle size. In terms of combustibility, the smaller the particle size of pulverized coal, the higher the combustibility. [0003] Blast furnace injection pulverized coal is often used to represent the particle size of pulverized coal by the proportio...

Claims

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Application Information

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IPC IPC(8): G01N19/00
Inventor 陈洪博毛永红程志红高雪明王越何英杰张宇宏李玉云宋科飞刘治青
Owner SHANXI LUAN ENVIRONMENTAL ENERGY DEV