Environmental Sanitation Engineering ›› 2022, Vol. 30 ›› Issue (6): 64-69.doi: 10.19841/j.cnki.hjwsgc.2022.06.011

Previous Articles     Next Articles

Study on the Effect of Mineral Compositions on the Melting Characteristics of Fly Ash from MSW Incineration

ZHANG Chunfei, HU Yantao, ZHANG Jiandong, CHEN Yaoji, DAI Haobo   

  1. 1. Xi’an Aerospace Yuan Dongli Engineering Co. Ltd.;2. Zhejiang Tiandi Environmental Protection Technology Co. Ltd.
  • Online:2023-01-04 Published:2023-01-04

Abstract: According to the component characteristics of fly ash produced by a MSW incineration power plant, the effects of different compatibility ratios of single component and two components on the melting temperature of fly ash were analyzed. The results indicated that the addition of SiO2 could significantly reduce the melting temperature of fly ash, especially for every 1% step increased when the adding mass fraction was 0~5%, the reduction of ash melting temperature was about 14~21 ℃. The addition ratio of Al2O3 could decrease the ash melting point of fly ash within 10% , but it could increase the melting characteristic temperature of the fly ash when the proportion was 10%~25%. Both CaO and MgO could increase the melting characteristic temperature of fly ash, and CaO could have a great effect. Coal ash with high content of acid oxides could obviously promote the melting of fly ash. Under the condition of alkalinity balance, the addition of binary components SiO2-MgO and SiO2-CaO would further reduce the melting temperature, and the melting aid effect of SiO2-MgO was more obvious than SiO2-CaO. On the contrary, the addition of binary components Al2O3-MgO and Al2O3-CaO would significantly increase the melting temperature of fly ash.

Key words: fly ash, composition, melting temperature, compatibility

[1] ZHANG Zhe, ZOU Liangdong, WANG Yongkang, WANG Yidi, LUO Zhongli, WANG Wei. Leaching Behavior of Heavy Metals of Solidified and Stabilized Fly Ash in Acidic Environment [J]. Environmental Sanitation Engineering, 2022, 30(5): 72-82.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] . Optimization Study on Effect Evaluation Index for Source Separation of Municipal Solid Waste Based on F-measure   [J]. Environmental Sanitation Engineering, 2018, 26(3): 1 -3 .
[2] . Exploration and Research on Improving the Classification Effect of Domestic Garbage in Guangzhou   [J]. Environmental Sanitation Engineering, 2018, 26(3): 4 -7 .
[3] . Application on Pretreatment Technology of Food Waste in Hangzhou   [J]. Environmental Sanitation Engineering, 2018, 26(3): 8 -10 .
[4] . Characteristics and Choice of Treatment Measures of Domestic Waste Simple Landfill in the Rural of China   [J]. Environmental Sanitation Engineering, 2018, 26(3): 11 -13 .
[5] . Municipal Sewage Sludge Co-firing in Waste Incineration Power Plant: A Case Study of Hengyang City   [J]. Environmental Sanitation Engineering, 2018, 26(3): 14 -17 .
[6] . Engineering Characteristics of Bottom Ash in Municipal Solid Waste Incinerator   [J]. Environmental Sanitation Engineering, 2018, 26(3): 18 -22 .
[7] . Automatic Control of SNCR System in Waste Incineration Plant   [J]. Environmental Sanitation Engineering, 2018, 26(3): 23 -25 .
[8] . Ways and Efficiency Analysis of Landfill Gas Utilization in Beijing Liulitun Landfill   [J]. Environmental Sanitation Engineering, 2018, 26(3): 26 -28 .
[9] . Study on Influencing Factors of Municipal Solid Waste Heating Value in Taiyuan   [J]. Environmental Sanitation Engineering, 2018, 26(3): 29 -32 .
[10] . Inhibition Concentration and Elimination Method of Ammonia Nitrogen in Anaerobic Digestion Process   [J]. Environmental Sanitation Engineering, 2018, 26(3): 33 -35 .
Copyright © Environmental Sanitation Engineering
Address: 107#, Weidi Road, Tianjin, P.R.C.    Postcode: 300201
Telephone: 022-28365069   Fax: 022-28365080 E-mail: csglwyjs10@tj.gov.cn
Supported by:Beijing Magtech