CIESC Journal ›› 2025, Vol. 76 ›› Issue (9): 4913-4921.DOI: 10.11949/0438-1157.20250103
• Energy and environmental engineering • Previous Articles Next Articles
Xiaohe HUANG(
), Shouyu ZHANG(
)
Received:2025-02-04
Revised:2025-05-15
Online:2025-10-23
Published:2025-09-25
Contact:
Shouyu ZHANG
通讯作者:
张守玉
作者简介:黄小河(1994—),女,博士研究生,hxh_usst@163.com
CLC Number:
Xiaohe HUANG, Shouyu ZHANG. Effect of Ca species on sintering characteristics of Zhundong coal ash[J]. CIESC Journal, 2025, 76(9): 4913-4921.
黄小河, 张守玉. Ca种类对准东煤灰烧结特性影响[J]. 化工学报, 2025, 76(9): 4913-4921.
Add to citation manager EndNote|Ris|BibTeX
| 煤种 | 灰分分析/% | |||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| SiO2 | Al2O3 | Fe2O3 | CaO | MgO | TiO2 | SO3 | K2O | Na2O | P2O5 | |
| WCW | 11.07 | 11.55 | 2.72 | 47.85 | 2.01 | 1.30 | 18.20 | 0.66 | 4.26 | 0.06 |
Table 1 Ash analysis of Wucaiwan coal
| 煤种 | 灰分分析/% | |||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| SiO2 | Al2O3 | Fe2O3 | CaO | MgO | TiO2 | SO3 | K2O | Na2O | P2O5 | |
| WCW | 11.07 | 11.55 | 2.72 | 47.85 | 2.01 | 1.30 | 18.20 | 0.66 | 4.26 | 0.06 |
| 样品编号 | 钙种类 | 合成灰各组分比例/% | ||||
|---|---|---|---|---|---|---|
| SiO2 | Al2O3 | Fe2O3 | Na2CO3 | Ca* | ||
| RR-1-Cal | CaCO3 | 9.98 | 9.98 | 2.38 | 6.48 | 71.18 |
| RR-1-An | CaSO4 | 7.93 | 7.93 | 1.98 | 5.15 | 77.01 |
Table 2 Code and proportion of the synthetic ashes prepared by different calcium species
| 样品编号 | 钙种类 | 合成灰各组分比例/% | ||||
|---|---|---|---|---|---|---|
| SiO2 | Al2O3 | Fe2O3 | Na2CO3 | Ca* | ||
| RR-1-Cal | CaCO3 | 9.98 | 9.98 | 2.38 | 6.48 | 71.18 |
| RR-1-An | CaSO4 | 7.93 | 7.93 | 1.98 | 5.15 | 77.01 |
| 波段/cm-1 | 吸收峰 | 文献 |
|---|---|---|
| 1440~1480 | 碳酸盐 | [ |
| 1432, 1425, 875, 867, 711, 717, 707 | 碳酸钙 | [ |
| 1405 | Al—O反对称伸长振动 | [ |
| 1147, 674, 663, 613, 593 | 硫酸钙 | [ |
| 1025 | Si—O对称伸长振动 | [ |
| 887 | 铝氧四面体AlO4 | [ |
| 850 | Si—O振动 | [ |
| 833 | 云母 | [ |
| 817 | Si—O—Si和Al—O对称伸缩振动 | [ |
| 698 | Si—O弯曲振动 | [ |
| 651 | 碱性长石O—Si(Al)—O弯曲振动 | [ |
| 636 | 碱性长石 | [ |
| 570 | Si—O延伸振动 | [ |
| 536 | Al—O—Si弯曲振动 | [ |
| 501 | Si—O(SiO4)弯曲振动 | [ |
| 485 | 变高岭石 | [ |
| 422 | 钠长石 | [ |
| 411, 404 | 云母 Si—O—Si变形振动 | [ |
Table 3 FTIR absorption peak of inorganic components in ash samples
| 波段/cm-1 | 吸收峰 | 文献 |
|---|---|---|
| 1440~1480 | 碳酸盐 | [ |
| 1432, 1425, 875, 867, 711, 717, 707 | 碳酸钙 | [ |
| 1405 | Al—O反对称伸长振动 | [ |
| 1147, 674, 663, 613, 593 | 硫酸钙 | [ |
| 1025 | Si—O对称伸长振动 | [ |
| 887 | 铝氧四面体AlO4 | [ |
| 850 | Si—O振动 | [ |
| 833 | 云母 | [ |
| 817 | Si—O—Si和Al—O对称伸缩振动 | [ |
| 698 | Si—O弯曲振动 | [ |
| 651 | 碱性长石O—Si(Al)—O弯曲振动 | [ |
| 636 | 碱性长石 | [ |
| 570 | Si—O延伸振动 | [ |
| 536 | Al—O—Si弯曲振动 | [ |
| 501 | Si—O(SiO4)弯曲振动 | [ |
| 485 | 变高岭石 | [ |
| 422 | 钠长石 | [ |
| 411, 404 | 云母 Si—O—Si变形振动 | [ |
| [2] | Song Y W, Chen Y F, Su S, et al. Effects of inorganic sodium on the combustion characteristics of Zhundong coal with fast-heating rate[J]. Fuel, 2022, 319: 123801. |
| [3] | Xiao R H, Wang Y, Zhang Y L, et al. Effect of kaolinite additive on water-soluble sodium release and particle matter formation during Zhundong coal combustion[J]. Fuel, 2023, 333: 126422. |
| [4] | Zhang L, Yan J C, Yang Q T, et al. Co-firing Zhundong coal with its gangue: combustion performance, sodium retention and ash fusion behaviors[J]. Sustainability, 2022, 14(24): 16451. |
| [5] | Zi J B, Ma D Y, Wang X B, et al. Slagging behavior and mechanism of high-sodium-chlorine coal combustion in a full-scale circulating fluidized bed boiler[J]. Journal of the Energy Institute, 2020, 93(6): 2264-2270. |
| [6] | Wang C A, Li G Y, Du Y B, et al. Ash deposition and sodium migration behaviors during combustion of Zhundong coals in a drop tube furnace[J]. Journal of the Energy Institute, 2018, 91(2): 251-261. |
| [7] | Wu X J, Zhang X, Dai B Q, et al. Ash deposition behaviours upon the combustion of low-rank coal blends in a 3 MWth pilot-scale pulverised coal-fired furnace[J]. Fuel Processing Technology, 2016, 152: 176-182. |
| [8] | Song G L, Qi X B, Song W J, et al. Slagging behaviors of high alkali Zhundong coal during circulating fluidized bed gasification[J]. Fuel, 2016, 186: 140-149. |
| [9] | 俞海淼, 曹欣玉, 张鹤声, 等. 若干典型煤灰样烧结熔融特性研究[J]. 同济大学学报(自然科学版), 2008, 36(5): 664-669. |
| Yu H M, Cao X Y, Zhang H S, et al. Research on sintering and fusion characteristics of several representative coal ashes[J]. Journal of Tongji University (Natural Science), 2008, 36(5): 664-669. | |
| [10] | Tang C W, Pan W G, Zhang J K, et al. A comprehensive review on efficient utilization methods of high-alkali coals combustion in boilers[J]. Fuel, 2022, 316: 123269. |
| [11] | 李君杰. 富氧燃烧下高钙/高碱煤成灰及沉积特性研究[D]. 武汉: 华中科技大学, 2018. |
| Li J J. Study on ash formation and deposition characteristics of high calcium/high alkali coal under oxygen-enriched combustion[D]. Wuhan: Huazhong University of Science and Technology, 2018. | |
| [12] | 卢啸风, 李建波, 刘卓, 等. 燃准东煤电站锅炉沾污结渣特性及防治措施研究进展[J]. 中国电机工程学报, 2024, 44(18): 7247-7264. |
| Lu X F, Li J B, Liu Z, et al. Research progress on the characteristics and countermeasures of ash slagging and fouling in boilers burning Zhundong coal[J]. Proceedings of the CSEE, 2024, 44(18): 7247-7264. | |
| [13] | Yuan Z S, Wang J, Kong L X, et al. Comparison study of fusibility between coal ash and synthetic ash[J]. Fuel Processing Technology, 2021, 211: 106593. |
| [14] | Zhang M R, Guo J W, Yao S Y, et al. The influence mechanism of ionic liquids on the ash melting and combustion characteristics of Zhundong high-alkali coal[J]. International Journal of Coal Preparation and Utilization, 2025, 45(1): 112-127. |
| [15] | Zhang X X, Huang L, Kong L X, et al. Effect of phosphorus-based additives on sodium release during Zhundong coal gasification in flat flame-assisted entrained flow reactor[J]. Combustion and Flame, 2023, 249: 112608. |
| [16] | Jung B, Schobert H H. Viscous sintering of coal ashes (1): Relationships of sinter point and sinter strength to particle size and composition[J]. Energy & Fuels, 1991, 5(4): 555-561. |
| [17] | Zbogar A, Frandsen F, Jensen P A, et al. Shedding of ash deposits[J]. Progress in Energy and Combustion Science, 2009, 35(1): 31-56. |
| [18] | 张守玉, 徐梓航, 黄东东, 等. 氯化钠蒸气对高钠煤煤灰钠捕获性能及其烧结温度的影响[J]. 煤炭学报, 2023, 48(1): 452-459. |
| Zhang S Y, Xu Z H, Huang D D, et al. Effect of NaCl vapor concentration on sodium-capturing performance and sintering temperature of coal ash[J]. Journal of China Coal Society, 2023, 48(1): 452-459. | |
| [19] | Lei T, Zhao J R, Zhang Z H. In-situ ash sintering process analysis during the co-combustion of the coal gasification fine slag and corn straw[J]. Energy, 2024, 310: 133311. |
| [20] | Liu K P, Wei B, Wang J J, et al. Effect of atmosphere and chemical composition on ash fusion process of Zhundong high iron coal[J]. Fuel, 2025, 386: 134223. |
| [21] | Zhao C Y, Wang C, Men X Y, et al. In-situ study of the effect of potassium release on ash sintering behavior during the co-gasification of coal and biomass[J]. Journal of Industrial and Engineering Chemistry, 2024, 140: 364-375. |
| [22] | Yang H R, Jin J, Liu D Y, et al. The effect on ash deposition by blending high-calcium Zhundong coal with vermiculite: focusing on minerals transformations[J]. Asia-Pacific Journal of Chemical Engineering, 2021, 16(1): e2571. |
| [23] | Yang S B, Song G L, Na Y J, et al. Alkali metal transformation and ash deposition performance of high alkali content Zhundong coal and its gasification fly ash under circulating fluidized bed combustion[J]. Applied Thermal Engineering, 2018, 141: 29-41. |
| [24] | Yang S B, Song G L, Na Y J, et al. Transformation characteristics of Na and K in high alkali residual carbon during circulating fluidized bed combustion[J]. Journal of the Energy Institute, 2019, 92(1): 62-73. |
| [25] | Yang Y P, Lin X C, Chen X J, et al. The formation of deposits and their evolutionary characteristics during pressurized gasification of Zhundong coal char[J]. Fuel, 2018, 224: 469-480. |
| [26] | 尹艳山, 尹杰, 张巍, 等. 红外和拉曼光谱的煤灰矿物组成研究[J]. 光谱学与光谱分析, 2018, 38(3): 789-793. |
| Yin Y S, Yin J, Zhang W, et al. Characterization of mineral matter in coal ashes with infrared and Raman spectroscopy[J]. Spectroscopy and Spectral Analysis, 2018, 38(3): 789-793. | |
| [27] | 黄小河, 张守玉, 杨靖宁, 等. 准东煤高温燃烧过程中含钙矿物质的转化规律[J]. 化工学报, 2017, 68(10): 3906-3911. |
| Huang X H, Zhang S Y, Yang J N, et al. Calcium transformation during Zhundong coal combustion process[J]. CIESC Journal, 2017, 68(10): 3906-3911. | |
| [28] | Zhou H, Ma W C. An experimental study on the effects of adding biomass ashes on ash sintering behavior of Zhundong coal[J]. Applied Thermal Engineering, 2017, 126: 689-701. |
| [29] | Ionescu B A, Barbu A M, Lăzărescu A V, et al. The influence of substitution of fly ash with marble dust or blast furnace slag on the properties of the alkali-activated geopolymer paste[J]. Coatings, 2023, 13(2): 403. |
| [30] | Yin Y S, Yin J, Zhang W, et al. FT-IR and micro-Raman spectroscopic characterization of minerals in high-calcium coal ashes[J]. Journal of the Energy Institute, 2018, 91(3): 389-396. |
| [31] | Yang J J, Sun H J, Peng T J, et al. Study on the overall reaction pathways and structural transformations during decomposition of coal fly ash in the process of alkali-calcination[J]. Materials, 2021, 14(5): 1163. |
| [32] | Dakhane A. Multiscale engineering response of alkali activated aluminosilicate binders[D]. Phoenix Arizona State University, 2016. |
| [33] | Criado M, Fernández-Jiménez A, Palomo A. Alkali activation of fly ash: effect of the SiO2/Na2O ratio[J]. Microporous and Mesoporous Materials, 2007, 106(1/2/3): 180-191. |
| [34] | 季杰强. 高碱煤燃烧碱金属钠迁移特性研究[D]. 杭州: 浙江大学, 2019. |
| Ji J Q. Study on migration characteristics of alkali metal sodium in high alkali coal combustion[D]. Hangzhou: Zhejiang University, 2019. | |
| [35] | Ge H J, Shen L H, Bai H C, et al. Characteristics of Zhundong coal ash in hematite-based chemical looping combustion[J]. Energy & Fuels, 2020, 34(7): 8150-8166. |
| [36] | Huang Z, Li N, Zhou Q L, et al. A comparative study of the pyrolysis and combustion characteristics of sodium-rich Zhundong coal in slow and rapid processes[J]. Energy Science & Engineering, 2019, 7(1): 98-107. |
| [37] | Fan H L, Li F H, Guo Q Q, et al. Effect of biomass ash on initial sintering and fusion characteristics of high melting coal ash[J]. Journal of the Energy Institute, 2021, 94: 129-138. |
| [38] | Bonafous L, Bessada C, Massiot D, et al. 29Si MAS NMR study of dicalcium silicate: the structural influence of sulfate and alumina stabilizers[J]. Journal of the American Ceramic Society, 1995, 78(10): 2603-2608. |
| [39] | Zhang X X, Dou H Y, Bai J, et al. Effect of phosphorus on viscosity-temperature behavior of high-sodium coal ash slag[J]. Fuel, 2023, 343: 127930. |
| [40] | Liu Y X, Zeng F G, Sun B L, et al. Structural characterizations of aluminosilicates in two types of fly ash samples from Shanxi Province, North China[J]. Minerals, 2019, 9(6): 358. |
| [41] | Ma F R, Wei B, Wang J J, et al. Influence mechanism of Na2O on the network structure depolymerization of ZD coal ash silicate under high temperature[J]. Journal of Non-Crystalline Solids, 2022, 584: 121507. |
| [1] | 马达夫, 张守玉, 何翔, 等. 改善准东煤锅炉受热面沾污的燃烧优化试验研究[J]. 煤炭科学技术, 2023, 51(8): 304-312. |
| Ma D F, Zhang S Y, He X, et al. Experimental study on combustion optimization to alleviate fouling on heating surface of a Zhundong coal boiler[J]. Coal Science and Technology, 2023, 51(8): 304-312. |
| [1] | Shengmei ZHANG, Ming LI, Ying ZHANG, Xi YI, Yiting YANG, Yali LIU. Effects of emulsifier and reacting temperature on characteristics of phase change microcapsules [J]. CIESC Journal, 2025, 76(S1): 444-452. |
| [2] | Jianyong MAO, Jijun GE, Pan XU, Rongshan BI. Experimental study on the formation mechanism of hydrolyzed chlorine as a by-product during HDI preparation [J]. CIESC Journal, 2025, 76(S1): 384-392. |
| [3] | Zequan LI, Tianyu CAI, Jiajun LIU, Qizhi CHEN, Peiwen XIAO, Xiaofei XU, Shuangliang ZHAO. Synthesis and application of lignin-based flocculants [J]. CIESC Journal, 2025, 76(9): 4709-4722. |
| [4] | Jiaqi XU, Wenjun ZHANG, Yanping YU, Baogen SU, Qilong REN, Qiwei YANG. Numerical simulation and experimental study of the conversion of refinery gas to syngas via thermal plasma [J]. CIESC Journal, 2025, 76(9): 4462-4473. |
| [5] | Huihui QIAN, Wenjie WANG, Wenyao CHEN, Xinggui ZHOU, Jing ZHANG, Xuezhi DUAN. Synergistic metal-zeolite catalysis for conversion of polypropylene into aromatics [J]. CIESC Journal, 2025, 76(9): 4838-4849. |
| [6] | Xinyi CHAO, Wenyao CHEN, Jing ZHANG, Gang QIAN, Xinggui ZHOU, Xuezhi DUAN. Controlled preparation and performance regulation of catalysts for one-step synthesis of methyl propionate from methanol and methyl acetate [J]. CIESC Journal, 2025, 76(8): 4030-4041. |
| [7] | Mei ZHOU, Haojie ZENG, Huoyan JIANG, Ting PU, Xingxing ZENG, Baoyu LIU. Meosporous MTW zeolites modified by secondary crystallization and their catalytic properties in alkylation reaction of benzene and cyclohexene [J]. CIESC Journal, 2025, 76(8): 4071-4080. |
| [8] | Yuanshen DAI, Zhijiang SHAO, Weifeng CHEN, Ning CHEN. Dynamic prediction method of particle size distribution in ternary precursor crystallization process based on population balance equations [J]. CIESC Journal, 2025, 76(8): 4119-4128. |
| [9] | Ziheng WANG, Wenhuai LI, Wei ZHOU. Application of patterned electrodes in solid oxide fuel cell [J]. CIESC Journal, 2025, 76(7): 3153-3171. |
| [10] | Tonghui LI, Tianli HUI, Tao ZHENG, Rui ZHANG, Haiyan LIU, Zhichang LIU, Chunming XU, Xianghai MENG. Synergistic palladium double active sites with hydroxide for high current density and pH-universal hydrogen evolution reaction [J]. CIESC Journal, 2025, 76(7): 3671-3685. |
| [11] | Chenrui MA, Xiang WANG, Minhang SONG, Jun JING, Qiong WU, Yun HUANG. Theoretical research on collision behavior and production evolution of titania particles in an industrial oxidation reactor of chlorination process [J]. CIESC Journal, 2025, 76(7): 3316-3324. |
| [12] | Shiying ZHAO, Zhishuai ZUO, Mengying HE, Hualiang AN, Xinqiang ZHAO, Yanji WANG. Preparation of Co-Pt/HAP catalyst and its catalytic performance for 1,2-propanediol amination [J]. CIESC Journal, 2025, 76(7): 3305-3315. |
| [13] | Qinwen LIU, Hengbing YE, Yiwei ZHANG, Fahua ZHU, Wenqi ZHONG. Study on pressurized oxy-fuel co-combustion characteristics of coal and poultry litter [J]. CIESC Journal, 2025, 76(7): 3487-3497. |
| [14] | Qingping ZHAO, Min ZHANG, Hui ZHAO, Gang WANG, Yongfu QIU. Hydrogen bond effect and kinetic studies on hydroesterification of ethylene to methyl propionate [J]. CIESC Journal, 2025, 76(6): 2701-2713. |
| [15] | Zhaoming MAI, Yingtao WU, Wei WANG, Haibao MU, Zuohua HUANG, Chenglong TANG. Study on nonlinear ignition characteristics and dilution gas effect of n-dodecane methane dual fuel [J]. CIESC Journal, 2025, 76(6): 3115-3124. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||