CIESC Journal ›› 2023, Vol. 74 ›› Issue (3): 1294-1302.DOI: 10.11949/0438-1157.20221396
• Energy and environmental engineering • Previous Articles Next Articles
Dingping LIU1,2(), Aihua CHEN1,2, Xiangyang ZHANG1,2, Wenhao HE1,2, Hai WANG1,2
Received:
2022-10-21
Revised:
2022-12-28
Online:
2023-04-19
Published:
2023-03-05
Contact:
Dingping LIU
刘定平1,2(), 陈爱桦1,2, 张向阳1,2, 何文浩1,2, 王海1,2
通讯作者:
刘定平
作者简介:
刘定平(1965—),男,博士,教授,dpliu@scut.edu.cn
基金资助:
CLC Number:
Dingping LIU, Aihua CHEN, Xiangyang ZHANG, Wenhao HE, Hai WANG. Study on semi dry hydrolytic denitrification of aluminum ash[J]. CIESC Journal, 2023, 74(3): 1294-1302.
刘定平, 陈爱桦, 张向阳, 何文浩, 王海. 铝灰半干法水解脱氮研究[J]. 化工学报, 2023, 74(3): 1294-1302.
Add to citation manager EndNote|Ris|BibTeX
厂家 | 质量分数/% | ||||||
---|---|---|---|---|---|---|---|
N | O | Na | Mg | Al | Si | Cl | |
A | 2.24 | 30.99 | 8.87 | 5.80 | 27.28 | 0.36 | 15.46 |
B | 1.13 | 43.15 | 4.13 | 2.10 | 17.57 | 12.55 | 5.00 |
Table 1 Analysis results of main elements of aluminum ash
厂家 | 质量分数/% | ||||||
---|---|---|---|---|---|---|---|
N | O | Na | Mg | Al | Si | Cl | |
A | 2.24 | 30.99 | 8.87 | 5.80 | 27.28 | 0.36 | 15.46 |
B | 1.13 | 43.15 | 4.13 | 2.10 | 17.57 | 12.55 | 5.00 |
项目 | 质量分数/% | |||||
---|---|---|---|---|---|---|
N | O | Na | Mg | Al | Cl | |
研磨 | 0 | 35.94 | 9.48 | 4.73 | 21.49 | 18.03 |
无处理 | 0 | 34.89 | 12.56 | 4.37 | 20.6 | 19.27 |
Table 2 Main element content of aluminum ash after hydrolysis by different pre-treatment methods
项目 | 质量分数/% | |||||
---|---|---|---|---|---|---|
N | O | Na | Mg | Al | Cl | |
研磨 | 0 | 35.94 | 9.48 | 4.73 | 21.49 | 18.03 |
无处理 | 0 | 34.89 | 12.56 | 4.37 | 20.6 | 19.27 |
1 | 王波, 荣朔, 楚维钦, 等. Na2SO4掺杂含MgO铝酸钙熟料的结构表征及浸出性能[J]. 化工学报, 2017, 68(1): 467-472. |
Wang B, Rong S, Chu W Q, et al. Crystal structure and leaching performance of MgO-containing calcium aluminate clinkers doped with Na2SO4 [J]. CIESC Journal, 2017, 68(1): 467-472. | |
2 | 王丽娟, 邵朱强, 熊慧, 等. 中国铝冶炼行业二氧化碳排放达峰路径研究[J]. 环境科学研究, 2022, 35(2): 377-384. |
Wang L J, Shao Z Q, Xiong H, et al. Pathway of carbon emissions peak of aluminum industry[J]. Research of Environmental Sciences, 2022, 35(2): 377-384. | |
3 | Satish R M, Neeraja D. A micro analytical approach for evaluating the hazardous aluminum dross characterization for treating industrial waste[J].The International Journal of Advanced Manufacturing Technology, 2022, DOI: 10.1007/s00170-022-10153-y . |
4 | Hu S Y, Wang D Y, Hou D, et al. Research on the preparation parameters and basic properties of premelted calcium aluminate slag prepared from secondary aluminum dross[J]. Materials, 2021, 14(19): 5855. |
5 | Lv H, Xie M, Shi L, et al. A novel green process for the synthesis of high-whiteness and ultrafine aluminum hydroxide powder from secondary aluminum dross[J]. Ceramics International, 2022, 48(1): 953-962. |
6 | Meshram A. Recovery of valuable products from hazardous aluminum dross: a review[J]. Resources, Conservation and Recycling, 2018, 130: 95-108. |
7 | 康泽双, 刘中凯, 田野, 等. 国内铝工业全行业铝灰特性和利用处置技术研究进展[J]. 有色金属(冶炼部分), 2022(9): 28-35. |
Kang Z S, Liu Z K, Tian Y, et al. Research progress on characteristics of aluminum ash and practice of utilization and disposal technology in aluminum industry[J]. Nonferrous Metals (Extractive Metallurgy), 2022(9): 28-35. | |
8 | 贺永东, 李颜凌, 马斌, 等. 湿法工艺对二次铝灰无害化脱氮的影响[J]. 特种铸造及有色合金, 2021, 41(6): 679-683. |
He Y D, Li Y L, Ma B, et al. Effects of wet process on harmless nitrogen removal from secondary Al ash[J]. Special Casting & Nonferrous Alloys, 2021, 41(6): 679-683. | |
9 | Kocjan A. The hydrolysis of AlN powder—a powerful tool in advanced materials engineering[J]. Chemical Record, 2018, 18(7/8): 1232-1246. |
10 | Zhao X X, Liu Y, Lyu G Z, et al. Removal of fluorine, chlorine, and nitrogen from aluminum dross by wet process[J]. Light Metals 2022, 2022: 48-55. |
11 | Liu F Q, Zuo Z P, Han J S, et al. Removal process and kinetics of nitrogen and chlorine removal from black aluminum dross[J].Journal of Sustainable Metallurgy, 2021, 7(4): 1805-1818. |
12 | Lv H, Zhao H, Zuo Z, et al. A thermodynamic and kinetic study of catalyzed hydrolysis of aluminum nitride in secondary aluminum dross[J]. Journal of Materials Research and Technology, 2020, 9(5): 9735-9745. |
13 | Shi M, Li Y, Ni P. Recycling valuable elements from aluminum dross[J]. International Journal of Environmental Science and Technology, 2022, 19(12): 12069-12078. |
14 | 唐铃虹. 铝灰渣中氮化铝在焙烧与水解过程中转化的研究[D]. 沈阳: 东北大学, 2015. |
Tang L H. Study on transformation of aluminum nitride in aluminum dross in roasting and hydrolyzing process[D]. Shenyang: Northeastern University, 2015. | |
15 | 张宇, 李勇, 李春雷, 等. 二次铝灰中氮化铝的特性及其脱除工艺研究进展[J]. 矿产保护与利用, 2021, 41(2): 144-149. |
Zhang Y, Li Y, Li C L, et al. Characteristics and removal process of aluminum nitride in secondary aluminum dross: a review[J]. Conservation and Utilization of Mineral Resources, 2021, 41(2): 144-149. | |
16 | 姜澜, 邱明放, 丁友东, 等. 铝灰中AlN的水解行为[J]. 中国有色金属学报, 2012, 22(12): 3555-3561. |
Jiang L, Qiu M F, Ding Y D, et al. Hydrolysis behavior of AlN in aluminum dross[J]. The Chinese Journal of Nonferrous Metals, 2012, 22(12): 3555-3561. | |
17 | Tang J, Liu G H, Qi T G, et al. Two-stage process for the safe utilization of secondary aluminum dross in combination with the Bayer process[J]. Hydrometallurgy, 2022, 209: 105836. |
18 | Yubin K, Byoungyong I, Kim D, et al. A study of recycling process to recovery valuable resources from aluminum black dross[J]. Journal of The Korean Institute of Resources Recycling, 2018,27(5): 61-68. |
19 | Shen H, Liu B, Ekberg C, et al. Harmless disposal and resource utilization for secondary aluminum dross: a review[J]. Science of the Total Environment, 2021, 760: 143968. |
20 | Lv S S, Ni H J, Wang X X, et al. Effects of hydrolysis parameters on AlN content in aluminum dross and multivariate nonlinear regression analysis[J]. Coatings, 2022, 12(5): 552. |
21 | Cinarli U, Turan A. Investigation of alumina-based ceramic production from aluminum black dross[J].Mining, Metallurgy & Exploration, 2021, 38(1): 257-267. |
22 | Mahinroosta M, Allahverdi A. Hazardous aluminum dross characterization and recycling strategies: a critical review[J]. Journal of Environmental Management, 2018, 223: 452-468. |
23 | 刘桂华, 黄文强, 熊德芬, 等. 铝灰中活性物相的反应行为[J]. 中国有色金属学报, 2018, 28(11): 2341-2350. |
Liu G H, Huang W Q, Xiong D F, et al. Reaction behavior of active phases in aluminum dross[J]. The Chinese Journal of Nonferrous Metals, 2018, 28(11): 2341-2350. | |
24 | David E. Hydrolysis of aluminum dross material to achieve zero hazardous waste[J]. Journal of Hazardous Materials, 2012, 209/210: 501-509. |
25 | Nosaka A, Hiraki T, Akiyama T. Hydrolysis rate of aluminum nitride in a sodium hydroxide solution[J]. High Temperature Materials and Processes, 2011, 30(4/5): 339-343. |
26 | 贺永东, 何超, 陈长科, 等. 无害化处理对铝灰渣化学成分与物相组成影响研究[J]. 稀有金属, 2022, 46(3): 340-348. |
He Y D, He C, Chen C K, et al. Chemical composition and phase composition of aluminum ash with harmless treatment[J]. Chinese Journal of Rare Metals, 2022, 46(3): 340-348. | |
27 | Hu K, Reed D, Robshaw T J, et al. Characterisation of aluminium black dross before and after stepwise salt-phase dissolution in non-aqueous solvents[J]. Journal of Hazardous Materials, 2021, 401: 123351. |
28 | Bowen P, Highfield J G, Mocellin A, et al. Degradation of aluminum nitride powder in an aqueous environmet[J]. Journal of the American Ceramic Society, 1990, 73(3): 724-728. |
29 | Li Q. Investigations on the hydrolysis behavior of AlN in the leaching process of secondary aluminum dross[J]. Hydrometallurgy, 2018, 182: 121-127. |
30 | Zuo Z, Lv H, Li R, et al. A new approach to recover the valuable elements in black aluminum dross[J]. Resources, Conservation and Recycling, 2021, 174: 105768. |
31 | Yang H L, Li Z S, Ding Y D, et al. Hydrolysis behavior and kinetics of AlN in aluminum dross during the hydrometallurgical process[J]. Materials, 2022, 15(16): 5499. |
32 | Yang Q. Investigation of leaching kinetics of aluminum extraction from secondary aluminum dross with use of hydrochloric acid[J]. Hydrometallurgy, 2019, 187: 158-167. |
33 | 郭坚, 丘泰, 杨建. AlN粉末抗水解处理的研究进展[J]. 电子元件与材料, 2009, 28(11): 80-84. |
Guo J, Qiu T, Yang J. Research progress on against hydrolysis treatment of AlN powder[J]. Electronic Components and Materials, 2009, 28(11): 80-84. |
[1] | Baiyu YANG, Yue KOU, Juntao JIANG, Yali ZHAN, Qinghong WANG, Chunmao CHEN. Chemical conversion of dissolved organic matter in petrochemical spent caustic along a wet air oxidation pretreatment process [J]. CIESC Journal, 2023, 74(9): 3912-3920. |
[2] | Longyi LYU, Wenbo JI, Muda HAN, Weiguang LI, Wenfang GAO, Xiaoyang LIU, Li SUN, Pengfei WANG, Zhijun REN, Guangming ZHANG. Enhanced anaerobic removal of halogenated organic pollutants by iron-based conductive materials: research progress and future perspectives [J]. CIESC Journal, 2023, 74(8): 3193-3202. |
[3] | Maolin DONG, Lidong CHEN, Liulian HUANG, Weibing WU, Hongqi DAI, Huiyang BIAN. Research progress in preparation of lignonanocellulose by acid hydrotropes and their functional applications [J]. CIESC Journal, 2023, 74(6): 2281-2295. |
[4] | Ruiheng WANG, Pinjing HE, Fan LYU, Hua ZHANG. Parameter comparison and optimization of three solid-liquid separation methods for washed air pollution control residues from municipal solid waste incinerators [J]. CIESC Journal, 2023, 74(4): 1712-1723. |
[5] | Xiangning HU, Yuanbo YIN, Chen YUAN, Yun SHI, Cuiwei LIU, Qihui HU, Wen YANG, Yuxing LI. Experimental study on visualization of refined oil migration in soil [J]. CIESC Journal, 2023, 74(4): 1827-1835. |
[6] | Lingxin ZU, Rongting HU, Xin LI, Yudao CHEN, Guanglin CHEN. Carbon release products and denitrification bioavailability from chemical components of woody biomass [J]. CIESC Journal, 2023, 74(3): 1332-1342. |
[7] | Yin XU, Jie CAI, Lu CHEN, Yu PENG, Fuzhen LIU, Hui ZHANG. Advances in heterogeneous visible light photocatalysis coupled with persulfate activation for water pollution control [J]. CIESC Journal, 2023, 74(3): 995-1009. |
[8] | Mengbo ZHANG, Linjin LOU, Yirong FENG, Yuting ZHENG, Haomiao ZHANG, Jingdai WANG, Yongrong YANG. Research progress on synthesis of alkylaluminoxanes [J]. CIESC Journal, 2023, 74(2): 525-534. |
[9] | Lijing HUANG, Jijiao HUANG, Penghui LI, Zhinuo LIU, Kangjie JIANG, Wenjuan WU. Hydroxypropyl sulfomethylation modification of lignin and its effect on cellulase hydrolysis [J]. CIESC Journal, 2022, 73(7): 3232-3239. |
[10] | Yiwei ZHANG, Hairong TANG, Yong HE, Yanqun ZHU, Zhihua WANG. Experimental study of nitrogen balance in the process of flue gas denitration by ozone low-temperature oxidation [J]. CIESC Journal, 2022, 73(4): 1732-1742. |
[11] | Xuan LIU, Yinjiao SU, Yang TENG, Kai ZHANG, Pengcheng WANG, Lifeng LI, Zhen LI. Selenium transformation in ultra-low-emission coal-fired power units and its enrichment characteristics in fly ash [J]. CIESC Journal, 2022, 73(2): 923-932. |
[12] | Xiaosong LUO, Jinbao HUANG, Mei ZHOU, Xin MU, Weiwei XU, Lei WU. Theoretical study on the mechanism of hydrolysis/alcoholysis/ammonolysis of butanediol terephthalate dimer [J]. CIESC Journal, 2022, 73(11): 4859-4871. |
[13] | Jun HUANG, Yiliang LIU, Peng WU, Kai SHEN, Yaping ZHANG. Poisoning mechanism and antioxidant performance of TiAl-based carbonyl sulfur hydrolysis catalyst [J]. CIESC Journal, 2022, 73(10): 4461-4471. |
[14] | Lanhe ZHANG, Lu WANG, Zimeng LI, Hong TANG, Jingbo GUO, Yanping JIA, Mingshuang ZHANG. The treatment of anionic surfactant wastewater using electrode ultrafiltration membrane bioreactor [J]. CIESC Journal, 2022, 73(10): 4679-4691. |
[15] | Pengbo FU,Jinyi TIAN,Wenjie LYU,Yuan HUANG,Yi LIU,Hao LU,Qiang YANG,Guangli XIU,Hualin WANG. Physical water treatment technology [J]. CIESC Journal, 2022, 73(1): 59-72. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||