化工学报 ›› 2024, Vol. 75 ›› Issue (3): 890-899.DOI: 10.11949/0438-1157.20240048
张天永1,2(), 张晶怡1, 姜爽1,2(
), 李彬1,2(
), 吕东军3, 陈都民4, 陈雪4
收稿日期:
2024-01-10
修回日期:
2024-01-29
出版日期:
2024-03-25
发布日期:
2024-05-11
通讯作者:
姜爽,李彬
作者简介:
张天永(1966—),男,博士,教授,tyzhang@tju.edu.cn;
基金资助:
Tianyong ZHANG1,2(), Jingyi ZHANG1, Shuang JIANG1,2(
), Bin LI1,2(
), Dongjun LYU3, Dumin CHEN4, Xue CHEN4
Received:
2024-01-10
Revised:
2024-01-29
Online:
2024-03-25
Published:
2024-05-11
Contact:
Shuang JIANG, Bin LI
摘要:
将染料弱酸性蓝AS(AS)生产排放的含盐废水喷雾干燥后制成废盐,再将其有机污染物煅烧制备成类活性炭吸附剂(LAC),用于AS染料生产过程中产生的洗涤废水的吸附脱色净化,同时回收粗盐NaCl可循环用于AS工业生产的盐析过程。对LAC进行吸附过程动力学、热力学研究,并研究AS染料废水溶液初始浓度、温度及pH对吸附性能的影响。在40 mg/L的AS染料废水中,温度为318 K的条件下,平衡吸附量为29.22 mg/g。在酸性及温度较高时吸附能力较强。Langmuir等温线方程能更好拟合吸附实验结果。另外,采用一锅混合法,添加四水合乙酸镁对LAC进行改性,改性后的吸附剂LACMg0.75比表面积较LAC提升了近5倍,饱和吸附量能够达到550.02 mg/g,较LAC提升了接近20倍。
中图分类号:
张天永, 张晶怡, 姜爽, 李彬, 吕东军, 陈都民, 陈雪. 弱酸性蓝AS染料排放的废盐制碳基吸附剂及利用[J]. 化工学报, 2024, 75(3): 890-899.
Tianyong ZHANG, Jingyi ZHANG, Shuang JIANG, Bin LI, Dongjun LYU, Dumin CHEN, Xue CHEN. Preparation and utilization of carbon-based adsorbent from organic pollutants in waste salt during acidic blue AS dye production[J]. CIESC Journal, 2024, 75(3): 890-899.
样品 | 比表面积/ (m2/g) | 孔容/(cm3/g) | ||
---|---|---|---|---|
微孔 | 介孔 | 总孔容 | ||
LACMg0.75 | 638.4 | 0.10 | 1.82 | 1.91 |
LACMg0.5 | 542.3 | 0.07 | 1.37 | 1.43 |
LACMg1 | 597.5 | 0.07 | 1.46 | 1.53 |
LACMg1.25 | 592.8 | 0.05 | 1.13 | 1.18 |
LAC | 133.2 | 0.04 | 0.10 | 0.15 |
表1 吸附剂的比表面积及孔容
Table 1 Specific surface area and pore volume of the adsorbent
样品 | 比表面积/ (m2/g) | 孔容/(cm3/g) | ||
---|---|---|---|---|
微孔 | 介孔 | 总孔容 | ||
LACMg0.75 | 638.4 | 0.10 | 1.82 | 1.91 |
LACMg0.5 | 542.3 | 0.07 | 1.37 | 1.43 |
LACMg1 | 597.5 | 0.07 | 1.46 | 1.53 |
LACMg1.25 | 592.8 | 0.05 | 1.13 | 1.18 |
LAC | 133.2 | 0.04 | 0.10 | 0.15 |
煅烧温度/℃ | 煅烧后剩余 固体质量/g | LAC收率/% |
---|---|---|
300 | 4.91 | 有易分散在水中的物质难以洗净 |
350 | 4.82 | 有易分散在水中的物质难以洗净 |
400 | 4.73 | 57.1 |
450 | 4.69 | 49.2 |
500 | 4.64 | 40.9 |
550 | 4.59 | 有易分散在水中的物质难以洗净 |
表2 不同温度煅烧废盐得到的固体质量及LAC收率
Table 2 Solid mass and LAC recovery from waste salt calcined at different temperatures
煅烧温度/℃ | 煅烧后剩余 固体质量/g | LAC收率/% |
---|---|---|
300 | 4.91 | 有易分散在水中的物质难以洗净 |
350 | 4.82 | 有易分散在水中的物质难以洗净 |
400 | 4.73 | 57.1 |
450 | 4.69 | 49.2 |
500 | 4.64 | 40.9 |
550 | 4.59 | 有易分散在水中的物质难以洗净 |
模型 | 参数 | 278 K | 298 K | 318 K |
---|---|---|---|---|
准一级动力学模型 | k1/min-1 | 0.0152 | 0.0199 | 0.0182 |
q1/(mg/g) | 8.8852 | 12.0109 | 11.0777 | |
R2 | 0.9760 | 0.9265 | 0.9915 | |
准二级动力学模型 | k2/(g/(mg·min)) | 0.0052 | 0.0042 | 0.0046 |
q2/(mg/g) | 25.0878 | 29.3944 | 29.9670 | |
R2 | 0.9991 | 0.9988 | 0.9993 |
表3 AS吸附动力学参数
Table 3 Adsorption kinetic parameters of AS
模型 | 参数 | 278 K | 298 K | 318 K |
---|---|---|---|---|
准一级动力学模型 | k1/min-1 | 0.0152 | 0.0199 | 0.0182 |
q1/(mg/g) | 8.8852 | 12.0109 | 11.0777 | |
R2 | 0.9760 | 0.9265 | 0.9915 | |
准二级动力学模型 | k2/(g/(mg·min)) | 0.0052 | 0.0042 | 0.0046 |
q2/(mg/g) | 25.0878 | 29.3944 | 29.9670 | |
R2 | 0.9991 | 0.9988 | 0.9993 |
模型 | 参数 | 278 K | 298 K | 318 K |
---|---|---|---|---|
Langmuir | qm/(mg/g) | 29.6033 | 30.5343 | 31.3676 |
KL/(L/mg) | 0.8551 | 1.9705 | 2.9711 | |
R2 | 0.9987 | 0.9998 | 0.9999 | |
Freundlich | 1/n | 0.1031 | 0.0585 | 0.0489 |
KF/(mg | 19.5602 | 24.3214 | 25.9670 | |
R2 | 0.9194 | 0.9215 | 0.9037 |
表4 不同等温方程模拟吸附相关参数
Table 4 Relevant parameters of different isothermal equation simulation
模型 | 参数 | 278 K | 298 K | 318 K |
---|---|---|---|---|
Langmuir | qm/(mg/g) | 29.6033 | 30.5343 | 31.3676 |
KL/(L/mg) | 0.8551 | 1.9705 | 2.9711 | |
R2 | 0.9987 | 0.9998 | 0.9999 | |
Freundlich | 1/n | 0.1031 | 0.0585 | 0.0489 |
KF/(mg | 19.5602 | 24.3214 | 25.9670 | |
R2 | 0.9194 | 0.9215 | 0.9037 |
1 | 白瑞, 刘皓, 卢翠英, 等. 改性活性炭对染料废水的吸附性能研究[J]. 当代化工, 2019, 48(5): 895-898. |
Bai R, Liu H, Lu C Y, et al. Study on adsorption performance of modified activated carbon for dye wastewater[J]. Contemporary Chemical Industry, 2019, 48(5): 895-898. | |
2 | 周龙生, 王元有, 周慧, 等. 椰棕吸附染料废水中碱性红46性能研究[J]. 山东化工, 2023, 52(4): 199-202, 207. |
Zhou L S, Wang Y Y, Zhou H, et al. Study on adsorption of basic red 46 from dye wastewater by coconut fiber[J]. Shandong Chemical Industry, 2023, 52(4): 199-202, 207. | |
3 | Garg A, Chopra L. Dye waste: a significant environmental hazard[J]. Materials Today: Proceedings, 2022, 48: 1310-1315. |
4 | 任南琪, 周显娇, 郭婉茜, 等. 染料废水处理技术研究进展[J]. 化工学报, 2013, 64(1): 84-94. |
Ren N Q, Zhou X J, Guo W Q, et al. A review on treatment methods of dye wastewater[J]. CIESC Journal, 2013, 64(1): 84-94. | |
5 | 崔玉民, 殷榕灿. 染料废水处理方法研究进展[J]. 科技导报, 2021, 39(18): 79-87. |
Cui Y M, Yin R C. The progress of treatment methods of dye wastewater[J]. Science & Technology Review, 2021, 39(18): 79-87. | |
6 | Bhardwaj K, Singh A K. Bio-waste and natural resource mediated eco-friendly synthesis of zinc oxide nanoparticles and their photocatalytic application against dyes contaminated water[J]. Chemical Engineering Journal Advances, 2023, 16: 100536. |
7 | 张轶, 丛燕青, 孙培德. 电絮凝处理甲基橙废水的实验及动力学模型[J]. 化工学报, 2009, 60(9): 2339-2345. |
Zhang Y, Cong Y Q, Sun P D. Experiment and kinetic model for methyl orange wastewater removal by electrocoagulation[J]. CIESC Journal, 2009, 60(9): 2339-2345. | |
8 | 王建坤, 郭晶, 张昊, 等. 阳离子淀粉染料吸附材料的制备及表征[J]. 化工学报, 2017, 68(5): 2112-2121. |
Wang J K, Guo J, Zhang H, et al. Synthesis and characterization of cationic starch dye adsorbing material[J]. CIESC Journal, 2017, 68(5): 2112-2121. | |
9 | Mahardiani L, Lesana P S, Saputro S. Chemical approach for the synthesis of nanofibers from sugar palm fiber as a functional adsorbent modified with cobalt oxide to remove dye waste[J]. Key Engineering Materials, 2022, 920: 95-105. |
10 | 朱连燕, 王玉明, 周幸福. 响应曲面法优化电催化降解染料废水工艺的研究[J]. 化工学报, 2020, 71(3): 1335-1342. |
Zhu L Y, Wang Y M, Zhou X F. Application of response surface methodology in optimizing electrocatalytic degradation of dye wastewater[J]. CIESC Journal, 2020, 71(3): 1335-1342. | |
11 | 袁思杰, 张芮铭. 染料废水处理技术研究进展[J]. 染料与染色, 2022, 59(4): 55-62. |
Yuan S J, Zhang R M. Research progress of dye wastewater treatment technology[J]. Dyestuffs and Coloration, 2022, 59(4): 55-62. | |
12 | Qu Y P, Yan D Q, Su R S, et al. Study on adsorption of dye wastewater by modified fly ash[J]. E3S Web of Conferences, 2021, 267: 02020. |
13 | Arat R, Fidan T, Yüce M, et al. Non-destructive covalent surface alkylation of graphitic carbon nitride for enhanced photocatalytic dye degradation in water[J]. FlatChem, 2023, 43(50): 100599. |
14 | Huang Z H, Li Y Z, Chen W J, et al. Modified bentonite adsorption of organic pollutants of dye wastewater[J]. Materials Chemistry and Physics, 2017, 202: 266-276. |
15 | 杨文龙, 白晓琳, 尹薇薇, 等. 染料废水处理方法[J]. 辽宁化工, 2023, 52(1): 121-124. |
Yang W L, Bai X L, Yin W W, et al. Treatment of dyestuff wastewater[J]. Liaoning Chemical Industry, 2023, 52(1): 121-124. | |
16 | Singh R, Bokka S, Kumar Lakshya A, et al. CaO-doped tetragonal ZrO2 nanoparticles as an effective adsorbent for the removal of organic dye waste[J]. Applied Surface Science, 2022, 596: 153651. |
17 | Nie D, Wang P, Zang C F, et al. Preparation of ZnO-incorporated porous carbon nanofibers and adsorption performance investigation on methylene blue[J]. ACS Omega, 2022, 7(2): 2198-2204. |
18 | Wang Y J, Gao S, Yan X Y, et al. The impact of water quality on the formation of halogenated benzoquinones and the adsorption efficiency by activated carbon[J]. Journal of Environmental Sciences, 2024, 135: 693-702. |
19 | 王军正, 陆小凤, 梁宁, 等. 高温煅烧铝土矿去除水中氟离子性能研究[J]. 轻金属, 2020(4): 59-62. |
Wang J Z, Lu X F, Liang N, et al. Study on the performance of high temperature calcined bauxite to remove fluorine ions in water[J]. Light Metals, 2020(4): 59-62. | |
20 | 金帅, 贾庆明, 陕绍云, 等. 废弃物制备钙基二氧化碳吸附剂的研究进展[J]. 硅酸盐通报, 2018, 37(11): 3475-3480. |
Jin S, Jia Q M, Shan S Y, et al. Research progress of calcium based carbon dioxide adsorbent preparation from solid waste[J]. Bulletin of the Chinese Ceramic Society, 2018, 37(11): 3475-3480. | |
21 | 冯彦房, 何世颖, 薛利红, 等. 高温煅烧稀土矿渣对水体中磷的吸附过程与机理[J]. 生态与农村环境学报, 2014, 30(5): 627-633. |
Feng Y F, He S Y, Xue L H, et al. Adsorption of phosphorus in aqueous solution by calcined rare earth slag and its mechanism[J]. Journal of Ecology and Rural Environment, 2014, 30(5): 627-633. | |
22 | 周波, 穆传辉, 唐余玲, 等. 制革污泥生物炭对废水中亚甲基蓝的吸附性能研究[J]. 皮革科学与工程, 2021, 31(6):14-20. |
Zhou B, Mu C H, Tang Y L, et al. Study on adsorption properties of waste methylene blue from tannery sludge biochar[J]. Leather Science and Engineering, 2021, 31(6):14-20. | |
23 | Dod R, Banerjee G, Saini S. Adsorption of methylene blue using green pea peels (Pisum sativum): a cost-effective option for dye-based wastewater treatment[J]. Biotechnology and Bioprocess Engineering, 2012, 17(4): 862-874. |
24 | 张欣磊, 徐广文, 夏孔浩, 等. 芳胺废渣衍生多孔碳高效吸附去除对硝基苯酚[J]. 精细化工, 2023, 40(10): 2294-2301. |
Zhang X L, Xu G W, Xia K H, et al. Efficient adsorption removal of p-nitrophenol by aromatic amine waste derived porous carbon[J]. Fine Chemicals, 2023, 40(10): 2294-2301. | |
25 | Hadi P, Xu M, Ning C, et al. A critical review on preparation, characterization and utilization of sludge-derived activated carbons for wastewater treatment[J]. Chemical Engineering Journal, 2015, 260: 895-906. |
26 | Streit A F M, Collazzo G C, Druzian S P, et al. Adsorption of ibuprofen, ketoprofen, and paracetamol onto activated carbon prepared from effluent treatment plant sludge of the beverage industry[J]. Chemosphere, 2021, 262: 128322. |
27 | Song Y L, Wang L J, Qiang X, et al. An overview of biological mechanisms and strategies for treating wastewater from printing and dyeing processes[J]. Journal of Water Process Engineering, 2023, 55: 104242. |
28 | Farias N O, Albuquerque A F, Dos Santos A, et al. Is natural better? An ecotoxicity study of anthraquinone dyes[J]. Chemosphere, 2023, 343: 140174. |
29 | Tolkou A K, Mitropoulos A C, Kyzas G Z. Removal of anthraquinone dye from wastewaters by hybrid modified activated carbons[J]. Environmental Science and Pollution Research, 2023, 30(29): 73688-73701. |
30 | Amano F, Akaki Y, Yamakata A. Effects of hydroxy groups in anthraquinone dyes on photocatalytic activity of visible-light-sensitized Pt-TiO2 for hydrogen evolution[J]. Catalysis Surveys from Asia, 2023, 27(1): 75-83. |
31 | 杨冬梅. C.I.酸性蓝25合成新工艺研究[D]. 杭州: 浙江工业大学, 2015. |
Yang D M. Study on the novel process for synthesis of C.I. acid blue 25[D]. Hangzhou: Zhejiang University of Technology, 2015. | |
32 | 穆振义, 孙继友, 王迪. 弱酸性染料研究(Ⅱ): 二苯甲烷为桥基蒽醌弱酸性染料[J]. 天津大学学报, 1995(3): 361-368. |
Mu Z Y, Sun J Y, Wang D. A study of acid dyes (milling dyes) (part 2): Blue diphenyl-methane acid dyes[J]. Journal of Tianjin University (Science and Technology), 1995(3): 361-368. | |
33 | 赵梦琪, 张辉, 强西怀. 金属盐改性TWS鞣革纤维对酸性蓝25的吸附性能[J]. 应用化工, 2022, 51(3): 678-684. |
Zhao M Q, Zhang H, Qiang X H. Adsorption performance of TWS tanned leather fiber modified by metal salt to Acid Blue 25[J]. Applied Chemical Industry, 2022, 51(3): 678-684. | |
34 | 周珊, 杜冬云, 尚邦全, 等. 膨润土-絮凝-内电解法处理酸性蓝印染废水[J]. 湖北化工, 2002, 19(6): 44-46. |
Zhou S, Du D Y, Shang B Q, et al. The bentonite-coagulate-inside electrolytic treatment of dyeing waste water[J]. Hubei Chemical, 2002, 19(6): 44-46. | |
35 | 王代芝, 周珊, 揭武. 用改性粉煤灰处理酸性蓝染料废水的研究[J]. 粉煤灰综合利用, 2004, 17(5): 32-33. |
Wang D Z, Zhou S, Jie W. The research on dealing with the dyeing wastewater of dimacide blue with modified fly ash[J]. Fly Ash Comprehensive Utilization, 2004, 17(5): 32-33. |
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