Removal of proflavine sulphate dye from wastewater using tea-bag tissue as an adsorbent

被引:7
作者
Hamud, Waeel M. [1 ]
Al-Karawi, Ahmed Jasim M. [1 ]
Al-Kinani, Emad M. [1 ]
Al-Sarray, Ali J. A. [2 ]
机构
[1] Mustansiriyah Univ, Coll Sci, Dept Chem, POB 46010, Baghdad, Iraq
[2] Mustansiriyah Univ, Polymer Res Unit, Collage Sci, Baghdad, Iraq
关键词
Water purification; Tea-bag tissue; Proflavine sulphate; Adsorption investigation; FIXED-BED COLUMN; MODIFIED CELLULOSE; AQUEOUS-SOLUTION; HEAVY-METAL; ADSORPTION; KINETICS; EQUILIBRIUM; CU2+; NI2+; CO2+;
D O I
10.1016/j.dwt.2024.100613
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Proflavine sulphate dye is acknowledged as a hazardous substance detrimental to both human health and the environment. Consequently, our primary objective was to put forth a straightforward, effective, and economical method for purifying water contaminated with proflavine sulphate dye. The efficacy of a tea-bag tissue (TBT) that utilizes a membrane made of cellulosic material has been evaluated for its potential as an adsorbent to remove proflavine sulphate from water. This assessment was conducted using pH 8 for the batch equilibrium approach. The adsorption investigations encompassed variables such as contact time, adsorbent mass, adsorbate concentration, and pH (with the determination of the adsorbent's pH at the point of zero charge, pHPZC). These studies indicate that a TBT is a promising membrane for effectively removing proflavine sulphate dye from water at a pH of 8. This conclusion is supported by its notable uptake capacity (%), rapid adsorption rate (achieving equilibrium within approximately 60-70 s), and high regeneration efficiency (approximately 86.98 %). The latter suggests the reversibility of the sorption process without compromising binding efficiency. The isothermal characteristics and adsorption kinetics of proflavine sulphate on the surface of the TBT were explored in relation to temperature variations and the initial mass of the TBT. The findings indicate a strong correlation between the experimental adsorption data and both the Langmuir and Freundlich isotherm equations. Moreover, the adsorption process is most accurately described by the pseudo 2nd order model. Molecular electrostatic potential (MEP) maps for cellulose and proflavine sulphate, based on density functional theory (DFT) calculations, were examined to elucidate charge-dependent properties and potential interactions between the adsorbent (cellulose) and the adsorbate (proflavine sulphate). According to the data, the main interaction between the two compounds is caused by their H bonds with one another.
引用
收藏
页数:9
相关论文
共 51 条
[1]   Using tea bag filter as a sufficient cellulosic membrane for removal of Safranin-O dye from water: adsorption and density functional theory studies [J].
Al-Kinani, Emad M. ;
Hadi, Sarah Adnan ;
Hamud, Waeel M. ;
Al-Karawi, Ahmed Jasim M. ;
Ahmed, Randa Khalid ;
Kansiz, Sevgi ;
Sert, Yusuf .
DESALINATION AND WATER TREATMENT, 2023, 287 :233-244
[2]   A critical review on the treatment of dye-containing wastewater: Ecotoxicological and health concerns of textile dyes and possible remediation approaches for environmental safety [J].
Al-Tohamy, Rania ;
Ali, Sameh S. ;
Li, Fanghua ;
Okasha, Kamal M. ;
Mahmoud, Yehia A. -G. ;
Elsamahy, Tamer ;
Jiao, Haixin ;
Fu, Yinyi ;
Sun, Jianzhong .
ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 2022, 231
[3]   Various Approaches for the Detoxification of Toxic Dyes in Wastewater [J].
Alsukaibi, Abdulmohsen K. D. .
PROCESSES, 2022, 10 (10)
[4]   Structural investigations, Hirsfeld surface analyses, and molecular docking studies of a phenoxo-bridged binuclear Zinc(II) complex [J].
Azam, Mohammad ;
Sahoo, Prakash Kumar ;
Mohapatra, Ranjan K. ;
Kumar, Manjeet ;
Ansari, Azaj ;
Moon, Il Soo ;
Chutia, Arunabhiram ;
Al-Resayes, Saud, I ;
Biswal, Susanta Kumar .
JOURNAL OF MOLECULAR STRUCTURE, 2022, 1251
[5]   The adsorption kinetics and mechanism of odorous gases onto textile fibers [J].
Bai, Wenli ;
Yu, Hao ;
Liu, Longlong ;
Pakdel, Esfandiar ;
Tang, Bin ;
Su, Hongli ;
Hurren, Christopher ;
Liu, Lei ;
Wang, Jinfeng ;
Wang, Xungai .
RSC SUSTAINABILITY, 2023, 1 (02) :357-367
[6]  
Barassi G.C., 2023, Introduction to Adsorption: Kinetics and Thermodynamics
[7]   Studies of the kinetics and mechanism of the removal process of proflavine dye through adsorption by graphene oxide [J].
Bhattacharyya, Amartya ;
Mondal, Dipankar ;
Roy, Indranil ;
Sarkar, Gunjan ;
Saha, Nayan Ranjan ;
Rana, Dipak ;
Ghosh, Tapas Kumar ;
Mandal, Debabrata ;
Chakraborty, Mukut ;
Chattopadhyay, Dipankar .
JOURNAL OF MOLECULAR LIQUIDS, 2017, 230 :696-704
[8]   Adsorption behavior and mechanisms of the emerging antibiotic pollutant norfloxacin on eco-friendly and low-cost hydroxyapatite: Integrated experimental and response surface methodology optimized adsorption process [J].
Cheikh, Sabrina ;
Imessaoudene, Ali ;
Bollinger, Jean-Claude ;
Manseri, Amar ;
Bouzaza, Abdelkrim ;
Hadadi, Amina ;
Hamri, Nadia ;
Amrane, Abdeltif ;
Mouni, Lotfi .
JOURNAL OF MOLECULAR LIQUIDS, 2023, 392
[9]  
chihbi E., 2023, Mater Today Sustain, V24
[10]   Bacterial Cellulose and Its Applications [J].
Choi, Soon Mo ;
Rao, Kummara Madhusudana ;
Zo, Sun Mi ;
Shin, Eun Joo ;
Han, Sung Soo .
POLYMERS, 2022, 14 (06)