Removal of fluoride from water by using a coagulant (inorganic polymeric coagulant)

被引:26
|
作者
Solanki, Yogendra Singh [1 ]
Agarwal, Madhu [1 ]
Maheshwari, Karishma [1 ]
Gupta, Sanjeev [2 ]
Shukla, Pushkar [2 ]
Gupta, A. B. [3 ]
机构
[1] Malaviya Natl Inst Technol, Dept Chem Engn, Jaipur 302017, Rajasthan, India
[2] Grasim Ind Ltd Aditya Birla Grp, Bharuch, Gujrat, India
[3] Malaviya Natl Inst Technol, Dept Civil Engn, Jaipur 302017, Rajasthan, India
关键词
Nalgonda; IPC; De-fluoridation; Coagulation; Fluoride; ALUMINUM; ADSORPTION; TRANSFORMATION;
D O I
10.1007/s11356-020-09579-2
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Excess fluoride (F) ion of drinking water is a major problem in many areas of India and causes harmful effects such as dental and skeletal fluorosis. The World Health Organization (WHO 2004) recommends an upper limit of 1.5 mg/L fluoride in drinking water, and the concentration of fluoride in groundwater has been found 10-20 times higher in many of the States in India. In this study, the performance of inorganic polymeric coagulant (IPC) named as IPC-23, IPC-13, IPC-17, and alum for fluoride removal from drinking water was investigated. The amount of IPC was decided according to the Al(2)O(3)amount present in the alum dose recommended in the batch Nalgonda defluoridation technique. The effects of coagulant dosage (IPC) at different pH and initial concentrations of fluoride on fluoride removal have been studied. The synthetic sample having a fluoride concentration of 2 to 6 mg/L was treated at the optimized dosage and residual fluoride was reduced to 1.0 to 1.2 ppm with IPC-17. Residual aluminum in treated water was well within WHO norms (< 200 mu g/L) for drinking water. Optimum pH for fluoride removal was 6.5, and there was deterioration in the performance of IPC at both lower and higher pH.
引用
收藏
页码:3897 / 3905
页数:9
相关论文
共 50 条
  • [21] Assessment of toxicity and antimicrobial performance of polymeric inorganic coagulant and evaluation for eutrophication reduction
    Marwa Youssef
    Sara S. El-Tanany
    Yassmin Moatasim
    Shimaa M. Abdel Moniem
    Bahaa A. Hemdan
    Nabila S. Ammar
    Gamila E. El-Taweel
    Azza M. Ashmawy
    Mohamed I. Badawy
    Mohamed R. Lasheen
    Hanan S. Ibrahim
    Mohamed Eid M. Ali
    Scientific Reports, 14
  • [22] Removal of turbidity from Magdalena river using banana pith as coagulant
    Sierra-Julio, Andres
    Navarro-Silva, Aaron
    Mercado-Martinez, Ivan
    Florez-Vergara, Alexy
    Jurado-Eraso, Mario
    UIS INGENIERIAS, 2019, 18 (04): : 131 - 138
  • [23] Coagulation Performance of a Novel Inorganic Polymeric Coagulant-Polyferric-Magnesium Sulfate
    Wei, Yanxin
    Ding, Aimin
    Xu, Juncui
    Bi, Jianhong
    ASIAN JOURNAL OF CHEMISTRY, 2011, 23 (09) : 4196 - 4198
  • [24] The use of tannins from Turkish acorns (valonia) in water treatment as a coagulant and coagulant aid
    Özacar, Mahmut
    S¸engil, I. Ayhan
    Turkish Journal of Engineering and Environmental Sciences, 2002, 26 (03): : 255 - 263
  • [25] Removal of phosphorus and nitrogen from swine manure using a natural coagulant
    Cavalcanti, Gillyard
    Maria, Roselene
    Carvalho, Milene
    do Amaral, Adriana Garcia
    Bolna, Rosane Freire
    ENGENHARIA SANITARIA E AMBIENTAL, 2023, 28
  • [26] Effects of coagulant type and coagulation conditions on NOM removal from drinking water
    Eikebrokk, B
    CHEMICAL WATER AND WASTEWATER TREATMENT VI, 2000, : 211 - 220
  • [27] Removal of reactive dyes from wastewater using Fe(III) coagulant
    Papic, S
    Koprivanac, N
    Bozic, AL
    JOURNAL OF THE SOCIETY OF DYERS AND COLOURISTS, 2000, 116 (11): : 352 - 358
  • [28] Inorganic coagulant induced gypsum scaling in nanofiltration process: Effects of coagulant concentration, coagulant conditioning time and fouling strategies
    Lin, Dachao
    Yan, Zhongsen
    Tang, Xiaobin
    Wang, Jinlong
    Liang, Heng
    Li, Guibai
    SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 670 : 685 - 695
  • [29] Color removal from water using praestol anionic and cationic flocculants in combination with aluminum sulfate as coagulant
    Kurenkov, VF
    Snigirev, SV
    Shishkareva, LS
    RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 2000, 73 (02) : 269 - 273
  • [30] Coagulation and sedimentation of bacteria using a highly biodegradable polymeric coagulant
    Kawabata, Nariyoshi
    Fuse, Tomoaki
    Journal of Applied Polymer Science, 2006, 100 (02): : 1618 - 1623