Nanomaterials Based Drinking Water Purification: Comparative Study with a Conventional Water Purification Process

被引:6
|
作者
Simsek, Baris [1 ]
Sevgili, Inci [1 ,2 ]
Ceran, Ozge Bildi [1 ]
Korucu, Haluk [1 ]
Sara, Osman Nuri [3 ]
机构
[1] Cankiri Karatekin Univ, Fac Engn, Dept Chem Engn, TR-18120 Cankiri, Turkey
[2] Cankiri Municipals Water & Serv Assoc, TR-18100 Cankiri, Turkey
[3] Bursa Tech Univ, Fac Nat Sci Architecture & Engn, Dept Chem Engn, TR-16310 Bursa, Turkey
关键词
graphene oxide (GO); silver nanoparticles (AgNPs); graphene oxide-silver nanoparticles nano composites (GO-Ag); water purification; product design; OXIDE-SILVER NANOCOMPOSITES; REDUCED GRAPHENE OXIDE; NANOPARTICLES; MEMBRANE; NANOTECHNOLOGY; REMOVAL; PERFORMANCE; SANITATION; COMPOSITE; MECHANISM;
D O I
10.3311/PPch.12458
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
One of the ways of fully securing the presence of fresh water is water treatment process. Nanomaterials and nanotechnology offers an innovative solution for water treatment. In this study, physical, chemical and microbiological improvement rates of raw water were analyzed after filtration with graphene oxide. Graphene oxide's water treatment performance; silver nanoparticles, silver nanoparticles & graphene oxide composites that are commonly used in water treatment were compared with a traditional treatment method. When compared to the traditional method, there were improvements of 50%, 40.7%, 86.8% and 45.5% for color, TIC, TOC and hardness properties, respectively in water treatment by GO-based filtration with solid liquid ratio of 0.7% (v/v). In water treatment with GO-Ag based filtration, 39.8%, 69.8%, 10.3% and 28.6% of improvements were obtained for TIC, TOC, hardness and LSI value compared to the conventional method. Both GO at 0.7% (v/v) solid-liquid ratio and GO-Ag nanocomposites were successful in the number of total viable microorganisms and inhibiting microorganisms such as Escherichia coil fecal (gaita-infected), Salmonella typhi, Enterococcus faecalis, Pseudomona aeruginosa and Staphylococcus aureus. Among the studied parameters GO-Ag nanocomposites found to be the most suitable for drinking water treatment.
引用
收藏
页码:96 / 112
页数:17
相关论文
共 50 条
  • [21] Implementing nanoparticles for competitive drinking water purification
    Konstantinos Simeonidis
    Carlos Martinez-Boubeta
    Paula Zamora-Pérez
    Pilar Rivera-Gil
    Efthimia Kaprara
    Evgenios Kokkinos
    Manassis Mitrakas
    Environmental Chemistry Letters, 2019, 17 : 705 - 719
  • [22] New materials in adsorptive purification of drinking water
    Yurkevich, AA
    Popova, TA
    Kanarskii, AV
    RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 1995, 68 (09) : 1355 - 1357
  • [23] Drinking water safety and the development of purification technology
    Li Guibai (Harbin Institute of Technology
    Engineering Sciences, 2012, 10 (04) : 7 - 11
  • [24] Behavior of organic polymers in drinking water purification
    Lee, JF
    Liao, PM
    Tseng, DH
    Wen, PT
    CHEMOSPHERE, 1998, 37 (06) : 1045 - 1061
  • [25] The purification of drinking water by calcium hypochloride.
    Vincent, H
    Gaillard
    COMPTES RENDUS HEBDOMADAIRES DES SEANCES DE L ACADEMIE DES SCIENCES, 1915, 160 : 483 - 486
  • [26] PURIFICATION OF DRINKING-WATER BY IRRADIATION - A REVIEW
    GETOFF, N
    PROCEEDINGS OF THE INDIAN ACADEMY OF SCIENCES-CHEMICAL SCIENCES, 1993, 105 (06): : 373 - 391
  • [27] Implementing nanoparticles for competitive drinking water purification
    Simeonidis, Konstantinos
    Martinez-Boubeta, Carlos
    Zamora-Perez, Paula
    Rivera-Gil, Pilar
    Kaprara, Efthimia
    Kokkinos, Evgenios
    Mitrakas, Manassis
    ENVIRONMENTAL CHEMISTRY LETTERS, 2019, 17 (02) : 705 - 719
  • [28] APPLICATION OF MAGNETIC NANOPARTICLES IN DRINKING WATER PURIFICATION
    Xu, Yunfeng
    Li, Chengcai
    Zhu, Xia
    Huang, Wei E.
    Zhang, Dayi
    ENVIRONMENTAL ENGINEERING AND MANAGEMENT JOURNAL, 2014, 13 (08): : 2023 - 2029
  • [29] Application of capacitive deionization in drinking water purification
    Yu, Fei
    Yang, Yidi
    Zhang, Xiaochen
    Ma, Jie
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 354
  • [30] Drinking water purification plant in Slavonski Brod
    Nadilo, B.
    Gradevinar, 2001, 53 (03): : 151 - 156