Integrated system for recycling and treatment of hazardous pharmaceutical wastewater

被引:15
|
作者
Abdelfattah, I [1 ]
Abuarab, M. E. [2 ]
Mostafa, E. [2 ]
El-Awady, M. H. [1 ]
Aboelghait, K. M. [1 ]
El-Shamy, A. M. [3 ]
机构
[1] Natl Res Ctr, Water Pollut Res Dept, El Bohouth St 33,PO 12622, Giza, Egypt
[2] Cairo Univ, Fac Agr, Dept Agr Engn, Giza, Egypt
[3] Natl Res Ctr, Phys Chem Dept, Electrochem & Corros Lab, El Bohouth St 33,PO 12622, Giza, Egypt
关键词
Wastewater reuse; Chemical treatment; AOPs; Nanocomposites; Plant growth percentage; REMOVAL; PHENOL;
D O I
10.1007/s13762-022-04269-7
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study aimed to investigate an integrated system that can deal with different pharmaceutical wastewaters. Pharmaceutical wastewater was subjected to biological, chemical and advanced oxidation according to its pollutant's nature. Wastewater with high total suspended solids (TSS 480 mg/L) was subjected to a conventional chemical treatment process utilizing different coagulants. The best results were obtained by using calcium oxide and alum added with calcium oxide where the removal efficiency of COD was 46.8% and 51%. Highly loaded pharmaceutical wastewater (COD 9700 mg/L, BOD/COD 0.16) had been subjected to Fenton oxidation, the removal of COD reached 80.4%, and the ratio of BOD/COD is enhanced to 0.6. Photocatalysis by using different nanomaterials was applied to pharmaceutical wastewater containing 10 mg/L of phenols. Phenol is completely removed by using mesoporous TiO2 after 90-min irradiation and after 120 min in the case of TiO2/P25 and TiO2/UV 100 nanocomposites, while it is removed by 40% in case of using mesoporous TiO2/Ta2O5. Effluent-treated water from previous routes was subjected to biological treatment and followed with disinfection by using UV as post-treatment. The final COD was 40, and it matches with the Egyptian practice code for water reuse in agriculture (ECP 501 in Egyptian code of practice for the use of treated municipal wastewater for agricultural purposes. The ministry of Housing Utilities and Urban Communities., n.d. No title, 2015). Results showed also using treated wastewater in irrigation of barley and bean seeds achieved germination ratio up to 71% in barely and 70% in bean compared with that irrigated with Nile water, which reached 70% and 75%, while it was about 16.6% and 30% in case of irrigation with untreated wastewater (Jeong et al. in Water (Switzerland). https://doi.org/10.3390/w8040169, 2016).
引用
收藏
页码:4101 / 4110
页数:10
相关论文
共 50 条
  • [31] A Review on Advanced Treatment of Pharmaceutical Wastewater
    Guo, Y.
    Qi, P. S.
    Liu, Y. Z.
    2017 INTERNATIONAL CONFERENCE ON ENVIRONMENTAL AND ENERGY ENGINEERING (IC3E 2017), 2017, 63
  • [32] Treatment of pharmaceutical wastewater by potassium permanganate
    Li, Guoting
    Ying, Yimei
    ADVANCED RESEARCH ON INFORMATION SCIENCE, AUTOMATION AND MATERIAL SYSTEM, PTS 1-6, 2011, 219-220 : 36 - 39
  • [33] Research on the Technology of Pharmaceutical Wastewater Treatment
    Zhang, Chuan-guo
    2018 FIRST INTERNATIONAL CONFERENCE ON ENVIRONMENT PREVENTION AND POLLUTION CONTROL TECHNOLOGY (EPPCT 2018), 2018, 199
  • [34] The Role of Sulphidogenesis in Anaerobic Treatment Phase of Tannery Wastewater Treatment in Advanced Integrated Wastewater Pond System
    I. Tadesse
    F.B. Green
    J.A. Puhakka
    Biodegradation, 2003, 14 : 219 - 227
  • [35] The role of sulphidogenesis in anaerobic treatment phase of tannery wastewater treatment in advanced integrated wastewater pond system
    Tadesse, I
    Green, FB
    Puhakka, JA
    BIODEGRADATION, 2003, 14 (03) : 219 - 227
  • [36] Removal of hazardous pharmaceutical from water by photocatalytic treatment
    Choina, J.
    Duwensee, H.
    Flechsig, G. -U.
    Kosslick, H.
    Morawski, A. W.
    Tuan, V. A.
    Schulz, A.
    CENTRAL EUROPEAN JOURNAL OF CHEMISTRY, 2010, 8 (06): : 1288 - 1297
  • [37] Plantwide integrated automation system for municipal wastewater treatment plant
    Zhao, LJ
    Yuan, DC
    Cong, QM
    Proceedings of 2005 International Conference on Machine Learning and Cybernetics, Vols 1-9, 2005, : 1273 - 1278
  • [38] Sustainable and clean oilfield development: Optimal operation of wastewater treatment and recycling system
    Zhou, Xingyuan
    Zhang, Haoran
    Long, Yin
    Song, Mengjie
    Qiu, Rui
    Yan, Yamin
    Yang, Xiaofan
    Liang, Yongtu
    JOURNAL OF CLEANER PRODUCTION, 2020, 252
  • [39] Removal of sulfide in integrated anaerobic–aerobic wastewater treatment system
    A. Gangagni Rao
    K. Krishna Prasad
    G. Venkata Naidu
    N. Chandrashekar Rao
    P. N. Sarma
    Clean Technologies and Environmental Policy, 2003, 6 (1) : 66 - 72
  • [40] Integrated advanced natural wastewater treatment system for small communities
    Surampalli, R. Y.
    Banerji, S. K.
    Tyagi, R. D.
    Yang, P. Y.
    WATER SCIENCE AND TECHNOLOGY, 2007, 55 (11) : 239 - 243