Removal of micro-organisms in a small-scale hydroponics wastewater treatment system

被引:15
|
作者
Ottoson, J. [1 ,2 ]
Norstroem, A. [3 ]
Dalhammar, G. [3 ]
机构
[1] Swedish Inst Infect Dis Control, Dept Parasitol Mycol & Water, S-17182 Solna, Sweden
[2] Royal Inst Technol, Land & Water Resources Engn Dept, Stockholm, Sweden
[3] Royal Inst Technol, Dept Biotechnol, Stockholm, Sweden
关键词
coliforms; coliphages; enterococci; hydroponics; removal; spores; wastewater treatment;
D O I
10.1111/j.1472-765X.2005.01689.x
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Aims: To measure the microbial removal capacity of a small-scale hydroponics wastewater treatment plant. Methods and Results: Paired samples were taken from untreated, partly-treated and treated wastewater and analysed for faecal microbial indicators, i.e. coliforms, Escherichia coli, enterococci, Clostridium perfringens spores and somatic coliphages, by culture based methods. Escherichia coli was never detected in effluent water after >5.8-log removal. Enterococci, coliforms, spores and coliphages were removed by 4.5, 4.1, 2.3 and 2.5 log respectively. Most of the removal (60-87%) took place in the latter part of the system because of settling, normal inactivation (retention time 12.7 d) and sand filtration. Time-dependent log-linear removal was shown for spores (k = -0.17 log d(-1), r(2) = 0.99). Conclusions: Hydroponics wastewater treatment removed micro-organisms satisfactorily. Significance and Impact of the Study: Investigations on the microbial removal capacity of hydroponics have only been performed for bacterial indicators. In this study it has been shown that virus and (oo) cyst process indicators were removed and that hydroponics can be an alternative to conventional wastewater treatment.
引用
收藏
页码:443 / 447
页数:5
相关论文
共 50 条
  • [31] Improving the efficiency of small-scale wastewater treatment by pneumatic agitation
    Sun, Shaohua
    Tong, Yanming
    Hou, Aiying
    Yin, Lijun
    Zheng, Tong
    Zheng, Jie
    Liu, Jicheng
    Cao, Bing
    Hu, Qing
    Coulon, Frederic
    Yang, Xiao Jin
    ENVIRONMENTAL TECHNOLOGY & INNOVATION, 2022, 26
  • [32] Effectiveness of flow stabilization in small-scale wastewater treatment facilities
    Nakajima, J
    Tanaka, R
    WATER SCIENCE AND TECHNOLOGY, 2005, 51 (11) : 167 - 174
  • [33] A GLASS MICRO-BEAD SYSTEM FOR INVESTIGATION OF SOIL MICRO-ORGANISMS
    PARR, JF
    PARKINSON, D
    NORMAN, AG
    NATURE, 1963, 200 (491) : 1227 - &
  • [34] Feasibility of contact aeration method for small-scale domestic wastewater treatment system in rural China
    Kuyama, T.
    Mizuochi, M.
    Koyanagi, H.
    Wako, T.
    WATER PRACTICE AND TECHNOLOGY, 2012, 7 (02):
  • [35] Analysis and Assessment of Biological Treatment Processes in a Small-Scale Wastewater Treatment Plant
    Mazeikiene, Ausra
    Vaiskunaite, Rasa
    POLISH JOURNAL OF ENVIRONMENTAL STUDIES, 2018, 27 (04): : 1629 - 1637
  • [36] Effects of Nutrient Solution Management and Environment on Tomato in Small-scale Hydroponics
    Solis-Toapanta, Elisa
    Fisher, Paul R.
    Gomez, Celina
    HORTTECHNOLOGY, 2020, 30 (06) : 697 - 705
  • [37] A Review on Hydroponics and the Technologies Associated for Medium- and Small-Scale Operations
    Velazquez-Gonzalez, Roberto S.
    Garcia-Garcia, Adrian L.
    Ventura-Zapata, Elsa
    Barceinas-Sanchez, Jose Dolores Oscar
    Sosa-Savedra, Julio C.
    AGRICULTURE-BASEL, 2022, 12 (05):
  • [39] Autotrophic denitrification with elemental sulphur in small-scale wastewater treatment facilities
    Kuai, L
    Verstraete, W
    ENVIRONMENTAL TECHNOLOGY, 1999, 20 (02) : 201 - 209
  • [40] Waste treatment and energy production from small-scale wastewater digesters
    Lansing, Stephanie
    Maile-Moskowitz, Ayella
    Eaton, Alexander
    BIORESOURCE TECHNOLOGY, 2017, 245 : 801 - 809