Minimizing health risks during secondary effluent application via subsurface drip irrigation

Gideon Oron, Lieonid Gillerman, Avraham Lael, Yossi Manor, Erez Braude, Amos Bick

    Research output: Contribution to journalArticlepeer-review

    9 Scopus citations


    Health risks posed on consumers due to the use of agricultural products irrigated with reclaimed wastewater were assessed by numerical simulation. The analysis is based on defining of an Exposure Model (EM) which takes into account several parameters: (i) the quality of the applied wastewater, (ii) the irrigation method, (iii) the elapsed times between irrigation, harvest, and product consumption, and; (iv) the consumers' habits. The exposure model is used for numerical simulation of human consumers' risks by running the Monte Carlo simulation method. Although some deviations in the numerical simulation which are probably due to uncertainty (impreciseness in quality of input data) and variability due to diversity among populations reasonable results were accepted. Accordingly, there is a several orders of magnitude difference in the risk of infection between the different exposure scenarios with the same water quality. The variability indicates the need for setting risk-based criteria for wastewater reclamation, including the application method and environmental conditions, rather than single water quality guidelines. Extra data is required to decrease uncertainty in the risk assessment. Future research needs to include definite acceptable risk criteria, more accurate dose-response modeling, information regarding pathogen survival in treated wastewater, additional data related to the passage of pathogens into and in the plants during irrigation, and information referring to the consuming habits of the human community.

    Original languageEnglish
    Pages (from-to)2330-2337
    Number of pages8
    JournalWater Science and Technology
    Issue number10
    StatePublished - 1 Dec 2010


    • Dose-response
    • Drip irrigation
    • Effluent reuse
    • Exposure
    • Monte-Carlo simulation
    • Risks

    ASJC Scopus subject areas

    • Environmental Engineering
    • Water Science and Technology


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