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可持续处理后废水回用的膜技术:农业、环境和水文方面的考量

Membrane technology for sustainable treated wastewater reuse: agricultural, environmental and hydrological considerations.

作者信息

Oron Gideon, Gillerman Leonid, Bick Amos, Manor Yossi, Buriakovsky Nisan, Hagin Joseph

机构信息

Environment Water Resources, J Blaustein Institutes for Desert Research, Ben-Gurion University of The Negev, Kiryat Sde-Boker 84990, Israel.

出版信息

Water Sci Technol. 2008;57(9):1383-8. doi: 10.2166/wst.2008.243.

Abstract

Field experiments were conducted in agricultural fields in which secondary wastewater of the City of Arad (Israel) is reused for irrigation. For sustainable agricultural production and safe groundwater recharge the secondary effluent is further polished by a combined two-stage membrane pilot system. The pilot membrane system consists of two main in row stages: Ultrafiltration (UF) and Reverse Osmosis (RO). The UF stage is efficient in the removal of the pathogens and suspended organic matter while the successive RO stage provides safe removal of the dissolved solids (salinity). Effluents of various qualities were applied for agricultural irrigation along with continuous monitoring of the membrane system performance. Best agricultural yields were obtained when applying effluent having minimal content of dissolved solids (after the RO stage) as compared with secondary effluent without any further treatment and extended storage. In regions with shallow groundwater reduced soil salinity in the upper productive layers, maintained by extra membrane treatment, will guarantee minimal dissolved solids migration to the aquifers and minimize salinisation processes.

摘要

在以色列阿拉德市的农田中进行了田间试验,将该市的二级废水用于灌溉。为了实现可持续农业生产和安全的地下水回灌,二级出水通过一个组合式两级膜中试系统进行进一步净化。该中试膜系统由两个主要的串联阶段组成:超滤(UF)和反渗透(RO)。超滤阶段能有效去除病原体和悬浮有机物,而后续的反渗透阶段则能安全去除溶解固体(盐分)。将不同质量的出水用于农业灌溉,并持续监测膜系统的性能。与未经进一步处理和长时间储存的二级出水相比,当使用溶解固体含量最低的出水(反渗透阶段之后)进行灌溉时,获得了最佳的农业产量。在浅层地下水区域,通过额外的膜处理维持上层生产层土壤盐分的降低,将确保溶解固体向含水层的迁移最小化,并使盐碱化过程降至最低。

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