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水培技术作为城市农业中分散式的生活污水处理和蔬菜生产系统:综述。

Hydroponic technology as decentralised system for domestic wastewater treatment and vegetable production in urban agriculture: A review.

机构信息

Discipline of Crop and Horticultural Sciences, School of Agricultural, Earth and Environmental Science, University of KwaZulu-Natal, Private Bag X01, Scottsville, 3209 Pietermaritzburg, South Africa.

Discipline of Crop and Horticultural Sciences, School of Agricultural, Earth and Environmental Science, University of KwaZulu-Natal, Private Bag X01, Scottsville, 3209 Pietermaritzburg, South Africa.

出版信息

Sci Total Environ. 2020 Jan 1;698:134154. doi: 10.1016/j.scitotenv.2019.134154. Epub 2019 Aug 31.

Abstract

Water scarcity, nutrient-depleted soils and pollution continue to be a major challenge worldwide and these are likely to worsen with increasing global populations particularly, in urban areas. As a result, environmental and public health problems may arise from the insufficient provision of sanitation and wastewater disposal facilities. Because of this, a paradigm shifts with regard to the sustainable management of waste disposal in a manner that could protect the environment at the same time benefits society by allowing nutrient recovery and reuse for food production is required. Hence, the use of urban wastewater for agricultural irrigation has more potential, especially when incorporating the reuse of nutrients like nitrogen and phosphorous, which are essential for crop production. Among the current treatment technologies applied in urban wastewater reuse for agriculture, hydroponic system is identified as one of the alternative technology that can be integrated with wastewater treatment. The integration of hydroponic system with municipal wastewater treatment has the advantage of reducing costs in terms of pollutants removal while reducing maintenance and energy costs required for conventional wastewater treatment. The efficiency of a hydroponic system with regard to municipal wastewater reuse is mainly linked to its capacity to allow continuous use of wastewater through the production of agricultural crops and the removal of pollutants/nutrients (nitrogen and phosphorus), resulting to increased food security and environmental protection. Moreover, the suitability of hydroponic system for wastewater treatment is derived from its capacity to minimize associated health risks to farmers, harvested crop and consumers, that may arise through contact with wastewater.

摘要

水资源短缺、营养贫瘠的土壤和污染仍然是全球面临的主要挑战,尤其是在全球人口不断增加的情况下,这些问题在城市地区可能会更加严重。因此,环境卫生和公共健康问题可能会因卫生和废水处理设施供应不足而产生。鉴于此,需要对废物处理进行可持续管理的范式转变,在保护环境的同时,通过允许养分回收和再用于食品生产,使社会受益。因此,城市废水用于农业灌溉具有更大的潜力,特别是在结合氮和磷等养分的再利用时,这些养分是作物生产所必需的。在当前应用于城市废水用于农业再利用的处理技术中,水培系统被确定为可与废水处理集成的替代技术之一。将水培系统与城市废水处理相结合具有降低污染物去除成本的优势,同时降低了传统废水处理所需的维护和能源成本。水培系统在城市废水再利用方面的效率主要与其通过生产农作物和去除污染物/养分(氮和磷)来允许连续使用废水的能力有关,从而提高了粮食安全和环境保护。此外,水培系统对废水处理的适用性源于其能够最大限度地降低与农民、收获的作物和消费者接触可能产生的相关健康风险。

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