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首页> 外文期刊>Journal of Industrial Ecology >Life cycle assessment of side stream removal and recovery of nitrogen from wastewater treatment plants
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Life cycle assessment of side stream removal and recovery of nitrogen from wastewater treatment plants

机译:废水处理厂侧流去除和氮气恢复生命周期评估

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In the light of a circular economy, the Nijhuis Ammonia Recovery system (AECO-NAR) was developed to not only remove nitrogen from wastewater streams, but also produce ammonium sulfate (AS), used as fertilizer, in a single plant. The goal of this paper was to quantify the environmental impacts of side stream ammonia recovery with the AECO-NAR system and compares them with the impacts of side stream nitrogen removal combined SHARON (partly nitrification)-anammox plant. For this, an environmental life cycle assessment was performed with a functional unit (FU) of the treatment of 1 kg of total dissolved nitrogen inflow. Since AS obtained by the AECO-NAR is a by-product of the ammonia removal process, allocation was based on system expansion. Foreground inventory data were obtained from a full-scale plant. ReCiPe2016 was used to determine human health and biodiversity impacts. Results show that due to the production of AS in an integrated water treatment and production system, the AECO-NAR avoids impacts of current AS production, leading to negative impact scores. Impacts per FU decrease with increasing inflow concentrations of ammonia. Main improvement options are the use of renewable energy and the replacement of the cleaning chemical citric acid with a sustainable alternative. Total impacts of the AECO-NAR system diminish when comparing the system to the biological SHARON-Anammox system, due to production of AS fertilizer product. Due to the fertilizer production step being integrated in the side stream treatment, the complete system is beneficial over ammonia recovery and wastewater treatment as separate systems.
机译:鉴于循环经济,尼姆斯氨恢复系统(AECO-NAR)不仅开发出从废水流中除去氮,而且还生产硫酸铵(AS),用作肥料,在单一植物中。本文的目标是通过AECO-NAR系统量化侧流氨氨酸氨磷的环境影响,并将它们与侧流氮去除组合的氨纶(部分硝化) - anammox植物的影响进行比较。为此,用1千克总溶解的氮气流入的效果单位(FU)进行环境生命周期评估。由于由于AECO-NAR获得的副产物,因此分配基于系统扩张。从全尺寸植物获得前景库存数据。 Refipe2016用于确定人类健康和生物多样性影响。结果表明,由于生产在综合水处理和生产系统中,AECO-NAR避免了当前作为生产的影响,导致负面影响分数。随着氨的流入浓度的增加,每个傅的影响降低。主要改进选项是使用可再生能源和用可持续替代方案替换清洁化学柠檬酸。在将系统与生物学沙隆毒剂系统比较时,AECO-NAR系统的总影响降低,由于肥料产品的生产。由于肥料生产步骤集成在侧流处理中,完整的系统是有益于氨的回收和废水处理作为单独的系统。

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