Advanced Nitrogen and Pathogenic Indicator Removal from Digested Livestock Wastewater Using a Partial Nitritation-Anammox Coupled with Partial Denitrification (PN-APD) Process without an External Carbon Source

IF 7.4 Q1 ENGINEERING, ENVIRONMENTAL
Jiaojiao Xu, Wenjing Bai, Rui Tang, Shoujun Yuan, Wei Wang, Guangxue Wu, Xinmin Zhan and Zhen-Hu Hu*, 
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引用次数: 0

Abstract

Digested livestock wastewater contains high concentrations of NH4+–N and residual pathogens, and the Anammox process is a cost-effective process for treating wastewater with high NH4+–N concentrations. However, advanced nitrogen and pathogen removal from high-strength wastewater by Anammox-based processes, without the addition of an external carbon source, is still a challenge. In this study, a partial nitritation-Anammox coupled with partial denitrification (PN-APD) process was constructed using a step-feed mode to treat digested livestock wastewater. The PN effluent served as the first feeding. Digested livestock wastewater served as the second feeding, providing a carbon source for the APD process. The PN-APD process achieved a nitrogen removal efficiency (NRE) of 97.0 ± 1.3%, with total inorganic nitrogen concentrations of 14.8 ± 4.2 mg N/L in the effluent. The suitable biodegradable COD/NOx–N ratio of the APD process after the second feeding is key to achieving advanced nitrogen removal, and the suitable ratio ranges between 0.6 and 1.2. The second feeding had no significant influence on Anammox bacteria abundance, with Candidatus Kuenenia being the dominant species. The PN-APD process also removed total coliforms and enterococci by 3.3 ± 0.3 and 3.0 ± 0.3 log, respectively, meeting wastewater discharge standards without further disinfection. This study provides a novel approach for the cost-effective simultaneous advanced removal of nitrogen and pathogens from high-strength digested livestock wastewater.

Abstract Image

无外部碳源的部分硝化-厌氧氨氧化-部分反硝化(PN-APD)工艺深度脱氮及致病性指标研究
消化后的牲畜废水中含有高浓度的NH4+ -N和残留的病原体,厌氧氨氧化工艺是处理高浓度NH4+ -N废水的一种经济有效的工艺。然而,在不添加外部碳源的情况下,利用厌氧氨氧化工艺从高强度废水中去除高级氮和病原体仍然是一个挑战。本研究采用分步进料模式,构建了部分硝化-厌氧氨氧化-部分反硝化(PN-APD)工艺处理畜禽消化废水。PN出水作为第一次进料。消化后的牲畜废水作为第二次饲料,为APD工艺提供碳源。PN-APD工艺脱氮效率(NRE)为97.0±1.3%,出水总无机氮浓度为14.8±4.2 mg N/L。APD工艺二次进料后适宜的可生物降解COD/NOx—N是实现深度脱氮的关键,适宜的COD/NOx—N比值为0.6 ~ 1.2。二次投喂对厌氧氨氧化菌的丰度无显著影响,以Kuenenia Candidatus为优势菌种。PN-APD工艺对总大肠菌群和肠球菌的去除率分别为3.3±0.3 log和3.0±0.3 log,达到废水排放标准,无需进一步消毒。本研究为高效高效地同时深度去除高强度家畜消化废水中的氮和病原体提供了一种新方法。
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来源期刊
ACS ES&T engineering
ACS ES&T engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
8.50
自引率
0.00%
发文量
0
期刊介绍: ACS ES&T Engineering publishes impactful research and review articles across all realms of environmental technology and engineering, employing a rigorous peer-review process. As a specialized journal, it aims to provide an international platform for research and innovation, inviting contributions on materials technologies, processes, data analytics, and engineering systems that can effectively manage, protect, and remediate air, water, and soil quality, as well as treat wastes and recover resources. The journal encourages research that supports informed decision-making within complex engineered systems and is grounded in mechanistic science and analytics, describing intricate environmental engineering systems. It considers papers presenting novel advancements, spanning from laboratory discovery to field-based application. However, case or demonstration studies lacking significant scientific advancements and technological innovations are not within its scope. Contributions containing experimental and/or theoretical methods, rooted in engineering principles and integrated with knowledge from other disciplines, are welcomed.
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