Start-up of a full-scale two-stage partial nitritation/anammox (PN/A) process treating reject water from high solid anaerobic sludge digestion (HSAD)

IF 7.2 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Shuyan Zhou , Hui Gong , Enhui Xu , Xiang Chen , Xiankai Wang , Hang Wang , Danyang Zhu , Yanyan Zhang , Jing Yang , Guowei Gu , Xiaohu Dai
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Abstract

High solid anaerobic digestion (HSAD) achieves the benefits of high volumetric loading rates and lower reject water production, which, however, results in much more concentrated reject water with a remarkable increase in organics and nitrogen compared with that from conventional AD with low solid content. The high concentrations of ammonium (2000–3500 mg/L) and COD (3000–4000 mg/L) were reported to exert inhibition on anammox bacteria (AnAOB), posing challenges to the application of the partial nitritation/anammox (PN/A). To date, no cases of PN/A process start-up for sludge HSAD reject water were reported. This study demonstrated the start-up process of a 480 m3/d PN/A project without anammox sludge inoculation and treating HSAD reject water from a centralized dewatered sludge treatment plant. The project did not construct new infrastructures but utilized previously constructed tanks to upgrade the process from existing short-cut nitrification-denitrification to a two-stage PN/A process. Although no external anammox sludge inoculation was performed to save seeding sludge cost, the start-up was successfully achieved in about 9 months (273 days) based on a three-step method of “AnAOB enrichment - sludge acclimation - capacity doubling”. During start-up, the relative abundance of AnAOB (Candidatus_Kuenenia) increased from near zero to 12.0%. After start-up, the total inorganic nitrogen (TIN) removal load reached 0.74 kgN/(m3•d), with a total nitrogen removal efficiency of over 90%. Compared to the traditional nitrification-denitrification process, the PN/A process remarkably reduces the addition of organic chemicals and aeration energy consumption, saving approximately 4.2 million yuan (RMB) in operational costs annually. In summary, this research provides a full-scale reference for the start-up of the PN/A process treating sludge HSAD reject water.

Abstract Image

启动全面的两级部分亚硝酸盐/氨氧化(PN/A)工艺,处理高固体厌氧污泥消化(HSAD)产生的废水
高固体厌氧消化(HSAD)具有高容积负荷率和低废水产生量的优点,但与低固体含量的传统厌氧消化相比,其产生的废水浓度更高,有机物和氮含量显著增加。据报道,高浓度的氨(2000-3500 毫克/升)和化学需氧量(3000-4000 毫克/升)会对氨氧化细菌(AnAOB)产生抑制作用,给部分亚硝酸盐化/氨氧化(PN/A)的应用带来挑战。迄今为止,还没有关于污泥 HSAD 废水 PN/A 工艺启动的报道。本研究展示了一个 480 立方米/天的 PN/A 项目的启动过程,该项目没有进行厌氧污泥接种,而是处理来自集中脱水污泥处理厂的 HSAD 废水。该项目没有建造新的基础设施,而是利用以前建造的储罐,将现有的硝化-反硝化短程工艺升级为两阶段 PN/A 工艺。虽然没有进行外部污泥接种以节省污泥播种成本,但根据 "AnAOB 富集--污泥适应--容量翻倍 "的三步法,在约 9 个月(273 天)内成功实现了启动。在启动过程中,AnAOB(Candidatus_Kuenenia)的相对丰度从接近零增加到 12.0%。启动后,总无机氮(TIN)去除负荷达到 0.74 kgN/(m3-d),总氮去除效率超过 90%。与传统的硝化-反硝化工艺相比,PN/A 工艺显著降低了有机药剂的投加量和曝气能耗,每年可节约运行成本约 420 万元。总之,本研究为启动 PN/A 工艺处理污泥 HSAD 废水提供了全面的参考。
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来源期刊
Water Research X
Water Research X Environmental Science-Water Science and Technology
CiteScore
12.30
自引率
1.30%
发文量
19
期刊介绍: Water Research X is a sister journal of Water Research, which follows a Gold Open Access model. It focuses on publishing concise, letter-style research papers, visionary perspectives and editorials, as well as mini-reviews on emerging topics. The Journal invites contributions from researchers worldwide on various aspects of the science and technology related to the human impact on the water cycle, water quality, and its global management.
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