[1]吳志明,陳學(xué)春,趙欣,等.Nereda好氧顆粒污泥工藝配置及運(yùn)行性能[J].中國給水排水,2023,39(14):10-18.
WUZhi-ming,CHENXue-chun,ZHAOXin,et al.Process Configuration and Operational Performance of Nereda Aerobic Granular Sludge Technology[J].China Water & Wastewater,2023,39(14):10-18.
Nereda好氧顆粒污泥工藝配置及運(yùn)行性能
中國給水排水[ISSN:1000-4062/CN:12-1073/TU] 卷: 第39卷 期數(shù): 2023年第14期 頁碼: 10-18 欄目: 出版日期: 2023-07-17
Title:Process Configuration and Operational Performance of Nereda Aerobic Granular Sludge Technology
作者:吳志明1, 陳學(xué)春1, 趙欣2, 劉洋2(1.德和威<北京>環(huán)境工程有限公司,北京 100022;2.哈斯康寧工程咨詢<上海>有限公司,上海 200030)
Author(s):WU Zhi-ming1, CHEN Xue-chun1, ZHAO Xin2, LIU Yang2(1. DHV Environmental Engineering Co. Ltd., Beijing 100022, China; 2. Royal Haskoning Consulting Co. Ltd., Shanghai 200030, China)
關(guān)鍵詞:Nereda工藝; 好氧顆粒污泥; 脫氮除磷
Keywords:Nereda process; aerobic granular sludge; nitrogen and phosphate removal
摘要:Nereda工藝是好氧顆粒污泥(AGS)工藝的一種。通過Nereda工藝運(yùn)行周期的介紹,分析了其好氧顆粒污泥的顆;梢蛞约懊摰椎膬(yōu)勢,闡明了Nereda工藝對比SBR傳統(tǒng)活性污泥法的優(yōu)缺點(diǎn)。目前,針對不同的污水處理現(xiàn)場開發(fā)了Nereda工藝不同的工藝配置,以美國Wolf Creek、巴西Deodoro和愛爾蘭Ringsend污水廠的Nereda工藝為例,詳細(xì)介紹了它們的概況以及實際運(yùn)行性能,最后總結(jié)了Nereda好氧顆粒污泥技術(shù)在未來應(yīng)用場景中的競爭優(yōu)勢。
Abstract:The Nereda process is a type of aerobic granular sludge (AGS) process. The granulation causes of aerobic granular sludge and the advantages of nitrogen and phosphorus removal were discussed through the introduction of the operating cycle of the Nereda process. The advantages and disadvantages of the Nereda process compared to the traditional activated sludge process of SBR were clarified. Various Nereda process configurations have been developed for different sewage treatment sites in different countries. The overview and actual operating performance of different wastewater treatment plants were introduced in detail with examples of the Nereda process application at Wolf Creek WWTP in the United States, Deodoro WWTP in Brazil, and Ringsend WWTP in Ireland. Finally, the competitive advantages of Nereda aerobic granuler sludge technology in future application scenarios were summarized.
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更新日期/Last Update: 2023-07-17