董明甫1,孔海霞2,張林1,何文光1,尹天平1,趙茂杰1
(1. 四川安州發展集團有限公司,四川 綿陽 622651;2. 中國市政工程華北設計研究總院有限公司
西安分公司,陜西 西安 710016)
Quality and Efficiency Enhancement Retrofit Project of
an AAO Process in a Sewage Treatment Plant in Sichuan
DONG Ming-fu1,KONG Hai-xia2,ZHANG Lin1,HE Wen-guang1,YIN Tian-ping1,,ZHAO Mao-jie1
(1.Sichuan Anzhou Development Group Co., Lt, Mianyang 622651,China;
2. Xi'an Branch,North China Municipal Engineering Design & Research Institute Co. Ltd., Xi'an 710016, China)
摘 要:四川省某污水處理廠一期工程原采用AAO工藝為主體并在二沉池后端增加“活性炭吸附+高效沉淀”深度處理單元的工藝,根據進廠廢水水質進一步優化工藝設計參數,確保出水指標中氨氮、總氮及化學需氧量達到《四川省岷江、沱江流域水污染物排放標準》(DB51/2311-2016)相關標準要求,總磷須達到《地表水環境質量標準》(GB3838-2002)的I類標準(總磷<0.2 mg/L);其余指標達到《城鎮污水處理廠污染物排放標準》(GB18918-2002)一級A標,處理后的達標廢水經管道就近引至干河子排放。提質改造項目旨在對原有AAO池、水解酸化池、外回流等進行改造優化。提質改造后經過一年運行,結果顯示全年平均出水數據NH3-N≤1.5 mg/L、TN≤4.6 mg/L、TP≤0.1 mg/L、COD≤20 mg/L。技改后在節能降耗方面達到明顯的改善,噸水藥劑、電費、人工綜合成本共降低47.56%。
關鍵詞:AAO工藝;提質增效;節能降耗;工程案例
Abstract: The first phase of a wastewater treatment plant in Sichuan Province, China, originally used the AAO (Anoxic/Anaerobic/Oxic) process as the main treatment process, with an additional "activated carbon adsorption + high-efficiency sedimentation" deep treatment unit at the end of the secondary clarifier. Based on the optimization of the influent wastewater quality, the process design parameters were further improved to ensure that the effluent meets the relevant standards of the "Water Pollutant Discharge Standard for Minjiang and Tuojiang River Basins in Sichuan Province" (DB51/2311-2016), with ammonia nitrogen (NH3-N), total nitrogen (TN), and chemical oxygen demand (COD) meeting the Class I standards of the "Environmental Quality Standards for Surface Water" (GB3838-2002) (TP<0.2 mg/L); other indicators meeting the Class A standards of the "Pollutant Discharge Standard for Urban Wastewater Treatment Plants" (GB18918-2002). The treated effluent that meets the standards is discharged to the nearby Ganhezi through pipelines. The quality improvement project aims to optimize the original AAO tank, hydrolysis acidification tank, and internal recirculation. After one year of operation, the results showed that the average annual effluent data were NH3-N≤1.5 mg/L, TN≤4.6 mg/L, TP≤0.1 mg/L, and COD≤20 mg/L. The technical upgrade achieved significant improvements in energy saving and consumption reduction, with a total reduction of 47.56% in unit water dosage of chemicals, electricity costs, and labor costs.
Keywords: AAO process; quality improvement;energy saving and consumption reduction;engineering case
為實現生態文明建設新進步,十九屆五中全會提出,持續減少污染物排放總量、持續改善環境質量、提高資源利用效率,環保與可持續發展的理念應當深入到我們每個人的意識中。污水處理作為與良好生態環境直接掛鉤的一項,時刻影響著人們的生存與生活。據統計,污水處理中的碳排放量約占碳排放總量的1-2%[1],在碳中和、碳達峰的大背景下,實現污水處理綠色低碳發展已成為全球關注的重要議題。在日益嚴峻的能源壓力和環境挑戰的背景下,污水處理廠作為水資源環保的“中轉站”,迫切需要通過節能降耗,實現污水處理行業的綠色低碳可持續發展。2025年是“十四五”規劃的收官之年,也是碳排放強度下降18%的約束性目標之年,實現減污降碳宏遠目標仍需砥礪前行。
1 項目背景
1.1項目概述
四川省某污水廠位于鄉鎮,占地面積約40.05畝,設計規模1.4萬噸/天,2020年建成,2021年投入運行,該項目總投資 15000萬元,環保投資545.93萬元。該污水處理廠主要工藝流程為粗格柵及提升泵房+細格柵及曝氣沉砂池+調節事故池+(化學沉淀池)+水解酸化池+A/A/O生化池+二沉池+活性炭吸附+高密度沉淀池+臭氧接觸氧化+紫外線消毒。污水廠設計進水水質為70%生活污水30%工業廢水,出水指標中氨氮、總氮及化學需氧量達到《四川省岷江、沱江流域水污染物排放標準》(DB51/2311-2016)相關標準要求,總磷須達到《地表水環境質量標準》(GB3838-2002)的I類標準(總磷<0.2 mg/L);其余指標達到《城鎮污水處理廠污染物排放標準》(GB18918-2002)一級A標,處理達標后的廢水經管道就近引至干河子排放。