ZHENG Feng,MU Yang,SUN Xun.MBR Process Used in Expansion Project of a Sewage Treatment Plant in Shandong Province[J].China Water & Wastewater,2020,36(18):81-84.
MBR工藝用于山東省某污水處理廠擴建工程
- Title:
- MBR Process Used in Expansion Project of a Sewage Treatment Plant in Shandong Province
摘要:- 山東某污水處理廠現(xiàn)有設計規(guī)模為20×104 m3/d,采用氧化溝形式的AAO+纖維束過濾工藝,出水達到一級A排放標準。擴建工程規(guī)模為10×104 m3/d,占地面積4 hm2,設計出水COD≤45 mg/L、NH3-N≤2(3.5) mg/L、TP≤0.4 mg/L,其余指標需達到一級A標準。基于擴建工程占地面積小、出水標準高,設計采用預處理+AAO+MBR+紫外線消毒工藝,輔以化學除磷、投加碳源等措施,且廠區(qū)采用整體式布置,以節(jié)省占地。工程建成后,運行效果穩(wěn)定,出水BOD5、COD、NH3-N、SS、TN、TP平均值分別為2.2、11.7、0.3、4.1、9.6、0.12 mg/L,均優(yōu)于設計標準。
Abstract:- The existing design scale of a sewage treatment plant in Shandong is 20×104 m3/d, using AAO in the form of oxidation ditch + fiber bundle filtration process. The effluent reached the first class A level criteria specified in Discharge Standard of Pollutants for Municipal Wastewater Treatment Plant(GB 18918-2002). The scale of the expansion project is 10×104 m3/d, covering an area of 4 hm2. The designed effluent COD≤45 mg/L, NH3-N≤2(3.5) mg/L, TP≤0.4 mg/L, and the other indicators should reach the first class A level of GB 18918 -2002. Based on the small footprint of the expansion project and high water discharge standards, the design adopted pretreatment+AAO+MBR+ultraviolet disinfection process, and supplemented by measures such as chemical phosphorus removal and carbon source addition. And the plant area adopted an overall layout to save land. After the project was completed, the operation effect was stable. The average values of BOD5, COD, NH3-N, SS, TN and TP of effluent water were 2.2 mg/L, 11.7 mg/L, 0.3 mg/L, 4.1 mg/L, 9.6 mg/L and 0.12 mg/L, respectively. All were better than design standards.
相似文獻/References:
[1]王 亮.馬來西亞Pantai地埋式污水廠環(huán)網(wǎng)供配電結構設計[J].中國給水排水,2018,34(22):63.
WANG Liang.Power Supply and Distribution Structure Design of Ring Network for Pantai Underground Wastewater Treatment Plantin Malaysia[J].China Water & Wastewater,2018,34(18):63.
[2]侯曉慶,鄧 磊,高海英,等.MBR工藝在神定河污水處理廠升級改造工程中的應用[J].中國給水排水,2018,34(22):66.
HOU Xiao-qing,DENG Lei,GAO Hai-ying,et al.Application of MBR Process in the Upgrading and Reconstruction Project of Shending River WastewaterTreatment Plant[J].China Water & Wastewater,2018,34(18):66.
[3]邱明海.北京市垡頭污水處理廠改擴建工程設計技術方案[J].中國給水排水,2018,34(20):13.
QIU Ming hai.Reconstruction and Expansion Design Technical Plan of Beijing Fatou Wastewater Treatment Plant[J].China Water & Wastewater,2018,34(18):13.
[4]郝二成,郭毅,劉偉巖,等.基于數(shù)學模擬的污水廠運行分析——建模與體檢[J].中國給水排水,2020,36(15):23.
HAO Er-cheng,GUO Yi,LIU Wei-yan,et al.Operation Analysis of Wastewater Treatment Plant Based on Mathematical Simulation: Modeling and Examination[J].China Water & Wastewater,2020,36(18):23.
[5]張月,王陽,張宏偉,等.陽泉市污水處理二期工程BARDENPHO工藝設計和運行[J].中國給水排水,2020,36(16):64.
ZHANG Yue,WANG Yang,ZHANG Hong-wei,et al.Design and Operation of BARDENPHO Process in Phase Ⅱ Project of Yangquan Wastewater Treatment Plant[J].China Water & Wastewater,2020,36(18):64.
[6]祝新軍,蔡芝斌,姚斌,等.紹興污水處理廠氣浮設備的優(yōu)化改造[J].中國給水排水,2020,36(16):101.
ZHU Xin-jun,CAI Zhi-bin,YAO Bin,et al.Optimization and Modification of Air Floatation Equipment in Shaoxing Wastewater Treatment Plant[J].China Water & Wastewater,2020,36(18):101.
[7]王文明,楊淇椋,蔡依廷,等.MSBR工藝在高排放標準污水處理廠的應用[J].中國給水排水,2020,36(16):111.
WANG Wen-ming,YANG Qi-liang,CAI Yi-ting,et al.Application of MSBR Process in Wastewater Treatment Plant with Stringent Discharge Standard[J].China Water & Wastewater,2020,36(18):111.
[8]郝二成,郭毅,劉偉巖,等.基于數(shù)學模擬的污水廠運行分析——控制與優(yōu)化[J].中國給水排水,2020,36(17):23.
HAO Er-cheng,GUO Yi,LIU Wei-yan,et al.Operation Analysis of Wastewater Treatment Plant Based on Mathematical Simulation: Control and Optimization[J].China Water & Wastewater,2020,36(18):23.
[9]王陽,張月,王曉康,等.高排放標準下的改良AAO+深度處理工程案例[J].中國給水排水,2020,36(18):56.
WANG Yang,ZHANG Yue,WANG Xiao-kang,et al.Project Case of Modified AAO and Advanced Treatment Process under High Emission Standards[J].China Water & Wastewater,2020,36(18):56.
[10]張莉,余國富,瞿露,等.重慶市某污水處理廠一級A提標改造運行效果分析[J].中國給水排水,2020,36(18):95.
ZHANG Li,YU Guo-fu,QU Lu,et al.Analysis on the Operation Effect of a WWTP Upgrading Project for the Firstlevel A Standard in Chongqing[J].China Water & Wastewater,2020,36(18):95.