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厌氧复合式反应器-下向流悬挂式海绵系统处理生活污水中寄生虫和病原菌的归宿

Fate of parasites and pathogenic bacteria in an anaerobic hybrid reactor followed by downflow hanging sponge system treating domestic wastewater.

作者信息

Tawfik A, El-Zamel T, Herrawy A, El-Taweel G

机构信息

Environmental Engineering Department, Egypt-Japan University of Science and Technology (E-JUST), P.O. Box 179, New Borg El Arab City, 21934, Alexandria, Egypt,

出版信息

Environ Sci Pollut Res Int. 2015 Aug;22(16):12235-45. doi: 10.1007/s11356-015-4508-5. Epub 2015 Apr 21.

Abstract

Treatment of domestic wastewater in a pilot-scale upflow anaerobic hybrid (AH) reactor (0.9 m(3)) in combination with downflow hanging sponge (DHS) system (1.3 m(3)) was investigated. The combined system was operated at a hydraulic retention time (HRT) of 6.0 h for AH and 3.2 h for DHS system. The total process achieved a substantial reduction of COD(total) resulting in an average effluent concentration of only 39 ± 12 mg/l. Moreover, 90 ± 7% of ammonia was eliminated in the DHS system. Nitrate and nitrite data revealed that 49 ± 3.2% of the ammonia removal occurred through nitrification process. The removal efficiency of total coliform (TC), fecal coliform (FC), and fecal streptococci (FS) was relatively low in the AH reactor. The major portion of TC, FC, and FS was removed in the DHS system resulting to an average count of 1.7 × 10(5) ± 1.1 × 10(2)/100 ml for TC, 7.1 × 10(4) ± 1.2 × 10(2)/100 ml for FC, and 7.5 × 10(4) ± 1.3 × 10(2)/100 ml for FS in the final effluent. Likely, the combined system was very efficient for the removal of protozoological species such as sarcodins (Entamoeba cysts), flagellates (Giardia cysts), and ciliates (Balantidium cysts). This was not the case for coccidia (Cryptosporidium oocysts), where 36.4 and 27.3% were detected in the effluent of AH and DHS system, respectively. Only 10% of intestinal nematode and cestode ova were recorded in the effluent of AH reactor and were completely removed in the DHS system.

摘要

研究了在中试规模的上流式厌氧混合(AH)反应器(0.9立方米)与下流式悬挂海绵(DHS)系统(1.3立方米)组合处理生活污水的情况。该组合系统运行时,AH反应器的水力停留时间(HRT)为6.0小时,DHS系统的水力停留时间为3.2小时。整个工艺实现了化学需氧量(总)的大幅降低,最终出水平均浓度仅为39±12毫克/升。此外,DHS系统去除了90±7%的氨。硝酸盐和亚硝酸盐数据显示,49±3.2%的氨去除是通过硝化过程实现的。AH反应器中总大肠菌群(TC)、粪大肠菌群(FC)和粪链球菌(FS)的去除效率相对较低。TC、FC和FS的大部分在DHS系统中被去除,最终出水中TC的平均计数为1.7×10⁵±1.1×10²/100毫升,FC为7.1×10⁴±1.2×10²/100毫升,FS为7.5×10⁴±1.3×10²/100毫升。该组合系统对去除原生动物物种如肉足虫(内阿米巴囊肿)、鞭毛虫(贾第虫囊肿)和纤毛虫(结肠小袋纤毛虫囊肿)非常有效。球虫(隐孢子虫卵囊)的情况并非如此,AH和DHS系统的出水中分别检测到36.4%和27.3%的隐孢子虫卵囊。AH反应器出水中仅记录到10%的肠道线虫和绦虫卵,且在DHS系统中被完全去除。

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