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Estimated discharge of antibiotic-resistant bacteria from combined sewer overflows of urban sewage system

机译:从城市污水系统中溢流的抗生素抗性细菌的估计放电

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Yearly discharge of antibiotic-resistant bacteria (ARB) from combined sewer overflow (CSO) was estimated. The volume of CSO was estimated from operating data of the pumping station. In the target sewer catchment, 23% of the total of the volume of combined sewage was discharged untreated as CSO. Combined sewage contained 3-log larger E. coli than secondary treatment effluent although the abundance of antibiotic-resistant E. coli was not significantly different. In the target-combined sewer catchment, a yearly total of 4.8 × 1016 CFU of E. coli was discharged from 6.1 × 106 m3 of CSO, while 1.3 × 1012 CFU of E. coli from 2.1 × 107 m3 of effluent from the wastewater treatment plant (WWTP). This E. coli discharge was equivalent to 7.9 × 109 CFU/m3 from CSO, and 6.2 × 104 CFU/m3 from WWTP effluent. Consequently, a yearly total discharge of antibiotic-resistant E. coli from CSO was 3.7-log larger than the WWTP effluent. The small-flow CSO events, which had hourly flow rate smaller than five times of the average dry-weather flow, accounted for 43% of the total CSO volume, but 79% of the total discharge of antibiotic-resistant E. coli due to a small dilution factor with stormwater and frequent discharge. Reduction of small-flow CSO events would be important for effective reduction of ARB discharge from CSO.
机译:估计来自组合下水道溢出(CSO)的抗生素抗菌(ARB)的年度放电。从泵站的操作数据估计CSO的体积。在目标下水道集水器中,23%的合并污水总量的总量被排出未经处理的CSO。组合污水含有3次较大的大肠杆菌,但虽然丰富的抗生素大肠杆菌没有显着差异。在目标合并的下水道集水区中,每年4.8×1016 CFU的大肠杆菌从6.1×106m3的CSO中排出,而大肠杆菌的1.3×1012 CFU从废水处理中的2.1×107m3的流出物植物(WWTP)。该大肠杆菌放电等于来自CSO的7.9×109 CFU / M3,来自WWTP流出物的6.2×104 CFU / M3。因此,来自CSO的抗生素抗性大肠杆菌的每年总排出量为3.7-对数大于WWTP流出物。小流量CSO事件,每小时流量小于平均天气流量的五次,占CSO体积的43%,但由于抗生素抗性大肠杆菌总排出的79%具有雨水和频繁放电的小稀释因子。减少小流量CSO事件对于有效减少来自CSO的Arb排放是重要的。

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