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首页> 外文期刊>Journal of Environmental Management >Technical and economic investigation of chemical scrubber and bio-filtration in removal of H_2S and NH_3 from wastewater treatment plant
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Technical and economic investigation of chemical scrubber and bio-filtration in removal of H_2S and NH_3 from wastewater treatment plant

机译:化学洗涤塔和生物滤池去除污水处理厂H_2S和NH_3的技术经济研究

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A detailed techno-economic comparison of a chemical scrubber (CS) and a bio-filter (BF) was conducted over a 45-day time period at a municipal wastewater treatment plant (WWTP), Yazd city. The assessment of emissions quantity indicated that odor emissions from the Yazd WWPT mainly consist of hydrogen sulfide (H2S) and ammonia (NH3). It was also found that odor gaseous loading changes corresponding to water consumption pattern in society (R-2 = 0.922) for H2S and (R-2 = 0.978) for NH3. The highest level of 25 and 3 ppm for H2S and NH3, respectively were detected at specific times during the day. The BF system was continuously supplied with Yazd WWPTs off-gas treatment while the CS was only examined at the times during the day when the gas emissions are at the highest level. The removal efficiency of NH3 and H2S were found to be affected by their respective loading rate. Additionally, among the various oxidants examined in the CS, the NaOCl solution showed the best results in terms of removal efficiency and compatibility. The experiment revealed almost complete removal of NH3 while the H2S removal efficiency remained above 95% for both systems regardless of the operating conditions. This study clearly demonstrates the effectiveness of both systems in treating actual waste gases containing H2S and NH3. By comparing the gas loading rate of both systems and considering limitations of the BF system, the CS seems to be more efficient applicable odor control technology from a technical viewpoint. From the economic viewpoint, comparisons revealed that chemical usage and operating expenses were costly parts of the CS and the BF, respectively. The economic indexes of 1.58 (sic).m(-3).h(-1) and 2.57 (sic).m(-3). h(-1) were obtained for the BF and CS, respectively, reflecting cost-effectiveness of the BF system.
机译:在亚兹德市的市政废水处理厂(WWTP)中,在45天的时间内对化学洗涤器(CS)和生物滤池(BF)进行了详细的技术经济比较。排放量评估表明,Yazd WWPT的气味排放主要由硫化氢(H2S)和氨(NH3)组成。还发现,臭气含量变化对应于社会上H2S的用水模式(R-2 = 0.922)和NH3(R-2 = 0.978)。在一天中的特定时间分别检测到H2S和NH3的最高含量25 ppm和3 ppm。高炉系统一直接受Yazd WWPT的废气处理,而CS仅在白天的气体排放量最高时进行检查。发现NH 3和H 2 S的去除效率受它们各自的负载率影响。此外,在CS中检查的各种氧化剂中,NaOCl溶液在去除效率和相容性方面显示出最好的结果。实验表明,无论运行条件如何,两个系统的NH3去除几乎都已完成,而H2S去除效率仍保持在95%以上。这项研究清楚地证明了这两种系统在处理含H2S和NH3的实际废气中的有效性。通过比较两个系统的气体装载率并考虑高炉系统的局限性,从技术角度来看,CS似乎是一种更有效的适用气味控制技术。从经济角度来看,比较表明,化学品的使用和运营费用分别是CS和BF的昂贵部分。经济指标为1.58(sic).m(-3).h(-1)和2.57(sic).m(-3)。 h(-1)分别针对高炉和CS获得,反映了高炉系统的成本效益。

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