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Laboratory studies on the temperature-phased ASBR system

机译:温度相控ASBR系统的实验室研究

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Treatment of high-strength industrial wastewater with the temperature-phased anaerobic sequencing batch reactor (ASBR) system has shown positive results in laboratory scale studies. The system achieved COD removals as high as 95% and 90% for soluble and total GOD, respectively, up to COD loadings of 22 g COD/L/day. Non-fat dry milk was used as a synthetic substrate. The system consisted of two reactors operated in series at different temperatures. Phase I of the system was operated at 55 degrees C and the Phase II was operated at 35 degrees C, The total hydraulic retention time in the system was 18 hours (6 hours in the Phase I and 12 hours in the Phase II). The temperature-phased system incorporates advantages of both thermophilic treatment (high reaction rates) and mesophilic treatment (higher quality effluent) while minimizing the disadvantages such as odors commonly associated with thermophilic treatment and lower treatment rates of mesophilic treatment. This study was conducted using ASBRs. The ASBR was developed at Iowa State University by R.R. Dague. This process allows biomass to increase in the reactors and provides an environment for granulation to occur. Although the ASBR was used for these studies, the temperature-phased process is applicable to other anaerobic treatment processes as well.
机译:在实验室规模的研究中,采用温度相控厌氧顺序分批反应器(ASBR)系统处理高强度工业废水已显示出积极的结果。该系统对可溶性GOD和总GOD的去除率分别高达95%和90%,最高可达22 g COD / L / day。脱脂奶粉用作合成基质。该系统由两个在不同温度下串联运行的反应器组成。系统的第一阶段在55摄氏度下运行,第二阶段在35摄氏度下运行。系统中的总水力停留时间为18小时(第一阶段为6小时,第二阶段为12小时)。温度分段系统结合了高温处理(高反应速率)和中温处理(更高品质的出水)的优点,同时最大限度地减少了诸如与高温处理相关的气味和中温处理的较低处理率等缺点。这项研究是使用ASBR进行的。 ASBR是由R.R. Dague在爱荷华州立大学开发的。该过程使生物质在反应器中增加,并为造粒提供了环境。尽管将ASBR用于这些研究,但温度分段过程也适用于其他厌氧处理过程。

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