采用洗涤反应器处理中温废水

W. Abdel-Halim
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摘要

利用厌氧生物降解技术处理城市废水是一项很有前途的技术,因为所需的资本支出相对较低,而且有可能产生沼气,沼气可以用作能源。UASB反应器是一种高速率系统,作为悬浮污泥毯系统与颗粒污泥生长系统运行。在反应器底部的污泥毯与向上流动的废水接触时进行处理,产生的沼气在反应器顶部收集。废水可用于灌溉,因为所含的营养物质不受处理的影响。实际上,更有趣的是可再生能源和二氧化碳排放的减少。通过对城市污水进行厌氧处理,不仅可以减少二氧化碳的排放,还可以通过沼气获得“清洁”能源供应。对于这一过程的可持续性来说,最重要的是从反应器的液体流出物中收集甲烷,因为排出甲烷对气候的负面影响远远高于减少二氧化碳排放的积极影响。采用絮凝污泥包层的UASB反应器,在不同温度和浓度条件下对废水中的碳组分进行生物降解。确定并评估SMA;沼气的排放也得到了控制。并对COD分馏和SMA进行了静态建模。可以看出,在高温气候条件下,高浓度城市污水的正向效应要大得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WASTEWATER TREATMENT AT MODERATE TEMPERATURES USING UASB REACTOR
The use of anaerobic biodegradation to treat municipal wastewater is a promising technology, because of the relatively low capital expenditures required and the potential to create biogas, which can be used as a source of energy. The UASB reactor is a high-rate system that operates as a suspended sludge blanket system with granular sludge growth system. Treatment occurs at the contact of the up flow passing wastewater with the sludge blanket at the bottom of the reactor and produced biogas is collected at top of the reactor. The effluent could be used for irrigation, because the included nutrients are not affected by the treatment. Much more interesting at actual time are renewable energies and the retrenchment of CO2-Emission. With the anaerobic treatment of municipal wastewater not only the CO2-Emission could be reduced but also gained “clean” energy supply by biogas. Most important for the sustainability of this process is the gathering of methane from the liquid effluent of the reactor, because the negative climate-relevant effect from the outgassing methane is much higher than the positive effect from saving CO2Emission. In this study UASB reactors were used with a flocculent sludge  blanket  for  the  biodegradation  of  the  carbon  fraction  in  the  wastewater  with different temperatures and concentrations. The SMA was determined and evaluated; also the biogas emission was controlled. Also a static modelling for COD fractioning and SMA was done. It could be shown, that the positive effect is much higher for municipal wastewater with high concentrations in hot climate.
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