厌氧生物处理制糖废水

Mariya Zinchenko, Evgenija Ponomarenko, Nataliia Bukatenko, Olga Holubkina
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摘要

甜菜厂用水的特点是耗水量高,产生的废水量大,矿物和有机污染浓度高。人工生物净化设施主要用于制糖废水的净化。两级曝气池方案在我国应用最为广泛,而国外多采用厌氧-好氧方案。它更具成本效益,因为在有氧条件下氧化大量有机物质与高能量消耗有关。在第一阶段使用厌氧消化可以将出水中的有机物浓度降低60-90%,而剩余污染物的后期净化则在第二阶段曝气池中进行,能耗较低。为了评估在某一特定企业的净化设施系统中使用沼气池的适当性,有必要掌握有关该特定企业的废水的消化效果和最佳净化制度的信息。本文研究了乌克兰一家甜菜糖厂废水的厌氧消化过程。实验在活性污泥向上流动的生物反应器中进行。为了缩短研究时间,采用了数学规划实验的方法。获得了流速、pH、温度等决定因素对沼气产量和底物发酵深度的影响数据。收到的数据证明了厌氧消化在甜菜生产废水生物发酵第一阶段的有效性和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANAEROBIC BIOLOGICAL WASTEWATER TREATMENT OF SUGAR PRODUCTION
Water usage of sugar beet factories is characterized by a high level of consumption and a large volume of generated wastewater with a high concentration of mineral and organic pollution. Artificial biological purification facilities are mainly used for purification of sugar production effluents. While a scheme with two-stage aeration tanks is the most widespread in our country,anaerobic-aerobic regimens are frequently used abroad. It is more cost-effective, since the oxidation of large amounts of organic substances exclusively under aerobic conditions is associated with high energy consumption. The use of anaerobic digestion at the first stage allows reducing the concentration of organic substances in effluents by 60-90%, while the post-purification of remaining contaminants is carried out in stage-two aeration tanks with lower energy consumption. To assess the appropriateness of using a digester in the system of purification facilities of a particular enterprise, it is necessary to have information on the effectiveness of digestion and the optimal purification regime of the wastewater of that particular enterprise. This work studies the process of anaerobic digestion of wastewater at one of the beet sugar factories in Ukraine. The experiments were carried out in a bioreactor with an upward flow of activated sludge. The method of mathematical planning of an experiment was used in order to shorten the duration of the research. As a result, data was obtained regarding the influence of determining factors (flow rate, pH, temperature) on biogas yield and substrate fermentation depth. Received data proves the effectiveness and prospects of using anaerobic digestion in the first stage of biological fermentation of wastewater at a sugar beet production.
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