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Water surface contacting cover system—the basic study for improving the oxygen transfer coefficient and the BOD removal capacity

机译:水面接触覆盖系统-提高氧气传递系数和BOD去除能力的基础研究

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In order to construct an environmental aeration basin in a sewage treatment plant, the suggested novel aeration basin was examined for the oxygen transfer coefficient by using tap water on a lab-scale and pilot-scale. We called it water surface contacting cover system (WSCCS) that was installed with a cover plate on the wafer surface and a slant plate in aeration basin, compared to a standard aeration basin (SRAS, spiral roll aeration system). Finally, the novel basin could be compared by adopting the slant and cover plates into the actual sewage treatment plant (W x L x D (m) = 5.0 x 2.65 x 4.25, treatment capacity: 600m~3/d). As a result, only by adding a slant plate, the oxygen transfer coefficient (K_La) increased approximately by 15% more than that with a SRAS basin. And the slope of slant plate was optimized at 10°. Additionally, in the WSCCS, the increasing efficiency of the oxygen transfer coefficient, affected only by the cover, was proved at about 25% on the lab-scale aeration basin and about 20% on the pilot plant. After all, the increasing effect of the oxygen transfer coefficient on WSCCS that was installed with the water contacting cover and the slant plate on standard aeration basin was proved to be above 35%. The distance between the air diffuser and the slant plate was 20-30 cm in the pilot-scale plant. As an effective factor for increasing the oxygen transfer rate, the width/depth ratio of aeration basin was proved to be 2. Through the short-term results of actual sewage treatment plant, it was known that BOD removal efficiency could be improved by about 3% by adopting tile WSCCS not but SRAS.
机译:为了在污水处理厂中建造一个环境曝气池,通过在实验室规模和中试规模上使用自来水检查了建议的新型曝气池的氧气传输系数。我们称其为水面接触盖系统(WSCCS),与标准的曝气池(SRAS,螺旋辊曝气系统)相比,该系统在晶片表面安装了盖板,并在曝气池中安装了斜板。最后,可以通过将斜面和盖板用于实际污水处理厂(W xL x D(m)= 5.0 x 2.65 x 4.25,处理能力:600m〜3 / d)来比较新型流域。结果,仅通过增加一个斜板,氧气传输系数(K_La)就比使用SRAS盆的氧气传输系数增加了大约15%。斜板的斜率在10°时优化。另外,在WSCCS中,氧气转移系数的效率仅受覆盖层影响,在实验室规模的曝气池中被证明约为25%,在中试装置中约为20%。毕竟,事实证明,氧气传递系数对在标准曝气池上安装有水接触盖和斜板的WSCCS的增加作用大于35%。在中试规模的工厂中,空气扩散器和斜板之间的距离为20-30厘米。作为提高氧气传输速率的有效因素,曝气池的宽/深比被证明是2。通过实际污水处理厂的短期结果,可以知道BOD的去除效率可以提高约3倍。 %,而不是通过SRAS来采用WSCCS。

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