首页> 外文会议>Biennial conference of the International Association on Water Quality >HYDROGEN SULPHIDE AND VOLATILE FATTY ACID REMOVAL FROM FOUL AIR IN A FIBROUS BED BIOREACTOR
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HYDROGEN SULPHIDE AND VOLATILE FATTY ACID REMOVAL FROM FOUL AIR IN A FIBROUS BED BIOREACTOR

机译:纤维床生物反应器中富空气中的硫化氢和挥发性脂肪酸的去除。

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Odour control in Hong Kong has been addressed as an important issue by the authorities, since odour pollution is generated from many sources including wastewater treatment plants. Although a number of existing technologies are available for odour abatement and control, biological technique is still more attractive due to its low operating cost and ease of maintenance. A newly innovated fibrous bed bioreactor with twin columns was specially designed and constructed in our laboratory, in which an inner column was centred in an outer column. The bioreactor was fully filled with water in order to absorb the odorous components from foul gas and also contained both suspended and attached biomass to degrade the absorbed odorous pollutants. In this study, hydrogen sulphide (H_2S) and butyric acid (C_4H_8O_2) were used as odorous components and successfully removed from synthetic foul gases. Many factors affecting the H_2S and butyric acid removal efficiency and maximum elimination capacity, such as pH of water solution, gas flow rate and its fluctuation, and sulphate content in solution have been studied. The experimental results demonstrated that the reduction rates of 97.8% for H_2S and 99.9% for butyric acid were achieved in this experimental condition. It is proved that this bioreactor was a compact odorous gas treatment system with an application potential for treating foul air with high odour strength and low airflow rate such as the offensive gases from sludge treatment processes in a wastewater treatment plant.
机译:由于气味的污染源来自多种来源,包括废水处理厂,因此当局一直将气味控制视为一个重要问题。尽管有许多现有技术可用于气味消除和控制,但是生物技术由于其较低的运行成本和易于维护而仍然更具吸引力。在我们的实验室中,专门设计和建造了一种新创新的带有双塔的纤维床生物反应器,其中内塔位于外塔的中心。为了从臭气中吸收臭味成分,生物反应器充满水,并且还包含悬浮的和附着的生物质,以降解吸收的臭味污染物。在这项研究中,硫化氢(H_2S)和丁酸(C_4H_8O_2)被用作有味成分,并成功地从合成恶臭气体中去除。研究了影响溶液中H_2S和丁酸去除效率及最大去除能力的因素,如水溶液的pH值,气体流速及其波动,溶液中的硫酸盐含量等。实验结果表明,在该实验条件下,H_2S的还原率为97.8%,丁酸的还原率为99.9%。事实证明,这种生物反应器是一种紧凑的臭味气体处理系统,具有处理高气味强度和低气流速率的恶臭空气的潜力,例如污水处理厂污泥处理过程中产生的有害气体。

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