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Utilization of Waste Materials for Microbial Carrier in Wastewater Treatment

机译:废水处理中微生物载体的废料利用

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摘要

This research focused on the ammonium-nitrogen (NH4-N) removal from the domestic wastewater using the attached growth reactors. Two types of waste material of corncob (biodegradable material) and concrete (nonbiodegradable material) were used as the carrier for microorganisms' attachment. During operation, both reactors achieved absolutely high performance of ammonium removal (up to 99%) and total nitrogen removal (up to 95%). The significant advantage of corncob carrier was that the corncob was able to be a source of carbon for biological denitrification, leading to no external carbon requirement for operating the system. However, the corncob caused an increasing turbidity of the effluent. On the other hand, the concrete carrier required the minimal external carbon of 3.5 C/N ratio to reach the good performance. Moreover, a longer period for microorganisms' adaptation was found in the concrete carrier rather than the corncob carrier. Further, the same physiological and biochemical characteristics of active bacteria were found at the two carriers, which were negative gram, cocci shape, and smooth and white-turbid colony. Due to the effluent quality, the concrete was more appropriate carrier than the corncob for wastewater treatment.
机译:这项研究的重点是使用附属的生长反应器从生活污水中去除氨氮(NH4-N)。玉米芯(可生物降解的材料)和混凝土(不可生物降解的材料)两种废料被用作附着微生物的载体。在运行过程中,两个反应器均实现了极高的除铵性能(高达99%)和总氮去除率(高达95%)。玉米芯载体的显着优势在于,玉米芯能够成为生物脱氮的碳源,因此无需外部碳就可以运行系统。然而,玉米芯导致废水的浊度增加。另一方面,混凝土载体需要最少的3.5 C / N的外部碳才能达到良好的性能。此外,在混凝土载体而不是玉米芯载体中发现了更长的微生物适应时间。此外,在两种载体上发现了活性细菌的相同生理和生化特征,它们是负克,球菌形状,光滑和白色混浊菌落。由于废水的质量,混凝土比玉米芯更适合用于废水处理。

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