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高浓度粉末载体生物流化床工艺:一种用于处理生活污水的新方法。

High concentration powder carrier bio-fluidized bed process: A new perspective for domestic wastewater treatment.

机构信息

Tongji University, College of Environmental Science and Engineering, State Key Lab Pollution Control and Resource Reuse, Shanghai 200092, PR China; Shanghai Institute of Pollution Control and Ecological Security, Shanghai 200092, PR China.

Hunan Sanyou Environmental Protection Co. Ltd., Changsha, Hunan, PR China.

出版信息

Bioresour Technol. 2022 May;351:127015. doi: 10.1016/j.biortech.2022.127015. Epub 2022 Mar 16.

Abstract

The nitrogen removal mechanism of the high concentration powder carrier bio-fluidized bed (HPB) process was investigated with actual domestic wastewater. The micron-size (10-70 μm) powder carriers were diatomite and Fe-C. Results showed diatomite enriched the relative abundances of ammonia-oxidizing bacteria and nitrite-oxidizing bacteria, accordingly increasing the rate of nitrification. Even a 100% increase of genes associated with the ammonia oxidation was achieved. Fe-C enhanced the rate of substrate utilization mainly by increasing the activity of the electron transfer system. Hydrocyclone separator, as a key device of HPB, was able to recover the carriers with high efficiency (recovery efficiency of 72.66 ─ 82.50% after 75 days), thus, indirectly improving the functionality of the carriers. Furthermore, it could renew the surface of microbial aggregations, consequently improving the adsorption capacity to substrates. HPB could provide the feasibility of shortening the hydraulic retention time and expanding the capacity of wastewater treatment plants.

摘要

采用实际生活污水,研究了高浓度粉末载体生物流化床(HPB)工艺的脱氮机理。微米级(10-70μm)粉末载体为硅藻土和 Fe-C。结果表明,硅藻土富集了氨氧化菌和亚硝酸盐氧化菌的相对丰度,从而提高了硝化速率。甚至实现了与氨氧化相关基因的 100%增长。Fe-C 主要通过增加电子传递系统的活性来提高基质利用率。水力旋流器分离器作为 HPB 的关键设备,能够高效地回收载体(经过 75 天,回收率为 72.66-82.50%),从而间接提高载体的功能。此外,它还可以更新微生物聚集体的表面,从而提高对基质的吸附能力。HPB 为缩短水力停留时间和扩大污水处理厂的处理能力提供了可行性。

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