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好氧麻渣颗粒在全规模连续流活性污泥系统中用于生物营养素去除的应用。

Application of aerobic kenaf granules for biological nutrient removal in a full-scale continuous flow activated sludge system.

机构信息

University of Washington, Department of Civil & Environmental Engineering, 616 Northlake Place, Seattle, WA, 98195, USA.

Nuvoda, 608 Gaston Street Raleigh, NC, 27603, USA.

出版信息

Chemosphere. 2021 May;271:129522. doi: 10.1016/j.chemosphere.2020.129522. Epub 2020 Dec 31.

DOI:10.1016/j.chemosphere.2020.129522
PMID:33450421
Abstract

Aerobic granular sludge (AGS) is a biofilm technology that offers more treatment capacity in comparison to activated sludge. The integration of AGS into existing continuous-flow activated sludge systems is of great interest as process intensification can be achieved without the use of plastic-based biofilm carriers. Such integration should allow good separation of granules/flocs and ideally with minor retrofitting, making it an ongoing challenge. This study utilized an all-organic media carrier made of porous kenaf plant stalks with high surface areas to facilitate biofilm attachment and granule development. A 5-stage Bardenpho plant was upgraded with the addition of kenaf media and a rotary drum screen to retain the larger particles from the secondary clarifier underflow whereas flocs were selectively wasted. Startup took 5 months with a sludge volume index (SVI) reduction from >200 to 50 mL g. Most of the kenaf granules fell in the size range of 600-1400 μm and had a clear biofilm layer. The wet biomass density, SVI, and SVI/SVI of the kenaf granules were 1035 g L, 30.6 mL g, and 1.0, respectively, which met the standards of aerobic granules. Improved stability of biological phosphorus removal performance enabled a 25% reduction in sodium aluminate usage. Microbial activities of kenaf granules were compared with aerobic granules, showing comparable N and P removal rates and presence of ammonium-oxidizing bacteria and polyphosphate-accumulating organisms in the outer 50-60 μm layer of the granule. This work is the first viable example for integrating fully organic biofilm particles in existing continuous-flow systems.

摘要

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