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[曝气强度对序批式气升式反应器(SBAR)中好氧颗粒特性的影响]

[Effects of aeration intensity on characteristics of aerobic granules in sequencing batch airlift reactor (SBAR)].

作者信息

Wang Yong-fei, Zhang Han-min, Wang Xin-hua, Yang Feng-lin

机构信息

School of Chemical Engineering, Dalian University of Technology, Dalian 116024, China.

出版信息

Huan Jing Ke Xue. 2008 Jun;29(6):1598-603.

Abstract

This study investigated the physical performances of mature aerobic granules in SBAR, including granular shape and structure, mean size and granular relative strength, and cell metabolic activities to excrete extracellular polymeric substances (EPS), and nitrification and microbial activity, which performed visible differences at superficial upflow velocity of 1.8 cm x s(-1) and 0.9 cm x s(-1) respectively. Results show that granular surface was more irregular at the low aeration intensity than that at the high aeration intensity and granular interstice performed increasing with it. In 55 days, comparing with high aeration intensity, the sludge productivity and the mean size of aerobic granules at the low aeration intensity were increased by 33% and 25%, respectively, while the granular relative strength and EPS were reduced by 6% and 12%, respectively. The sludge volume index in two reactors were about between 10 mL x g(-1) and 15 mL x g(-1), which implied that granules at both aerations behaved well settling ability. The two reactors still performed well nitrification characteristic and ability to remove COD. The activity of nitrifying bacteria in aerobic granules at the low aeration intensity was lower than that at the high aeration intensity, while heterotrophs performed higher activity at the low aeration intensity.

摘要

本研究调查了序批式曝气生物反应器(SBAR)中成熟好氧颗粒污泥的物理性能,包括颗粒形状和结构、平均尺寸和颗粒相对强度,以及细胞代谢活性以分泌胞外聚合物(EPS)、硝化作用和微生物活性,这些在表面上流速度分别为1.8 cm·s⁻¹和0.9 cm·s⁻¹时表现出明显差异。结果表明,低曝气强度下颗粒表面比高曝气强度下更不规则,且颗粒间隙随曝气强度增加而增大。在55天内,与高曝气强度相比,低曝气强度下的污泥产率和好氧颗粒污泥的平均尺寸分别增加了33%和25%,而颗粒相对强度和EPS分别降低了6%和12%。两个反应器中的污泥体积指数约在10 mL·g⁻¹至15 mL·g⁻¹之间,这意味着两种曝气条件下的颗粒污泥沉降性能良好。两个反应器仍具有良好的硝化特性和去除COD的能力。低曝气强度下好氧颗粒污泥中硝化细菌的活性低于高曝气强度下的,而异养菌在低曝气强度下活性更高。

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