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Enrichment of Anammox bacteria in seed sludges from different wastewater treating processes and start-up of Anammox process

机译:不同废水处理工艺的种子污泥中厌氧氨氧化细菌的富集和厌氧氨氧化工艺的启动

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摘要

Three seed sludges (sludge A, B and C) were collected from various wastewater treatment processes. Then they were inoculated in Reactor A, B and C in parallel. After 67 days of operation, only Reactor A successfully started up the Anaerobic ammonia oxidation (Anammox) process, while the other two reactors failed. The Anammox activity was observed within 49 days and a final nitrogen removal rate of 0.19 g NH_4~+-N L~(-1) d~(-1) and 0.21 g NO_2-N L~(-1) d~(-1) was achieved after 95 days. In Reactor A, Fluorescence in situ hybridization (FISH) analysis confirmed that Anammox bacteria became the dominant population on day 90, and Scanning electron microscope (SEM) observation also showed that short rod and spherical bacteria predominated in the cultivated sludge. FISH analysis also disclosed that sludge A had aboriginal Anammox bacteria but the other two have no signal of Anammox bacteria. From a new micro-ecological viewpoint, the wastewater treating process, which sludge A was taken from, could provide Anammox ecological niche, but the other two processes could not. The results indicated that selection of the seed sludge from the special wastewater treating process providing Anammox ecological niches made the Anammox start-up more effectively and quickly.
机译:从各种废水处理过程中收集了三种种子污泥(污泥A,B和C)。然后将它们平行接种在反应器A,B和C中。运行67天后,只有反应器A成功启动了厌氧氨氧化(Anammox)工艺,而其他两个反应器均失败了。在49天内观察到厌氧氨氧化活性,最终脱氮率分别为0.19 g NH_4〜+ -NL〜(-1)d〜(-1)和0.21 g NO_2-NL〜(-1)d〜(-1) 95天后达到目标。在反应器A中,荧光原位杂交(FISH)分析确认了Anammox细菌在第90天成为主要种群,并且扫描电子显微镜(SEM)观察还显示,短杆和球形细菌在培养的污泥中占主导地位。 FISH分析还显示,污泥A具有原住的厌氧菌,但其他两种没有厌氧菌的信号。从新的微生态观点来看,污泥A的废水处理过程可以提供Anammox生态位,而其他两个过程则不能。结果表明,从提供Anammox生态位的特殊废水处理过程中选择种子污泥可以使Anammox的启动更加有效和快捷。

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