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101.
本研究采用SBR反应器,以实际低C/N比生活污水为进水基质,采用间歇梯度曝气(各曝气段溶解氧浓度递减)充分利用内碳源,探讨不同首段厌氧时间下好氧颗粒污泥脱氮除磷效果.结果表明,间歇梯度曝气的初始厌氧段从50 min增加至90 min,使颗粒污泥内碳源的储量增加,这一延时厌氧的改进条件导致颗粒污泥脱氮除磷效果提升,当延时至70和90 min时,COD、TN和TP的去除效率分别可达84.74%、70.05%和89.7%以及86.65%、78.81%和85.5%.但随后首段厌氧时间增至110 min后,由于部分细胞解体,污泥流失较严重,使内碳源储量约降低13.6%,进而污染物去除效率下降.在首段厌氧时间从50 min延长至90 min的过程中,LB-EPS中PS含量变化较小,随后延时至110 min后PS含量增加至约7.18 mg·g-1,PN含量增加至约5.56mg·g-1.TB-EPS中PN和PS含量均较稳定,进而表明内碳源储量对LB-EPS的影响较TB-EPS大,同时污泥沉降性能下降与LB-EPS中PS含量增加密切相关.颗粒污泥中DPAOs占比随首段厌氧时间的适当增加而升高,其中首段厌氧时间为70 min时DPAOs占比达到51.5%. 相似文献
102.
从南四湖人工湿地植物香蒲根际土壤中分离得到一株反硝化XP1菌株,对其生态影响因子、反硝化能力、生长曲线进行了研究,并在实验室条件下利用菌株XP1反植于湿地植物香蒲根际土壤,考察对香蒲的强化脱氮作用.结果表明,XP1菌株反硝化作用的最佳碳源为柠檬酸钠;在pH值为7.0~9.0范围内有良好的脱氮效果,最佳pH值为8.0;最佳碳源与氮源比为7;最佳初始氮浓度为30mg/L.XP1菌株8h后进入指数增长期,最终总氮去除率可达90%以上.用该菌株强化香蒲脱氮,对于强化湿地脱氮工艺中亚硝酸盐的去除起主要作用,在相同条件下总氮去除率由46%提高到90%以上,强化脱氮作用明显,有良好的实际应用前景.通过形态观察,XP1菌株为短杆状革兰氏阴性菌,大小约(0.25~0.3)′(0.6~0.8)mm;经16S rRNA基因测序、系统发育树分析,XP1菌株为类芽孢杆菌(Paenibacillus sp.). 相似文献
103.
混合固定化硝化菌和好氧反硝化菌处理焦化废水 总被引:4,自引:1,他引:3
对传统的聚乙烯醇(PVA)固定化方法进行了改进,试制了加入麦秸粉末的固定化球和以活性炭纤维膜为载体膜固定化细胞产品。混合固定化硝化细菌和好氧反硝化细菌对经过厌氧折流板反应器酸化后的焦化废水进行脱氮,焦化废水在厌氧折流板反应器中经过18 h的酸化后,pH在8.0左右,开始进入好氧槽进行脱氮。在有效容积为5 L好氧槽中经过12 h的曝气处理,加入麦秸粉末的固定化球对氨氮的去除率高达94.3%;纤维膜固定化细胞产品对氨氮的去除率为85%。整个脱氮过程无NO-2-N和NO-2-N的积累,实现了好氧条件下的同时硝化和反硝化。 相似文献
104.
A successful enhanced biological phosphorus removal(EBPR) was observed in both anaerobicaerobic sequencing batch reactor(An-Ox SBR) to induce growth of phosphorus accumulating organism(PAO) and anaerobic-anoxic(An-Ax) SBR to induce growth of denitrifying PAO(DPAO).Although the EBPR performance of An-Ox SBR was higher by 11.3% than that of An-Ax SBR,specific phosphorus release rates in the An-Ax SBR(22.8 ± 3.5 mg P/(g VSS·hr)) and the An-Ox SBR(22.4 ± 4.8 mg P/(g VSS·hr)) were similar. Specific phosphorus uptake rates under anoxic and aerobic conditions were 26.3 ± 4.8 mg P/(g VSS·hr)(An-Ax SBR) and 25.6 ± 2.8 mg P/(g VSS·hr)(An-Ox SBR), respectively, which were also similar. In addition, an analysis of relationship of poly-β-hydroxyalkanoates(PHA) synthesized under anaerobic conditions with phosphorous release(Preleased/PHAsynthesized) and of PHA utilized under anoxic and aerobic conditions with phosphorous uptake(Puptaked/PHAutilized) verified that biological activities of EBPR per unit biomass between DPAO and PAO were similar. An analysis of the specific denitrification rate of DPAO showed that NO-3-N can be denitrified at a rate that does not substantially differ from that of an ordinary denitrifier without additional consumption of organic carbon when the PHA stored inside the cell under anaerobic conditions is sufficiently secured. 相似文献
105.
厌氧氨氧化菌与其他细菌之间的协同竞争关系 总被引:10,自引:0,他引:10
随着污水脱氮行业的蓬勃发展,各种新工艺、新理论层出不穷.厌氧氨氧化(Anammox)工艺以其独特的优点脱颖而出,成为最具应用前景的新工艺.厌氧氨氧化菌作为该过程的执行者目前已发现5属17种,本文主要对5属17种的厌氧氨氧化菌进行总结,并对厌氧氨氧化菌种内关系中的群体感应系统进行详细介绍,此外还介绍了厌氧氨氧化菌与硝化菌、反硝化菌以及厌氧甲烷氧化菌之间的协同与竞争关系.最后给出常见竞争因素对厌氧氨氧化种群结构的影响,通过控制竞争因素来实现对厌氧氨氧化种群结构的调节.本文将厌氧氨氧化菌微生物生态学与厌氧氨氧化污水处理工艺相结合,为厌氧氨氧化工艺在污水生物处理中的应用提供理论依据. 相似文献
106.
1株反硝化除磷菌的鉴定及其反硝化功能基因研究 总被引:1,自引:1,他引:0
研究反硝化除磷菌(denitrifying polyphosphate-accumulating organism,DPAO)的筛选、鉴定及反硝化功能基因.利用反硝化培养基分离得到菌株ZQN2,经好氧吸磷试验,硝酸盐还原产气试验并辅助异染颗粒和PHB颗粒染色,确定其为反硝化除磷菌.厌氧释磷/缺氧吸磷试验结果表明,菌株ZQN2在厌氧段释磷并合成PHB(poly-β-hydroxybutyrate),在缺氧段以NO3-为电子受体氧化PHB并过量吸磷,进行了同步反硝化除磷.对菌株ZQN2进行16S rRNA基因序列分析,并构建系统进化树,结果表明该菌株与GenBank数据库中多株Bacillus cereus菌株16S rRNA基因的同源性在99%以上.结合生理生化检测,判断菌株ZQN2为蜡状芽胞杆菌(Bacillus cereus).对其反硝化功能基因的研究表明,菌株ZQN2为nirS+和nirK-型,从分子生物学角度确认其具有反硝化功能;菌株ZQN2的nirS序列的系统发育分析结果表明,其nirS序列与多株Pseadomonas aeruginosa的亲缘关系最接近,这与基于16S rRNA的系统发育分析的结果不一致. 相似文献
107.
Wang Yayi Wang Shuying Peng Yongzhen Zhu Guibing Ling Yunfang 《Frontiers of Environmental Science & Engineering in China》2007,1(2):226-232
To supply the valuable operating parameters for the popular usage of the new denitrifying phosphors removal process, it is
essential to study the dominant biochemical reactions and the characteristics of denitrifying phosphorus removing bacteria
(DPB). Thus, parallel batch experiments using DPB sludge were carried out to assess the effect of substrates (sewage, HAc,
and endogenous carbon source) on denitrifying dephosphorus removal efficiency in this study. The results showed that the initial
specific phosphorus release rate increased with the high concentration of the short-chain volatile fatty acids ratio in the
influent, and sufficient phosphorus was released by DPB. This improved the subsequent denitrification and phosphorus uptake
efficiency. The specific endogenous denitrification mainly relies on the internal carbon source (PHB) stored by poly-P bacteria.
Denitrifying phosphorus removing bacteria were very hungry when the internal PHB was consumed. Consequently, the specific
endogenous denitrification rate was low and the phosphorus uptake did not happen. On the other hand, in the experiment, the
denitrifying phosphorus removal performance under two temperature conditions (8–10°C and 25–26°C) was also investigated and
analyzed. It was found that the lower temperature decreased the specific phosphorus release and uptake rate, but did not inhibit
the denitrifying phosphorus removal completely. Therefore, the negative influence of the low temperature on the overall phosphorus
removal was not significant.
Translated from Acta Scientiae Circumstantiae, 2006, 26 (2): 186–192 [译自: 环境科学学报] 相似文献
108.
强化A2/O工艺反硝化除磷性能的运行控制策略 总被引:10,自引:2,他引:10
以啤酒废水为研究对象,重点考察了如何强化A2/O工艺反硝化除磷性能,从而提高营养物去除效果、并实现节能的目的.试验中建立了3种运行控制策略:(1)根据缺氧区末端出水硝酸盐的浓度控制内循环回流量;(2)调节厌氧/缺氧/好氧区体积比以减少厌氧区出水剩余COD对缺氧磷吸收的影响;(3)向缺氧区引入旁流并调节旁流比.试验结果表明,当缺氧区末端出水硝酸盐浓度控制在1~3 mg·L-1时,不仅可强化反硝化除磷效果,而且可以节省内循环所需能耗;厌氧/缺氧/好氧区最佳体积比为1/1/2;旁流的引入可以提高低C/N比条件下TN的去除,最优旁流比为0.32. 相似文献
109.
Effect of added carbon source and nitrate concentration on the denitrifying phosphorus removal by DPB sludge was systematically studied using batch experiments, at the same time the variation of ORP was investigated.Results showed that the denitrifying and phosphorus uptake rate in anoxic phase increased with the high initial anaerobic carbon source addition. However once the initial COD concentration reached a certain level, which was in excess to the PHB saturation of poly-P bacteria, residual COD carried over to anoxic phase inhibited the subsequent denitrifying phosphorus uptake. Simultaneously, phosphate uptake continued until all nitrate was removed, following a slow endogenous release of phosphate. High nitrate concentration in anoxic phase increased the initial denitrffying phosphorus rate. Once the nitrate was exhausted, phosphate uptake changed to release. Moreover, the time of this turning point occurred later with the higher nitrate addition. On the other hand, through on-line monitoring the variation of the ORP with different initial COD concentration, it was found ORP could be used as a control parameter for phosphorus release, but it is impossible to utilize ORP for controlling the denitrificaion and anoxic phosphorus uptake operations. 相似文献
110.
Yuan Linjiang Han Wei Wang Lei Yang Yongzhe Wang Zhiying 《Frontiers of Environmental Science & Engineering in China》2007,1(1):23-27
In order to achieve simultaneous nitrogen and phosphorus removal in the biological treatment process, denitrifying phosphorus
accumulation (DNPA) and its affecting factors were studied in a sequencing batch reactor (SBR) with synthetic wastewater.
The results showed that when acetate was used as the sole carbon resource in the influent, the sludge acclimatized under anaerobic/aerobic
operation had good phosphorus removal ability. Denitrifying phosphorus accumulation was observed soon when fed with nitrate
instead of aeration following the anaerobic stage, which is a vital premise to DNPA. If DNPA sludge is fed with nitrate prior
to the anaerobic stage, the DNPA would weaken or even disappear. At the high concentration of nitrate fed in the anoxic stage,
the longer anoxic time needed, the better the DNPA was. Induced DNPA did not disappear even though an aerobic stage followed
the anoxic stage, but the shorter the aerobic stage lasted, the higher the proportions of phosphorus removal via DNPA to total
removal.
Translated from Environmental Science, 2004, 25(6): 92–96 [译自: 环境科学] 相似文献