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1.
活性污泥系统中自养菌浓度及生长动力学参数测定   总被引:4,自引:1,他引:3  
利用批式呼吸计量法测定了实际污水处理厂厌氧/缺氧/好氧工艺和小试装置厌氧/好氧工艺好氧池内自养菌(XA)的浓度及其最大比生长速率常数(μA)。结果表明,活性污泥系统中XA与混合液挥发性悬浮固体的比例为1.60%~2.34%,μA实测值为0.69~0.76 d-1,测定结果有较好的重现性,且与文献值非常接近,说明该方法具有较高的准确度和精密度。  相似文献   

2.
制药废水有机污染物的微生物降解   总被引:2,自引:0,他引:2  
以宜昌某制药废水为惟一碳源,通过选择性富集、驯化培养和划线分离纯化,分别从三峡大学求索溪、三峡某药业及三峡大学接待中心3种活性污泥中分离得到菌株HS150,其中三峡大学求索溪的活性污泥中菌株HS150含量最大,其降解能力最强。经革兰氏染色、氧化酶实验、触酶实验及DNA酶实验等,初步鉴定菌株HS150为奈瑟氏菌属(Neisseria)。由单因子优化法实验得出菌株HS150降解宜昌某制药废水的最适条件:温度为30℃,pH为7,当底物浓度为600 mL/L时,制药废水降解率可达85%,其矿化程度较高。  相似文献   

3.
用于青霉素废水处理的高效菌株的分离及特性研究   总被引:1,自引:0,他引:1  
从某制药厂污水处理站的活性污泥中筛选出两株能以青霉素废水中有机物为惟一碳源和能源的高效降解菌k1和k2。通过形态及生理生化特征分析,初步鉴定2株菌为芽孢菌,其中k2为短小芽孢杆菌(bacillus pumilus)。2株菌的最适pH值分别为8和7,温度均为35℃,当废水含量50%时,菌株k1和k2对青霉素废水的COD去除率分别为79%和81%。单菌株与混合菌株对废水的降解特性试验表明,前48 h混菌对废水的去除率不及单菌株,而48 h后混合菌株去除率高于单菌株,60 h时达到最高为85%。  相似文献   

4.
邵啸  毕潇  吴涓  王宁  李玉成 《环境工程学报》2015,9(3):1027-1032
采用低温富集培养及混合平板分离技术,从巢湖底泥中分离筛选得到2株在低温下仍具有较高效能的菌株D3、D6,经过厌氧/好氧交替培养,2种菌株在低温下(8℃)的除磷率均达到80%以上。在低温下,研究了p H、微量元素对2株菌株生长及除磷率的影响,实验结果表明,2株菌都具有广泛的温度适应性,适宜其生长和除磷的p H为中性偏碱,微量元素的缺乏对2株菌株的生长和除磷效果有不同程度的不良影响。染色观察显示,厌氧培养时菌体内聚羟基丁酸(PHB)颗粒明显增多,转为好氧培养后异染颗粒增多,为典型的聚磷菌特征。经鉴定,2株菌均属假单胞菌属。  相似文献   

5.
在序批式活性污泥反应器(SBR)中快速富集聚磷菌(PAOs),考察PAOs中Candidatus Accumulibacter phosphatis(以下简称Accumulibacter)种群的除磷特性.结果表明,在水温(20.0士0.5)℃下控制厌氧初始pH为7.50~7.80,好氧段DO为2.0~4.0 mg/L,进水乙酸与丙酸摩尔比为3.0的条件下,PAOs能够在60 d内实现快速富集,荧光原位杂交检测(FISH)显示,Accumulibacter占全菌比例达到62.4%士4.7%;厌氧溶解性正磷酸盐(SOP)释放量(SOP.)与挥发性脂肪酸(VFA)吸收量(VFAa)的比值与活性污泥中Accumulibacter占全菌比例呈线性关系,说明全菌中Accumulibacter的相对数量对活性污泥的除磷特性具有显著影响;在长期没有硝酸盐的条件下培养的Accumulibacte反硝化除磷能力较弱,Accumulibacte不能有效驯化为反硝化聚磷菌(DPAOs).  相似文献   

6.
一株毒死蜱降解菌的分离鉴定及降解性能研究   总被引:4,自引:0,他引:4  
从农药厂废水处理池污泥中分离到一株对毒死蜱有较强降解能力的菌株CH3,通过生理生化试验初步将该菌鉴定为哈夫尼菌属(Hafnia sp.)。CH3能以毒死蜱为唯一碳源生长,在温度为30℃,pH为7.0,毒死蜱初始浓度为200 mg/L的条件下,历时6 d,毒死蜱的降解率可达78.5%。菌株最适生长温度为37℃,最适pH值为7.0,最适降解浓度为200 mg/L。对碳、氮源利用广泛,最佳碳源为蔗糖和葡萄糖,对氮源选择性不高,在无机氮源和有机氮源中均能较好地生长。  相似文献   

7.
针对厌氧氨氧化工艺需要提供充足的亚硝酸盐氮为电子受体的问题,利用培养基对SBR中具有一定短程硝化功能的污泥进行富集培养,得到氨氧化菌和亚硝酸盐氧化菌的数量之比为104︰1,并研究了工艺条件对短程硝化的影响,结果表明,适合氨氧化菌生长的最佳温度为30℃、pH为7.5、nHCO-3/nNH+4-N值为1。以适合氨氧化菌生长的最佳环境条件优化SBR,在进水氨氮浓度为250 mg/L时,氨氮的转化率达到90%以上,亚硝酸盐氮积累率维持在85%以上,反应器中氨氧化菌与亚硝酸盐氧化菌的数量之比为103∶1,亚硝酸盐的高效积累为厌氧氨氧化工艺处理高氨废水的过程提供了稳定的电子受体。  相似文献   

8.
一株异养脱氮菌的脱氮性能及其影响因素研究   总被引:1,自引:0,他引:1  
研究异养硝化过程中分离得到一株具有异养脱氮性能的菌株,经16S rRNA鉴定后为Providencia rettgeri菌属,命名为Providencia rettgeri strain YL。在实验室条件下,初步探讨了不同碳氮源、温度、pH值、摇床转速和微量元素对Providencia rettgeri strain YL菌株脱氮作用的影响,研究结果显示,Providencia rettgeri strain YL菌株在葡萄糖和氯化铵为碳氮源的培养基中生长最好,温度为30℃、pH值为7、摇床转速为120 r/min时具有最佳的脱氮效果,微量元素Mg2+最有利于Providencia rettgeri strain YL菌株的生长和脱氮。  相似文献   

9.
研究了厌氧折流板反应器(ABR)中成熟颗粒污泥和某污水处理厂回流、厌氧、曝气、消化4个单元中絮状污泥的一维、二维分形维数(D1、D2、D′2)及平均粒径在不同统计样本数下的变化规律。结果表明,当统计样本数达到200以上时,ABR中成熟颗粒污泥的D1、D2、D′2值趋于稳定;当样本数达到300以上时,某污水处理厂4个单元中絮状污泥的D1、D2、D′2值也分别趋于稳定。此外,1#ABR中的颗粒污泥在统计样本数达到350以上时其中位直径趋于稳定,而2#ABR和某污水处理厂4个处理单元中的污泥,在试验样本数下并未达到稳定。基于研究的结果和相关文献的结论,研究认为,如果需要得到稳定的平均粒径结果,可能需要大量的统计样本数,该样本数至少要大于600。  相似文献   

10.
稠油高效降解菌的降解特性及其应用   总被引:2,自引:0,他引:2  
以稠油为唯一碳源,对细菌B0501、B0505和B0510的降解特性进行了分析,结果表明3株菌对稠油的不同组分具有不同程度的降解能力,其中B0505对烷烃、B0510对芳香烃以及B0501对胶质和沥青质的去除率较高,分别为42.26%、35.30%和40.76%;混合菌协同作用强化了稠油组分的降解,3株菌株组合对烷烃、芳香烃以及胶质沥青质的降解率分别达到44.23%、38.56%和62.12%;微生物对稠油降解过程符合一级动力学方程,其中3株菌株组合对稠油降解的速率最快,半衰期(t1/2)为5.36 d。将微生物应用于稠油废水处理实践,结果表明外源微生物的投加强化了废水中COD的去除率;GC-MS图谱及降解前后有机成分分析进一步佐证了微生物对稠油废水中有机成分的降解能力。  相似文献   

11.
阐述了3种不同基质(乙酸盐、丙酸盐和葡萄糖)在强化生物除磷系统中的生化模型反应机理.重点介绍了聚磷菌(PAOs)、聚糖菌(GAOs)和产乳酸菌在厌氧/好氧条件下对能量及还原力(NADH2)的利用方式;聚-β-羟基链烷酸盐(PHA)的合成方式及存在形式,糖原、乳酸(L型)的代谢途径等.虽然控制基质条件可以实现稳定的强化生物除磷效果,但目前的生化模型并不能完全解释所有的代谢过程,今后要在分离纯种的PAOs及相关生化代谢过程中酶的活动等方面进行深入研究.  相似文献   

12.
A combined approach of biological treatment, solids digestion and nutrient recovery was tested on dairy manure. A sequencing batch reactor (SBR) was operated in three modes, in order to optimize nutrient (nitrogen and phosphorus) removals. The highest average removal efficiencies of 91% for NH4-N, 59% for PO4-P and 80% for total chemical oxygen demand (COD) were achieved. Staining experiments suggested the coexistence of glycogen and phosphorus accumulating organisms. Anaerobic digestion of wasted bio-solids was able to produce a PO4-P concentration of 70 mgL?1 in the supernatant. A pilot-scale experiment, designed to recover phosphorus in the supernatant as struvite (magnesium ammonium phosphate), was able to remove 82% of soluble PO4-P.  相似文献   

13.
Previous researches have demonstrated that biological phosphorus removal (BPR) from wastewater could be driven by the aerobic/extended-idle (A/EI) regime. This study further investigated temperature effects on phosphorus removal performance in six A/EI sequencing batch reactors (SBRs) operated at temperatures ranging from 5 to 30 °C. The results showed that phosphorus removal efficiency increased with temperature increasing from 5 to 20 °C but slightly decreased when temperature continually increased to 30 °C. The highest phosphorus removal rate of 97.1 % was obtained at 20 °C. The biomass cultured at 20 °C contained more polyphosphate accumulating organisms (PAO) and less glycogen accumulating organisms (GAO) than that cultured at any other temperatures investigated. The mechanism studies revealed that temperature affected the transformations of glycogen and polyhydroxyalkanoates, and the activities of exopolyphosphatase and polyphosphate kinase activities. In addition, phosphorus removal performances of the A/EI and traditional anaerobic/oxic (A/O) SBRs were compared at 5 and 20 °C, respectively. The results showed the A/EI regime drove better phosphorus removal than the A/O regime at both 5 and 20 °C, and more PAO and less GAO abundances in the biomass might be the principal reason for the higher BPR in the A/EI SBRs as compared with the A/O SBRs.  相似文献   

14.
A sequencing batch reactor (SBR) seeded with flocculated sludge and fed with synthetic wastewater was operated for an enhanced biological phosphorus removal (EBPR) process. Eight weeks after reactor startup, sludge granules were observed. The granules had a diameter of 0.5 to 3.0 mm and were brownish in color and spherical or ellipsoidal in shape. No significant change was observed in sludge granule size when operational pH was changed from 7 to 8. The 208-day continuous operation of the SBR showed that sludge granules were stably maintained with a sludge volume index (SVI) between 30 to 55 mL/g while securing a removal efficiency of 83% for carbon and 97% for phosphorus. Fluorescent in situ hybridization (FISH) confirmed the enrichment of polyphosphate accumulating organisms (PAOs) in the SBR. The observations of sludge granulation in this study encourage further studies in the development of granules-based EBPR process.  相似文献   

15.
Recently, it has been reported that biological phosphorus removal (BPR) can be induced by an aerobic/extended-idle (AEI) regime. This study further investigated the effect of initial pH ranging from 6.6 to 8.2 on BPR in the AEI process, and compared the BPR performance between the AEI and the anaerobic/oxic (A/O) regimes under their optimal initial pH value. Experimental results firstly showed that phosphorus removal linearly increased with initial pH increasing from 6.6 to 7.8, but slightly decreased when initial pH increased from 7.8 to 8.2. The optimal initial pH should be controlled at 7.8, and the phosphorus removal at initial pH 7.8 was approximately 1.7-time than that at initial pH 6.6. The mechanism studies showed that the biomass cultured at initial pH 7.8 contained more polyphosphate accumulating organisms (PAOs), lower glycogen accumulating organisms (GAOs), and had higher activities of exopolyphosphatase and polyphosphate kinase than that cultured at initial pH 6.6. Cyclic studies revealed that initial pH control affected the transformations of intracellular polyhydroxyalkanoates and glycogen, which might thereby influence microbial competition between PAOs and GAOs. Then, BPR performance between the AEI and the A/O regimes by adjusting initial pH at 7.8 was also compared. The results showed the AEI regime could drive a better BPR than the generally accepted A/O regime (98% vs 88%). Finally, controlling initial pH at 7.8 to promote BPR in the AEI process was confirmed for a municipal wastewater.  相似文献   

16.
采用人工配水,在厌氧/好氧交替运行的序批式活性污泥反应器(SBR)中,富集了全菌数量80%以上的聚磷菌(Candi-datus Accumulibacter Phosphates)。以此为基础,研究了O2及不同浓度NO3--N、NO2--N对聚磷菌吸磷的影响。结果表明,在一定的条件下,聚磷菌可以NO3--N和NO2--N为电子受体进行缺氧吸磷;NO3--N浓度对聚磷菌的吸磷速率影响很小;聚磷菌可以低质量浓度NO2--N(≤40mg/L)为电子受体,但不能以高质量浓度NO2--N(≥80mg/L)为电子受体,而且高浓度NO2--N对聚磷菌吸磷产生抑制甚至对细菌本身存在毒害;NO2--N为电子受体时,其抑制浓度和污泥本身以及外界条件都存在很大的关系,各个研究结论不尽相同,其影响过程有待进一步的探讨。  相似文献   

17.
A combined approach of biological treatment, solids digestion and nutrient recovery was tested on dairy manure. A sequencing batch reactor (SBR) was operated in three modes, in order to optimize nutrient (nitrogen and phosphorus) removals. The highest average removal efficiencies of 91% for NH4-N, 59% for PO4-P and 80% for total chemical oxygen demand (COD) were achieved. Staining experiments suggested the coexistence of glycogen and phosphorus accumulating organisms. Anaerobic digestion of wasted bio-solids was able to produce a PO4-P concentration of 70 mgL-1 in the supernatant. A pilot-scale experiment, designed to recover phosphorus in the supernatant as struvite (magnesium ammonium phosphate), was able to remove 82% of soluble PO4-P.  相似文献   

18.
在改良型氧化沟工艺的循环廊道内增设缓流板,以此改变循环廊道过流断面面积,进而调控循环比(循环廊道断面通过的循环流量和进水流量的比值)。利用胞内、胞外聚合物的分析及物料平衡的方法,研究了增设缓流板、调控循环比前后系统同步脱氮除磷效果和磷转化途径的变化及聚磷菌种含量的差别。结果表明,增设缓流板,循环比为27时,COD、NH+4、TN和TP的平均去除率分别为93.3%、87.1%、78.1%和96.0%,反硝化聚磷菌占总聚磷菌的比例为46.1%;而不设缓流板,循环比为241时,COD、NH+4、TN和TP的平均去除率分别为91.2%、82.7%、67.2%和86.4%,反硝化聚磷菌占总聚磷菌的比例为17.54%。综上可知,增设缓流板控制循环比,有助于提高反硝化聚磷菌的富集,有助于提高反硝化吸磷量,同时有助于提高氧化沟工艺的同步脱氮除磷效果。  相似文献   

19.
Proliferation of Glycogen Accumulating Organisms (GAOs) accounts as one of the major bottlenecks in biological phosphorus removal systems. GAO outcompeting polyphosphate accumulating organisms (PAOs) results in lower P-removal. Thus, finding optimal conditions that favour PAO in front of GAO is a current focus of research. This work shows how nitrite can provide a novel strategy for PAO enrichment. A propionate-fed GAO-enriched biomass (70% Defluviicoccus I, 18% Defluviicoccus II and 10% PAO) was subjected more than 50 d under anaerobic-anoxic conditions with nitrite as electron acceptor. These operational conditions led to a PAO-enriched sludge (85%) where GAO were washed out of the system (<10%), demonstrating the validity of the new approach for PAO enrichment. In addition, the presented suppression of Defluviicocus GAO with nitrite represents an add-on benefit to the nitrite-based systems since the proliferation of non-desirable GAO can be easily ruled out and added to the other benefits (i.e. lower aeration and COD requirements).  相似文献   

20.
催化铁与生物法耦合除磷工艺特性   总被引:1,自引:0,他引:1  
为了研究催化铁与生物耦合后对生物除磷特性的影响,实验采用人工配水用厌氧/好氧间歇流式富集培养聚磷微生物。对比发现,催化铁与生物耦合组中厌氧末段ORP降低了约60mV,pH值小幅度的上升(≤0.3),整个培养过程中铁离子的浓度开始快速增加,之后趋于稳定(约40mgFe/gMLSS)。对好氧末段污泥SVI值比较发现,耦合工艺污泥沉降性能得到改善。除磷曲线比较发现,耦合组中厌氧末段磷的释放量下降,而好氧阶段磷的吸收速率增加;胞内聚合物提取表明,耦合组厌氧末段聚磷菌细胞内PHA含量有提高,好氧末段糖原含量有下降。磷形态提取分析表明,耦合组好氧末段污泥中无机态PO3 4-- P含量更高。低浓度铁离子可以起到与生物耦合同步除磷的目的,本工艺长期运行未发现耦合体系中催化铁对除磷的抑制作用。  相似文献   

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