排序方式: 共有85条查询结果,搜索用时 18 毫秒
11.
Biological sulfate removal from acrylic fiber manufacturing wastewater using a two-stage UASB reactor 总被引:2,自引:0,他引:2
A two-stage UASB reactor was employed to remove sulfate from acrylic fiber manufacturing wastewater. Mesophilic operation (35±0.5℃) was performed with hydraulic retention time (HRT) varied between 28 and 40 hr. Mixed liquor suspended solids (MLSS) in the reactor was maintained about 8000 mg/L. The results indicated that sulfate removal was enhanced with increasing the ratio of COD/SO42-. At low COD/SO42-, the growth of the sulfate-reducing bacteria (SRB) was carbon-limited. The optimal sulfate removal efficiencies were 75% when the HRT was no less than 38 hr. Sulfidogenesis mainly happened in the sulfate-reducing stage, while methanogenesis in the methane-producing stage. Microbes in sulfate-reducing stage performed granulation better than that in methane-producing stage. Higher extracellular polymeric substances (EPS) content in sulfate-reducing stage helped to adhere and connect the flocculent sludge particles together. SRB accounted for about 31% both in sulfate-reducing stage and methane-producing stage at COD/SO42- ratio of 0.5, while it dropped dramatically from 34% in sulfate-reducing stage to 10% in methane-producing stage corresponding to the COD/SO42- ratio of 4.7. SRB and MPA were predominant in sulfate-reducing stage and methane-producing stage respectively. 相似文献
12.
高效厌氧产甲烷颗粒污泥中微生物多样性及定量化研究 总被引:4,自引:4,他引:0
以小试高效厌氧反应器不同运行阶段的颗粒污泥为对象,利用变性梯度凝胶电泳(DGGE)、荧光原位杂交(FISH)和实时定量链式聚合酶反应(RTQ-PCR)等技术研究了其中微生物种群的多样性、特征微生物的空间分布和定量关系,结果表明:随着反应器有机负荷逐渐提高,颗粒污泥中古菌的群落结构的变化较细菌更为明显;细菌多分布在颗粒外层,而古菌则主要分布在颗粒内层;古菌含量略少于细菌,但有逐渐增多的趋势;产甲烷丝菌在古菌中的含量增加明显. 相似文献
13.
以葡萄糖为碳源,在USB反应器内接种好氧活性污泥在40 d内培养出良好的反硝化颗粒污泥.颗粒污泥形成经历了2个阶段:起始阶段,接种的好氧活性污泥中非反硝化菌逐渐衰亡演变为"惰性固体",与原有的固体一起,成为反硝化菌附着生长的载体,与此同时,反硝化菌在载体表面渐渐繁殖,形成细颗粒污泥;随后,反硝化菌在细颗粒污泥表面不断增殖,颗粒长大,发育成为成熟的颗粒污泥.成熟的颗粒污泥密实,表面均为杆状菌,且排列紧密,当污泥床容积负荷为19.1 g N/L·d时,去除率高达98.4%(N). 相似文献
14.
盐胁迫条件下好氧颗粒污泥生长模式研究 总被引:3,自引:1,他引:2
研究了含盐量分别为1%、2.5%、5%条件下颗粒污泥成长特性,对其表面结构、粒径分布与稳定性进行了评估.结果表明,在颗粒成长初期颗粒较为疏松,粒径和离散度均呈增大趋势;颗粒成熟后粒径密实度增大,粒径大多稳定在0.3~0.5 mm左右.成熟的颗粒污泥在含盐量1%下颗粒孔隙率较大,离散度较小,菌胶团细菌占优势,微生物通过胞外多聚物相互聚集,其稳定性较好;而在含盐量5%下其孑L隙率和离散度呈现相反趋势,丝状菌占优势,颗粒通过丝状菌的相互缠绕形成,其稳定性较差;但在含盐量2.5%下由于菌胶团细菌与丝状菌均未成为优势菌群,难以维持稳定结构,颗粒发生膨胀自溶,其离散度也变大.研究提出了同质和异质2种生长模式,颗粒粒径分布较窄的成长模式称为同质生长,其颗粒的生长及基质利用条件基本相同,故系统稳定;而颗粒粒径分布较宽的成长模式称为异质生长,其颗粒生长和基质利用条件差异性大,故系统不稳定. 相似文献
15.
Influence of temperature on the characteristics of aerobic granulation in
sequencing batch airlift reactors 总被引:2,自引:1,他引:1
Aerobic granular sludge was cultivated in sequencing batch airlift reactors(SBAR) at 25,30,and 35°C,respectively.The effect of temperature on the granules characteristics was analyzed and the microbial community structures of the granules were probed using scanning electron microscope(SEM) and polymerase chain reaction-denaturing gradient gel electrophoresis(PCR-DGGE).The results showed that 30°C is optimum for matured granule cultivation,where the granules had a more compact structure,better settling abili... 相似文献
16.
Granulation of filamentous microorganisms in a sequencing batch reactor
with saline wastewater 总被引:1,自引:0,他引:1
Proliferation of filamentous microorganisms frequently leads to operational failure for activate sludge systems. In this study, it was found that filamentous microorganisms could grow in compact granular structure with 5% sodium chloride in the substrate. In the early period of experiment, coccoid and rode-like bacteria predominated in the yellowish-brown granules, and later the white and the black granules were developed by filamentous microorganisms. The filamentous granules exhibited low porosity and fas... 相似文献
17.
SBR中厌氧颗粒污泥向好氧颗粒污泥的转化 总被引:25,自引:10,他引:15
在SBR反应器中以醋酸钠为碳源,UASB厌氧颗粒污泥作为接种污泥,在好氧曝气条件下运行.通过观察污泥颗粒形态、结构等的变化,发现在运行中污泥颗粒经历了形态保持,成分置换的过程.污泥浓度先增加后降低,在运行35 d后逐渐稳定在5g/L,SVI值稳定在30~40mL/g的水平.在40~60d内反应器中颗粒污泥一直占主体成分,悬浮相浓度低于0.5g/L.在好氧条件下最终颗粒污泥形态、大小稳定,表明好氧颗粒污泥已经成功获得,好氧颗粒污泥与接种污泥相比在粒径、沉降速度、含水率以及惰性成分的含量上都有一定的变化.电镜观察还表明,原厌氧颗粒污泥中的微生物以球菌为主,而获得的好氧颗粒污泥中的微生物以丝状菌和杆菌为主. 相似文献
18.
好氧颗粒污泥处理高含盐废水研究 总被引:17,自引:5,他引:12
试验采用序批式摇床反应器(SSBR)在高含盐废水中利用不同类型接种污泥培养出了好氧颗粒.结果表明,好氧颗粒污泥能够有效处理高含盐废水并且具有很好的抗盐度冲击能力.当废水盐度小于10 g/L NaCl并且进水基质为葡萄糖时,利用好氧颗粒污泥处理该废水可以取得70.3%~97.6%的TOC去除率.当进水盐度达到35 g/L NaCl并且进水基质为难降解Vc废水时,利用好氧颗粒污泥处理该含盐废水能够取得与相同基质相同运行条件下淡水废水中相似的70%的TOC去除率.试验在含盐废水中得到了粒径为0.5~3 mm的好氧颗粒污泥,其沉降速度大大高于淡水对照组中得到的好氧颗粒污泥沉降速度.相对淡水对照组中好氧颗粒污泥,含盐废水中好氧颗粒具有污泥产率更低、污泥活性(OUR)更高、颗粒稳定性更好的优势.从不同接种污泥类型来看,好氧絮状污泥和厌氧颗粒污泥接种都能快速实现污泥好氧颗粒化,但絮状污泥接种实现好氧颗粒化所需的时间更短.另外,在相同运行条件下,接种好氧絮状污泥反应器取得的TOC去除效果优于接种厌氧颗粒污泥反应器,但厌氧颗粒污泥接种具有更强的抗盐度冲击能力. 相似文献
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20.
中温和高温厌氧生物产氢反应器连续运行的研究 总被引:4,自引:2,他引:2
采用2个厌氧生物产氢反应器分别在中温(37℃)和高温(55℃)下连续运行.以河底沉积物接种,葡萄糖为基质,在CSTR中成功实现了连续中温厌氧产氢,最高产氢量达8.6L/(L·d),基质产氢摩尔比(H2/葡萄糖)为1.98.以厌氧产甲烷颗粒污泥接种,蔗糖为基质,在UASB反应器中成功实现了连续高温厌氧产氢过程,最高产氢量达6.8L/(L·d),基质产氢摩尔比(H2/蔗糖)为3.6.在高温UASB反应器中培养获得了灰白色的产氢颗粒污泥,平均粒径为0.8~1.2mm,沉速为30~40m/h,电镜观察发现其表层生长大量杆状细菌.对2种产氢污泥的总DNA进行提取和纯化,通过PCR扩增和DGGE分析,发现高温和中温厌氧产氢污泥中的大部分真细菌种类相同,但各自的优势菌种明显不同. 相似文献