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1.
进水浓度对UASB颗粒污泥形成的影响研究 总被引:9,自引:0,他引:9
采用人工葡萄糖配水,在相同的操作条件下,研究了进水浓度对UASB反应器颗粒污泥形成的影响。试验结果表明,9000mg/L COD的高浓度进水能够培养出良好的颗粒污泥,颗粒直径1.0—2.5mm(大多为2.0mm),SVI 16.03 ml/g,沉降性能良好.颗粒化过程在二个多月的试验周期内基本完成。反应器容积负荷达30.8kg COD/m~3·d,COD去除率大于85%.而采用1000mg/L COD的低浓度进水,也能培养出颗粒污泥但过程较慢,颗粒直径较小,约0.5—1.5mm,反应器容积负荷最高为10.2kg COD/m~3·d,COD去除率约75%。本文还就处理实际废水时的操作控制技术进行了分析讨论。 相似文献
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UASB反应器快速启动的试验研究 总被引:12,自引:0,他引:12
在中温条件下投加颗粒活性炭可加快UASB反应器颗粒化进程。通过对比试验,表明投加和不投加活性炭的反应吕处理石化石废水污泥颗粒化时间分别为39d和62d。投加活性炭反应器的颗粒污泥粒径也较大。最大COD去除率在86%以上。并且投加活性炭反应器的有机负荷为不投加的2倍,运行效果更稳定。 相似文献
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UASB反应器中颗粒污泥的沉降性能与终端沉降速度 总被引:15,自引:0,他引:15
从流体力学角度,通过建立沉降速度模型探讨了UASB反应器中颗粒污泥的沉降性能与终端沉降速度.计算结果表明,(1)绝大多数颗粒污泥的沉降过程属于过渡区(1<Re<100)而非层流区,其沉降速度与直径成正比,可用Allen公式进行计算;(2)颗粒污泥的终端沉降速度远高于厌氧反应器中废水的上流速度,其良好的沉降性能解决了在高负荷情况下污泥的流失问题.所建模型能较好地反映实际条件下的情况.为厌氧反应器的工艺设计与正常运行提供理论依据. 相似文献
6.
UASB反应器处理含蛋白质废水颗粒污泥形成的研究 总被引:6,自引:1,他引:6
以含蛋白质废水为基质,UASB反应器内培养颗粒污泥的试验结果表明,控制反应器出水 pH在7.2—7.5之间,出水丙酸浓度不超过300mg/L条件下,污泥负荷大于0.67kg COD/kgVSS·d时反应器内形成了颗粒污泥.MPN法计数发酵性细菌、丙酸分解菌、丁酸分解菌、乙酸裂解产甲烷菌和甲酸/H_2+CO_2,产甲烷菌的数量,只有当各类群细菌数量达到一定水平并且有合适的比例时才能形成颗粒污泥,颗粒污泥成熟后其组成相对稳定.颗粒污泥同接种污泥相比,其最大比产甲烷活性提高较大,是细菌数量增加的缘故。 相似文献
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固定化甲烷八叠球菌(Methanosarcina)研究——厌氧颗粒污泥的形成 总被引:7,自引:0,他引:7
用实验室规模的UASB反应器处理豆制品废水培养厌氧颗粒污泥。通过对颗粒污泥形成过程中的产气率、进出水COD、水滞留期(HRT)、进出水挥发酸(乙酸、丙酸和丁酸)浓度、所产气体的甲烷含量等的变化分析和对颗粒污泥中优势产甲烷菌的扫描(SEM)和透射(TEM)电镜观察,阐明颗粒污泥的形成过程及特性。实验结果表明,消化器运转50d左右形成了颗粒污泥,厌氧颗粒污泥形成期间的平均产气率为5.3L/L·d,最高产气率达到了8.1L/L·d,进水和出水COD分别为3000~5500mg/L和800~3000mg/L,平均HRT为10.4h,平均出水乙酸、丙酸和丁酸浓度分别为264.1、519.8和104.6mg/L,所产气体的平均甲烷含量为60.6%,颗粒污泥为黑色,直径0.5~3.0mm不等,沉降速率为119.6m/h,其中的优势产甲烷菌为鬃毛甲烷菌(Methanosaeta),而甲烷八叠球菌(Methanosarcina)存在甚少。 相似文献
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Sludge granulation is considered to be the most critical parameter governing successful operation of an upflow anaerobic sludge blanket and expanded granular sludge bed(EGSB)reactors.Pre-granulated seeding sludge could greatly reduce the required start- up time.Two lab-scale and a pilot-scale EGSB reactors were operated to treat Shaoxing Wastewater Treatment Plant(SWWTP) containing wastewater from real engineering printing and dyeing with high pH and sulfate concentration.The microbiological structure and the particle size distribution in aerobic excess sludge,sanitary landfill sludge digested for one year,and the granular sludge of EGSB reactor after 400 d of operation were analyzed through scanning electron microscopy (SEM) and sieves.The lab-scale EGSB reactor seeded with anaerobic sludge after digestion for one year in landfill showed obviously better total chemical oxygen demand (TCOD)removal efficiency than one seeded with aerobic excess sludge after cation polyacrylamide flocculation-concentration and dehydration.The TCOD removed was 470.8 mg/L in pilot scale EGSB reactor at short hydraulic retention time of 15 h.SEM of sludge granules showed that the microbiological structure of the sludge from different sources showed some differences.SEM demonstrated that Methanobacterium sp.was present in the granules of pilot-scale EGSB and the granular sludge produced by landfill contained a mixture of anaerobic/anoxic organisms in abundance.The particle size distribution in EGSB demonstrated that using anaerobic granular sludge produced by sanitary landfill as the seeding granular sludge was feasible. 相似文献
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以脱水造粒形成的物理颗粒污泥为接种污泥,明显提高了好氧污泥颗粒化速度.研究结果表明:在第20d,接种物理颗粒污泥的R2中90%以上的污泥粒径即大于0.2mm,而接种絮状污泥的R1中只有26.7%.颗粒化过程中,接种物理颗粒污泥的R2中SVI始终小于80mL/g沉降性能良好,第25d时污泥浓度为6300mg/L,而R1为3200mg/L.脱水过程未对污泥活性造成明显影响,培养期间两者COD去除率均大于90%,但培养后期R2中TN的去除率约为70%,明显优于R1的55%,其主要原因为R2中的污泥粒径大于R1.经过5d的曝气剪切后仍有39.8%的物理颗粒污泥大于0.2mm,为颗粒化提供了大量诱导核,同时物理颗粒污泥内部营养传输孔道的形成与EPS的內源消化和反硝化产气有关. 相似文献
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机械搅拌对CANON污泥快速颗粒化的影响 总被引:1,自引:0,他引:1
采用单纯依靠曝气的SBR反应器(R1)与曝气和机械搅拌联合的SBR反应器(R2),研究了不同控制方式对CANON污泥颗粒化的影响.结果表明,R2仅用40d即成功实现颗粒化,比R1用时减少三分之一;颗粒化期平均总氮去除率为83.07%,平均总氮容积负荷为0.26kgN/(m3·d),比R1脱氮效果更加稳定高效,证实了机械搅拌有利于提高粒径增长速率及脱氮能力.采用曝气和机械搅拌联合方式可有效缩短CANON污泥颗粒化的时间,并能实现稳定高效的总氮去除,是CANON污泥颗粒化的有效手段. 相似文献
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Fu Xu Zhenxing Huang Hengfeng Miao Hongyan Ren Mingxing Zhao Wenquan Ruan 《环境科学学报(英文版)》2013,25(10):2031-2040
Two identical full-scale biogas-lift reactors treating brewery wastewater were inoculated with different types of sludge to compare their operational conditions, sludge characteristics, and kinetic models at a mesophilic temperature. One reactor (R1) started up with anaerobic granular sludge in 12 weeks and obtained a continuously average organic loading rate (OLR) of 7.4 kg chemical oxygen demand (COD)/(m3.day), COD removal efficiency of 80%, and effluent COD of 450 mg/L. The other reactor (R2) started up with residual activated sludge in 30 weeks and granulation accomplished when the reactor reached an average OLR of 8.3 kg COD/(m^3·day), COD removal efficiency of 90%, and effluent COD of 240 mg/L. Differences in sludge characteristics,biogas compositions, and biogas- lift processes may be accounted for the superior efficiency of the treatment performance of R2 over R1. Grau second-order and modified StoverKincannon models based on influent and effluent concentrations as well as hydraulic retention time were successfully used to develop kinetic parameters of the experimental data with high correlation coefficients (R2 〉 0.95), which further showed that R2 had higher treatment performance than R1. These results demonstrated that residual activated sludge could be used effectively instead of anaerobic granular sludge despite the need for a longer time. 相似文献
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发泡多孔性藻朊酸钙胶体在UASB反应器生物造粒中的应用研究 总被引:2,自引:0,他引:2
UASB反应器启动初期,以发泡性藻朊酸钙胶体为形成生物粒子的核和促进造粒的辅助剂,进行加速UASB反应器启动试验的研究,并论述了藻朊酸钙胶体的制作过程,在UASB反应器中,接种污泥后立即培养,然后投入已制成的该胶体与菌种混合,经过20d的连续运转,甲烷含量达70%、TOC去除率为70%,颗粒内部作为核的藻朊酸钙胶体已被微生物所取代,生物粒子的沉速为300mm/min,粒子数为7000个/ml左右。 相似文献
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升流式厌氧污泥床处理含五氯酚废水的工艺特性 总被引:5,自引:0,他引:5
研究了升流式厌氧污泥床反应器(UASB)在中温条件下处理含五氯酚(PCP)模拟废水时的工艺特点及PCP降解机理。结果表明,在以处理啤酒废水的厌氧颗粒污泥为接种物(接种量约15gVSS/L),运行温度为35±1℃,水力停留时间20~24h,进水COD浓度为2500~2800mg/L,进水PCP浓度由1.0mg/L上升至8.0mg/L条件下,120d左右完成启动,COD和PCP去除率分别为86%及94%以上。高效液相色谱仪检测结果分析表明,PCP厌氧降解的途径是首先经间位脱氯生成四氯酚和2,4,6-三氯酚,再经邻位和对位脱氯生成2,4-二氯酚和邻氯苯酚,最后矿化为CH4和CO2。 相似文献
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微生物絮凝剂促进厌氧污泥颗粒化及其机制的研究 总被引:15,自引:2,他引:15
以市政污水消化污泥为种泥,一组投加微生物絮凝剂MBF21,另一组不投加MBF21作为对照,研究了微生物絮凝剂MBF21在低浓度下UASB反应器启动过程中厌氧污泥颗粒化的作用机理.在为期102d的实验中,对厌氧污泥颗粒的形成期、成长期、成熟期进行了系统的考察.至实验结束时,投加微生物絮凝剂组的厌氧颗粒污泥平均直径比对照组大0.3mm,产甲烷活性比对照组高31%以上.对厌氧颗粒污泥的扫描电镜及荧光显微照片观察中均发现了大量产甲烷菌.对微生物絮凝剂的红外光谱分析及污泥性能的测定结果确定了微生物絮凝剂促进厌氧污泥颗粒化的作用主要是吸附架桥. 相似文献
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用实验室规模的2个UASB反应器,分别研究了以葡萄糖和乙酸钠为共基质条件下3-硝基酚(3-NP)和2,6-二硝基酚(2,6-DNP)的降解效果.结果表明,对3-NP的降解,用葡萄糖作共基质的效果明显好于以乙酸钠为共基质;而对2,6-DNP的降解,乙酸钠作共基质效果更好.在含3-NP废水厌氧降解实验中,保持进水COD浓度为2 500 mg/L左右,HRT为26 h,以葡萄糖为共基质时,进水3-NP浓度可提高到254.6 mg/L,3-NP的去除率保持在99.0%以上;以乙酸钠为共基质时,保持HRT为30 h,3-NP浓度可提高到71.6 mg/L,3-NP去除率在90.0%以上.在含2,6-DNP废水厌氧降解实验中,保持进水COD浓度在2 500 mg/L左右,HRT为35 h,以葡萄糖为共基质时,2,6-DNP浓度可提高到170.0 mg/L,2,6-DNP的去除率保持在98.0%以上;以乙酸钠为共基质时,保持HRT为30 h,2,6-DNP最大浓度可提高到189.5 mg/L,2,6-DNP的去除率在99.2%以上. 相似文献
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Yishan Lin Yanling He Zhuo Meng Shucheng Yang 《Frontiers of Environmental Science & Engineering in China》2008,2(2):241-246
The direct conversion of methanol into methane is the main process in anaerobic treatment of methanol containing wastewater.
However, acetic acid can also be produced from methanol theoretically, which may probably result in an abrupt pH drop and
deteriorate the anaerobic process. Therefore, it is interesting to know what would really happen in an anaerobic reactor treating
methanol wastewater. In this study, an up-flow anaerobic sludge bed (UASB) reactor treating methanol wastewater was operated.
The chemical oxygen demand (COD), acetic acid and pH of the effluent were monitored at different loadings and influent alkalinity.
The results showed that the anaerobic reactor could be operated steadily at as low as 119 mg/L of influent alkalinity and
high organic loading rate with no obvious pH drops. Volatile fatty acids accumulation was not observed even at strong shock
loadings. The microorganisms in the sludge at the end of the test became homogeneous in morphology, which were mainly spherical
or spheroidal in shape.
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Translated from China Water & Wastewater, 2006, 22(13): 42–44,48 [译自: 中国给水排水] 相似文献
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用COD为300mg/L左右的生活污水在常温下(>17·C)启动5L升流式厌氧污泥床(UASB)反应器.接种消化污泥5.6keSS/m3,初始有机容积负荷为0.6kgCOD/(m3·d),水力停留时间为8h.稳定后逐步增加有机容积负荷.一个月后即有颗粒污泥出现,50d后反应器达到稳定的处理效果.运行145d后,污泥中大于0.5mm的颗粒污泥占总重量的73.5%,最大粒径可达3mm,比重为1.07SVI在20左右,污泥中产甲烷菌主要是索氏甲烷丝菌.用颗粒化后的反应器处理生活污水时,水力停留时间可短至6~4h,当水温不低于17℃时,出水COD均低于100mg/L,可达到排放要求。 相似文献
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上流式厌氧污泥床反应器处理3-硝基酚废水研究 总被引:1,自引:1,他引:1
利用实验室规模的UASB反应器,研究了颗粒污泥驯化前后的特性,3-硝基酚(3-NP)的降解效果和UASB处理3-NP废水的工艺参数.结果表明,驯化过程中颗粒污泥很快适应3-NP废水;扫描电镜观察显示,颗粒污泥表面丝状菌占优势.在3-NP废水厌氧降解性实验中,保持HRT和进水COD浓度不变,分别为26 h和2 500 mg/L左右,当3-NP浓度由20 mg/L逐渐提高到250 mg/L时,COD去除率由95.2%下降到85.1%;3-NP的去除率保持在99%以上;3-AP是3-NP降解过程中的主要中间产物,3-NP转化为3-AP的转化率由58.7%上升到111.9%;产气量变化较小,甲烷占总产气量百分数最小为65%,最大为74%. 相似文献
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Sludge granulation and e ciency of phase separator in UASB reactor treating
combined industrial e uent 总被引:1,自引:0,他引:1
Abdullah Yasar Nasir Ahm Muhammad Nawaz Chaudhry Aamir Amanat Ali Khan 《环境科学学报(英文版)》2007,19(5):553-558
Sludge granulation and the effect of gas-liquid-solid separator (GLSS) design on the efficiency of upflow anaerobic sludge blanket (UASB) and upflow anaerobic sludge filter (UASF) reactors, operating at HRTs ranging from 3 to 12 h was investigated. VSS/TS ratio gradually increased in both the reactors with increasing sludge age (from 0.5 to more than 0.7 for UASB reactor and 0.012 to 0.043 for UASF reactor). X-Ray diffraction analysis of the UASF sludge showed the presence of expanding clays revealing its additional absorption capability. Fuoraphyllite and albite precipitation related to excellular polymers of the microbial shell structure, showed the extended growth of microorganisms during sludge granulation. A gradual decrease (82%-69%) in COD removal with decreasing HRT was apparent in UASF reactor. In case of UASB reactor, this decrease was marginal because addition of GLSS device significantly improved (14%-20%) the overall efficiency of the UASB reactor. GLSS enhanced the efficiency of the UASB reactor by increasing the settleability of suspended particles and accelerating the coagulation of colloidal particles due to the velocity gradient. 相似文献