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1.
以上海市某污水处理厂A/O工艺好氧池为研究对象,在线监测好氧池沿程的耗氧速率和氧利用率(OTE),结合好氧池的曝气量、DO、进出水污染物指标,对曝气充氧性能进行综合评估。通过核算该污水处理厂实际需氧量和实际供氧量,计算曝气系统的节能潜力。结果表明:(1)该污水处理厂好氧池OTE为22.54%~28.82%,曝气量为4.24~9.63m~3/h。曝气量与OTE的变化呈明显的负相关,说明好氧池中的曝气器可能受到一定程度的污染。(2)距好氧池进水口5~45m,活性污泥比耗氧速率(SOUR)在12~16mg/(g·h)内波动,在实际经验值8~20mg/(g·h)内。60、100、140m处SOUR低于8mg/(g·h),处理负荷偏低,存在曝气过量和池容浪费的情况。(3)好氧池供气量、需气量分别为89 968.99、76 885.15m~3/d,节能潜力较大。  相似文献   

2.
非线性回归法计算曝气设备清水氧传递系数   总被引:8,自引:0,他引:8  
分析对比作图法、线性回归法和非线性回归法计算曝气设备清水氧传递系数(KLa)各自的优缺点。指出在实际测定曝气设备性能中,使用非线性回归法计算KLa更加可靠.而且可以使测试过程更加容易控制。所以在实际测试过程中,推荐使用非线性回归法计算KLa。  相似文献   

3.
几种倒伞型表面曝气机的充氧性能   总被引:2,自引:0,他引:2  
对安徽某科技公司产自行研究的几种倒伞型表面曝气器的充氧性能进行模拟比较研究,利用合肥某氧化沟装置在清水条件下对各叶轮的氧总转移系数KLa、理论充氧能力qc、理论动力效率E及水体流速v进行了测试,对比分析了叶片安装角度、片数及叶片设计对充氧能力的影响。结果表明,叶片导流辐板斜角设计对充氧效率影响最大,是叶轮性能提升最关键因素。  相似文献   

4.
曝气密度(即曝气面积占曝气系统服务总面积的比率)是曝气系统重要的参数之一。以标准氧总转移系数作为评价指标,在小试装置中对不同曝气密度的曝气系统充氧性能进行评价。结果表明:(1)曝气系统标准氧总转移系数随曝气密度增大而显著增大,但同时需要考虑到曝气系统的微孔曝气器布置方式;(2)相同气量下,曝气系统的气泡直径与气泡运动速度随曝气密度增大而减小,气泡停留时间和气含率随曝气密度增大而增大。  相似文献   

5.
生物填料在污水处理中常用来增加生物量以提高污水的净化效率,同时生物填料的加入会影响曝气氧转移效率.考察了典型的SPR-1生物悬浮填料在清水中对微孔曝气氧传质过程的影响.结果表明,在水深为6.00 m时,SPR-1生物悬浮填料有助于促进微孔曝气的氧传质,当填料填充率为40%,单位体积通气量为0.755 m3/h时,氧总转移系数(KL a20)和标准氧转移效率(SOTE)提高程度最大,分别为19.32%和5.78%;当水深为2.33 m时,SPR-1生物悬浮填料对微孔曝气氧传质有阻碍作用.在实际污水处理过程中,可以根据水深,调节填料填充率来使填料最大限度地促进氧传质.  相似文献   

6.
曝气量和曝气时长对好氧颗粒污泥活性恢复的影响   总被引:1,自引:0,他引:1  
采用啤酒废水,在SBR中对在4℃的冰箱中储存8周的好氧颗粒污泥进行活性恢复。设置曝气时长分别为150 min和270 min,曝气量分别为0.1 m3/h和0.2 m3/h,考察了曝气时长和曝气量对好氧颗粒污泥活性恢复的影响。实验结果表明,好氧颗粒污泥在4℃冰箱中储存8周后,其颜色、粒径无明显变化;设置较长曝气时间(270 min)、较大曝气量(0.2 m3/h)时,颗粒污泥平均沉降速率、MLSS和SVI恢复最快,且对COD处理效果也恢复较快。而短曝气时间(150 min)、小曝气量(0.1 m3/h)有利于好氧颗粒污泥对氨氮去除效果的恢复。  相似文献   

7.
孔径对微孔曝气充氧性能的影响   总被引:4,自引:0,他引:4  
孔径是微孔曝气产品最重要的参数之一,研究孔径对微孔曝气氧传质的影响对于提高微孔曝气器充氧性能有重要意义。本研究在1.5 m水深条件下对不同大小孔径的钟罩型塑料微孔曝气器充氧性能进行评价。结果发现,在实验条件下,微孔曝气器的阻力损失RL、标准氧总转移系数KLas、标准氧转移速率SOTR,标准氧转移效率SOTE及理论动力效率E随孔径增大而显著减小。  相似文献   

8.
利用粒子图像测速技术(PIV)和溶解氧在线测试仪对管式曝气池在不同进水流量和不同曝气强度工况下的液相流态和氧传质特性进行了测定。结果表明,管式曝气池在相同曝气强度下,氧转移系数和氧转移效率均随着进水流量的增加而逐渐增加;而在相同进水流量时,氧转移系数和氧转移效率均随曝气强度的增大呈先下降后逐渐上升的趋势。综合考虑理论和实际情况,PIV测量时曝气强度选择0.750m3/h。当进水流量为0.234m~3/h时,管式曝气池上中下3个区域的涡量面积分布最均匀,液相死区最少,说明此时气液两相混合程度最好。因此,管式曝气池的最佳进水流量确定为0.234m~3/h。  相似文献   

9.
为研究移动床生物膜反应器(MBBR)中微生物呼吸作用对微孔曝气氧传质效率(OTE)的影响,向清水中持续通入一定浓度的消氧剂——亚硫酸钠溶液,通过亚硫酸钠的氧化来模拟微生物的呼吸耗氧。基于不同填充率和曝气量工况条件下,考察了微生物耗氧速率(OUR)对OTE的影响。结果表明:在40L/h曝气量条件下,装置填充率在20%~50%时,标准氧传质效率(SOTE)与OUR存在着明显的正相关性,其线性拟合R2介于0.789 8~0.976 2;填充率为60%时,SOTE随OUR的增大无明显变化。装置填充率在50%、曝气量分别为40、80、100L/h时,SOTE随OUR的增大无明显变化;而曝气量为60L/h时,SOTE随OUR的增大明显增大。进一步分析试验结果得出,MBBR中,微生物OUR可用来近似表征OTE,但不同填充率和曝气量会对两者的相关性产生一定影响。  相似文献   

10.
污泥浓度对微孔曝气氧传质过程的影响   总被引:1,自引:1,他引:0  
污泥浓度是影响微孔曝气氧传质过程的重要因素之一。在小试及中试规模上,研究了不同污泥浓度对微孔曝气氧传质过程的影响,得出曝气性能随污泥浓度的变化规律。结果表明,当污泥浓度低于2000mg/L时,曝气性能随浓度的增大而增强,在2000~3000mg/L时,KLa达到最大值;当污泥浓度大于2000~3000mg/L时,曝气性能随污泥浓度增大而降低,当污泥浓度大于5000mg/L时,曝气性能急剧降低。这一规律对于在设计和运行中合理确定污水处理中的污泥浓度,在达到处理效果的前提下,尽量降低电耗具有重要意义。  相似文献   

11.
微气泡曝气中氧传质特性研究   总被引:18,自引:0,他引:18  
气泡曝气过程中氧传质对于好氧生物处理过程具有重要意义。采用水力旋转剪切微气泡发生装置,考察了运行条件和水质特性对微气泡曝气中氧传质特性的影响。结果表明,微气泡曝气可获得较高的气含率和气泡停留时间;表面活性剂十二烷基磺酸钠(SDS)可以提高微气泡曝气的气含率和气泡停留时间。微气泡曝气中氧的总体积传质系数明显高于传统气泡曝气。总体积传质系数随着空气流量的增加而增加;氧传质效率随着空气流量的增加而减小,且对空气流量的变化更为敏感。在温度15~35℃范围内,微气泡曝气中氧的总体积传质系数随着温度的增加而增加,变化关系与传统气泡曝气基本相同,但对温度的变化更为敏感。微气泡曝气中,表面活性剂SDS会使氧的总体积传质系数略有降低,其不利影响明显小于传统气泡曝气;氧的总体积传质系数随盐度(NaC l浓度)增加而逐渐增加,并在NaC l浓度5 000 mg/L后趋于稳定。  相似文献   

12.
Abstract

An activated sludge aeration tank (40 × 40 × 300 cm, width × length × height) with a set of 2-mm orifice air spargers was used to treat gas-borne volatile organic compounds (VOCs; toluene, p-xylene, and dichloromethane) in air streams. The effects of liquid depth (Z), aeration intensity (G/A), the overall mass-transfer rate of oxygen in clean water (K L a O2 ), the Henry’s law constant of the tested VOC (H), and the influent gaseous VOC concentration (C 0) on the efficiency of removal of VOCs were examined and compared with a literature-cited model. Results show that the measured VOC removal efficiencies and those predicted by the model were comparable at a G/A of 3.75–11.25 m3/m2·hr and C 0 of ~1000–6000 mg/m3. Experimental data also indicated that the designed gas treatment reactor with K L a O2 = 5–15 hr?1 could achieve >85% removal of VOCs with H = 0.24–0.25 at an aerated liquid depth of 1 m and >95% removal of dichloromethane with H = 0.13 at a 1-m liquid depth.  相似文献   

13.
Nitrous oxide (N2O) has gained considerable attention as a contributor to global warming and depilation of stratospheric ozone layer. Landfill is one of the high emitters of greenhouse gas such as methane and N2O during the biodegradation of solid waste. Landfill aeration has been attracted increasing attention worldwide for fast, controlled and sustainable conversion of landfills into a biological stabilized condition, however landfill aeration impel N2O emission with ammonia removal. N2O originates from the biodegradation, or the combustion of nitrogen-containing solid waste during the microbial process of nitrification and denitrification. During these two processes, formation of N2O as a by-product from nitrification, or as an intermediate product of denitrification. In this study, air was injected into a closed landfill site and investigated the major N2O production factors and correlations established between them. The in-situ aeration experiment was carried out by three sets of gas collection pipes along with temperature probes were installed at three different distances of one, two and three meter away from the aeration point; named points A-C, respectively. Each set of pipes consisted of three different pipes at three different depths of 0.0, 0.75 and 1.5 m from the bottom of the cover soil. Landfill gases composition was monitored weekly and gas samples were collected for analysis of nitrous oxide concentrations. It was evaluated that temperatures within the range of 30–40°C with high oxygen content led to higher generation of nitrous oxide with high aeration rate. Lower O2 content can infuse N2O production during nitrification and high O2 inhibit denitrification which would affect N2O production. The findings provide insights concerning the production potentials of N2O in an aerated landfill that may help to minimize with appropriate control of the operational parameters and biological reactions of N turnover.

Implications: Investigation of nitrous oxide production potential during in situ aeration in an old landfill site revealed that increased temperatures and oxygen content inside the landfill site are potential factors for nitrous oxide production. Temperatures within the range of optimum nitrification process (30–40°C) induce nitrous oxide formation with high oxygen concentration as a by-product of nitrogen turnover. Decrease of oxygen content during nitrification leads increase of nitrous oxide production, while temperatures above 40°C with moderate and/or low oxygen content inhibit nitrous oxide generation.  相似文献   


14.
在填料吸收塔中考察了Na2CO3溶液吸收高浓度H2S气体的气液传质特性。通过测量填料塔进出口气体中H2S浓度计算了Na2CO3溶液吸收高浓度H2S气体的总体积传质系数(KGa),并研究了进气流速、吸收液流量、吸收温度和吸收液浓度对KGa的影响。结果表明,KGa随Na2CO3浓度、吸收液流量的增加而增加,随吸收温度、进气流速的升高而降低;在高浓度H2S吸收过程中液相传质阻力不能忽略。  相似文献   

15.
针对分散填料曝气塔中多相流的流态与传氧过程,实验了布气方式以及海绵和陶粒2种填料对于体系的气含率εg、流态以及气-液传质性能的影响。在表观气速U范围(0.01~0.18 m/s)内观察到81孔布气板(Φ1 mm)体系出现3个明显相区,孔数过少(25孔),或者孔间距较小(225孔)均没有明显过渡区,在湍流区(U>0.118 m/s)3种布气板的气含率没有明显差别。海绵填料体积分数εs<25%时体系的气含率没有明显变化,35%时气含率下降且过渡区提前出现。在非均相区,海绵填料明显提高了体系的传质系数KLa。陶粒填料降低了气含率,固含率对εg的影响差别不明显,同时降低了多相流体系的KLa,且随着固含率的增加KLa降低。对比多种操作条件,单位体积空气传氧能力KLa/εg无明显差别,但在81孔布气板的过渡区KLa/εg出现一个明显的极小区间,说明过渡区传氧效率较低。在特定的实验操作条件下,KLa/εg较为稳定,这为深入理解两种气泡群体的共存体系在传氧性能方面各自的权重,提供了重要的量化参考。  相似文献   

16.
Nitritation (ammonium to nitrite) as a pre-treatment of Anammox (anaerobic ammonium oxidation) is a key step for an energy-efficient nitrogen-removal alternative from dilute wastewaters, e.g. anaerobically-treated sewage, with which limited study has achieved sustainable nitritation at ambient temperature and short hydraulic retention times. To this end, pH-gradient real-time aeration control in an oxygen-based membrane biofilm reactor was observed at 20 °C in the sequencing batch mode. An optimum oxygen supply via diffusion for ammonium-oxidizing bacteria (AOB) was established, but nitrite-oxidizing bacteria (NOB) could be inhibited. The system achieved nitrite accumulation efficiencies varying from 88% to 94% with the aeration control. Mass balance and rate performance analyses indicate that this aeration control is able to supply an oxygen rate of 1.5 mol O2 mol?1 ammonium fed, the benchmark oxygenation rate based on stoichiometry for nitritation community selection. Microbial analyses confirmed AOB prevalence with NOB inhibition under this aeration control.  相似文献   

17.
用微电极测定曝气量对SBR系统中硝化作用的影响   总被引:1,自引:0,他引:1  
为了研究曝气量对硝化作用的影响,实验采用3个相同的SBR装置,分别在曝气量为4、10和16 L/h的条件下处理人工污水,并采用自制的溶解氧、NO3-、NH4+和pH微电极测定了活性污泥絮体内部微元环境中相应基质的浓度。结果表明,曝气量为4 L/h时,活性污泥絮体内存在厌氧微区,NO3--N浓度减小了,发生了反硝化作用;而曝气量为10 L/h和16 L/h时,活性污泥絮体内发生的都是硝化反应,且NH4+-N浓度的减小量、NO3--N浓度的增大量都随着曝气量的增大而增大,pH随着曝气量的增大而减小。  相似文献   

18.
为了降低工业废气中的硫化氢去除工艺成本和运行费用,对三价铁盐吸收与氧化亚铁硫杆菌对Fe2+的生物氧化联合作用脱除H2S进行了研究。通过生物氧化塔中的固定化氧化亚铁硫杆菌细胞再生的Fe3+溶液,在H2S还原吸收塔中脱除H2S。通过单因素实验分别优化了生物氧化塔和H2S吸收塔的运行参数,在生物氧化塔曝气量为150 L/h,停留时间为11 h,吸收液中Fe3+浓度为0.121~0.143 mol/L,吸收液流量为0.3 L/h,进气量为100 L/h条件下,进气中H2S浓度分别为2.28和9.11 mg/L,系统连续运行至200 min时趋于相对稳定,当系统连续运行稳定时,H2S的脱除率可分别达到95%和91%,脱除效果显著。  相似文献   

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