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951.
冬季污泥堆肥过程温室气体排放特征   总被引:2,自引:1,他引:2  
污泥堆肥处理是一种简便高效的污泥稳定化技术,但堆肥过程产生的温室气体也引起了国内外的广泛关注,我国关于污泥堆肥,特别是低温环境下的堆肥温室气体排放特征研究和基础数据还很缺乏.本实验采用城市脱水污泥,考察低温环境条件下不同调理剂混合污泥堆肥过程中温室气体的排放特征.结果表明,低温环境条件下污泥堆肥能够顺利进行,但高温期持续时间相对较短而腐熟期温度降低过快.木屑处理的总氮损失低于秸秆处理,然而温室气体总排放当量却高于秸秆处理,木屑和秸秆处理总的CO2排放当量(以干污泥计)分别为169.45 kg·t~(-1)、133.13 kg·t~(-1).木屑与秸秆CH_4累积排放量(以干污泥计)分别为0.648 kg·t~(-1)、0.689 kg·t~(-1),N_2O累积排放量(以干污泥计)分别为0.486 kg·t~(-1)、0.365 kg·t~(-1).CH_4的排放75%以上集中在堆肥前2周,而N_2O则90%以上出现在后腐熟期.整体而言,冬季堆肥高温期持续时间相对较短而腐熟期温度低,出现CH_4排放量相对较低而N_2O较高的现象,CH_4排放量均低于IPCC推荐值,N_2O则均高于IPCC推荐值.因此针对低温环境堆肥工艺,温室气体的减排应重点关注堆肥后期N_2O排放的降低策略.  相似文献   
952.
一体式膜生物反应器中膜污染影响因素的研究   总被引:2,自引:0,他引:2  
于晓霞  王锦 《环境科学与管理》2007,32(11):117-121,170
膜污染是一体式膜生物反应器(SMBR)工艺中普遍存在的问题,是SMBR稳定运行和膜寿命的关键影响因素.影响膜污染的因素包括以下几个方面:膜的特性(膜材质、膜孔径的大小及表面粗糙度等);膜组件的类型与结构;SMBR的运行条件(膜通量、抽吸泵抽停时间、曝气量与曝气方式、出水方式与水力停留时间等);污泥特性(污泥浓度、微生物的溶解性产物和胞外聚合物以及污泥龄等).改善膜和污泥的特性、优化SMBR的结构及运行操作参数能够减缓膜污染.  相似文献   
953.
腐殖酸溶液对超滤膜污染的原因研究   总被引:2,自引:0,他引:2  
针对腐殖酸溶液对超滤膜污染的原因,对超滤膜在过滤腐殖酸溶液时受到污染的变化进行了探讨,通过测试的数据比较了待测腐殖酸溶液与膜通量的关系,同时对腐殖酸溶液和添加钙离子后,对超滤膜污染的影响状况,同时还对超滤膜在过滤过程中的UV254变化规律进行了探讨。结果表明,不同质量浓度的腐殖酸溶液,它们对膜通量的影响比较显著,在相同的过滤时间内,膜通量分别下降了不同的百分组成。在腐植酸溶液中添加钙离子后,膜通量下降更大。  相似文献   
954.
董秉直  王劲  喻瑶 《环境科学学报》2014,34(5):1157-1165
本文采用有机物的组分分析、相对分子质量分布及三维荧光等分析手段,研究了青草沙水库和滆湖原水的膜过滤通量的表现,探讨了膜污染的机理.试验结果表明,中亲组分有机物造成的微滤膜和超滤膜的通量下降最为严重,而疏水性有机物对通量的影响甚微.滆湖水对微滤膜的通量下降较青草沙水库水严重,而青草沙水库水对超滤膜的通量下降较滆湖水严重.膜污染机理的分析表明,微滤膜污染主要由膜孔堵塞造成,而超滤膜的通量主要受大分子有机物形成的滤饼层的影响.三维荧光分析表明,蛋白质类的有机物是造成膜污染的主要物质.  相似文献   
955.
近年来,水体砷污染已成为一个全球性的环境问题,采取有效方法去除水体中的砷已受广泛关注。文章总结了水中砷主要去除方法:沉淀法、吸附法、生物法和膜分离法的原理、特点和应用现状,分析表明,沉淀法和吸附法已广泛应用于含砷水体的处理,其中开发高效的氧化剂和混凝剂是沉淀法的主要研究方向,寻求新型实用的吸附剂是吸附法的研究热点;生物法除砷是近年来的研究热点,加快微生物除砷的理论和应用研究是该方法的主要研究方向;膜分离法适用于对水质要求很高以及小规模的饮用水处理,研究较好的预氧化处理方法是该工艺的重点。将多种方法联合使用以达到最佳除砷效果,是目前水体除砷的发展趋势。  相似文献   
956.
The lack and pollution of water resource make wastewater reuse necessary. The pilot scale long-term tests for submerged membrane bioreactor were conducted to treat the effluents of anaerobic or aerobic treatment process for the high-strength Chinese traditional medicine wastewater. This article was focused on the feasibility of the wastewater treatment and reuse at shorter hydraulic retention time (HRT) of 5.0, 3.2 and 2.13 h. MLSS growth, membrane flux, vacuum values and chemical cleaning periods were also investigated. The experimental results of treating two-phase anaerobic treatment effluent demonstrated that the CODfilt was less than 100 mg/L when the influent COD was between 500-10000 mg/L at HRT of 5.0 h, which could satisfy the normal discharged standard in China. The experimental results to treat cross flow aerobic reactor effluent demonstrated that the average value of CODfilt was 17.28 mg/L when the average value of influent COD was 192.84 mg/L at HRT of 2.13 h during 106 d, which could completely meet the normal standard for water reuse. The maximum MLSS and MLVSS reached 24000 and 14500 mg/L at HRT of 3.2 h respectively. Membrane flux had maximal resume degrees of 94.7% at vacuum value of 0.02 MPa after cleaning. Chemical cleaning periods of membrane module were 150 d. A simulation model of operational parameters was also established based on the theory of back propagation neural network and linear regression of traditional mathematical model. The simulation model showed that the optimum operational parameters were suggested as follows: HRT was 5.0 h, SRT was 100 d, the range of COD loading rate was between 10.664-20.451 kg/(m3.d), the range of MLSS was between 7543-13694 mg/L.  相似文献   
957.
利用氢基质生物膜反应器去除水中砷酸盐   总被引:1,自引:0,他引:1  
利用氢基质生物膜反应器(Hydrogen-based membrane biofilm reactor,MBfR)研究了NO_3~--N负荷、SO_4~(2-)负荷、As(Ⅴ)负荷、氢分压对水中砷去除效果的影响.结果表明,随着NO_3~--N进水负荷的增加,As(Ⅴ)和SO_4~(2-)还原受到明显抑制,系统产生As(Ⅲ)和NO_2~-的积累;随着SO_4~(2-)进水负荷的增加,反应器内总砷去除率由78.6%(25 mg·L-1SO_4~(2-))降低至1.1%(200 mg·L~(-1)SO_4~(2-)),而此时NO_3~--N的去除基本不受影响.同时,随着进水As(Ⅴ)负荷从0.25 mg·L~(-1)增至2 mg·L~(-1),出水SO_4~(2-)浓度明显升高,反应器内总砷去除率从70.0%降低至47.3%,而此时NO_3~--N的去除基本不受影响;当氢分压低于0.06 MPa时,提高氢分压可降低出水As(Ⅴ)浓度,当氢分压高于0.06 MPa后便不再是控制因素.由于体系中氢自养还原微生物会优先利用NO_3~--N和SO_4~(2-)作为电子受体,因此,为了保证As(Ⅴ)的高效还原去除,必须控制氢分压在0.05~0.07 MPa之间.  相似文献   
958.
Using the surface of poly (sulfone) hollow fiber membrane segments as grafted layer, the hydrophilic acrylamide chain was grafted on by UV-photoinduced grafting polymerization. The gained improvement of surface wettability for the modified membrane was tested by measuring the contact-angle as well as FTIR spectra. Then correlation between the hydrophilic ability of support material and the biofilm adherence ability was demonstrated by comparing the pollutant removal rates from urban wastewater via two identical lab-scale up-flow biological aerated filters, one employed the surface wettability modified poly (sulfone) hollow fiber membrane segment as biofilm carder and the other employed unmodified membrane segment as biofilm carder. The experimental results showed that under the conditions of influent flux 5 L/h, hydraulic retention time 9 h and gas to liquid ratio (G/L) 10: 1, the removal rates of chemical oxygen demand (COD) and ammonium nitrogen (NH4^+-N) for the modified packing filter and the unmodified packing filter was averaged at 83.64% and 96.25%, respectively, with the former filter being 5%-20% more than the latter. The effluent concentration of COD, NH4^+-N and turbidity for the modified packing filter was 25.25 mg/L, 2 mg/L and 8 NTU, respectively. Moreover, the ammonium nitrogen removal performance of the filter packing the modified PSF was compared with the other bioreactor packing of an efficient floating medium. The biomass test indicated that the modified membrane matrixes provided better specific adhesion (3310-5653 mg TSS/L support), which gave a mean of 1000 mg TSS/L more than the unmodified membrane did. In addition, the phenomenon of simultaneous denitrification on the inner surface of the support and nitrification on the outer surface was found in this work.  相似文献   
959.
螺旋对称流厌氧膜生物反应器的运行及优化   总被引:1,自引:0,他引:1  
通过对螺旋对称流厌氧反应器(SSSAB)外置平板膜组件形成了螺旋对称流厌氧膜生物反应器(SSS-AnMBR).研究了SSS-AnMBR的启动阶段和有无沼气曝气时的运行性能,并建立了其设计与操作优化模型.在启动过程中,反应器内挥发性脂肪酸与碱度的比值为0.001~0.016,未发生酸化现象,后期反应器对化学需氧量(COD)的去除率稳定在90.27%~95.35%.有沼气曝气状态下SSS-An MBR的有机负荷和COD去除率分别为2.28 kg·m~(-3)·d~(-1)和98.24%,均高于无沼气曝气状态下的2.13 kg·m~(-3)·d~(-1)和97.58%,表明系统的污染物去除效能较好.有沼气曝气状态下膜组件的平均负荷、平均COD去除率和SSS-An MBR平均总COD去除率的CV值分别为21.98%、14.15%和0.78%,均低于无沼气曝气状态下的25.27%、21.98%和0.89%,表明该状态下系统稳定性较好.最后建立了厌氧反应器体积(V)、进水流量(Q)和进水COD(X)三者之间的数学模型:V/Q=HRT0/C_(inf)×η_(sss)(X-Cinf)+HRT_0,以及膜面积A与Q之间的数学模型:A=Q×C_(sss)×η_m/MLR,可指导同类型的厌氧膜生物反应器的设计和操作优化.  相似文献   
960.
A hollow-fiber membrane bioreactor(HMBR) was studied for its ability to treat nitric oxide(NO) from simulated flue gas. The HMBR was operated for 9 months and showed a maximum elimination capacity of 702 mg NO/(m2·day) with a removal efciency of 86%(gas residence time of 30 sec, inlet NO concentration of 2680 mg/m3, pH 8). Varying operation parameters were tested to determine the stability and response of the HMBR. Both the inlet NO concentration and gas residence time influenced the removal of NO in the HMBR. NO elimination capacity increased with an increase in inlet NO concentration or a shortening of gas residence time. Higher removal efciency of NO was obtained at a longer gas residence time or a lower inlet NO concentration. Microbial communities of the HMBR were sensitive to the variation in pH value and alkalescence corresponding to an optimum pH value of 8. In addition, NO elimination capacity and removal efciency were inversely proportional to the inlet oxygen concentration. Sulfur dioxide had no great influence on elimination capacity and removal efciency of NO. Product analysis was performed to study N2O and N2 production and confirmed that the majority of the microorganisms were denitrifying bacteria in the HMBR. Compared to other bioreactors treating NO, this study showed that the denitrifying HMBR was a good option for the removal of NO.  相似文献   
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