共查询到20条相似文献,搜索用时 78 毫秒
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依托实际处理工程,针对酱油废水处理难点,开展膜生物反应器处理酱油废水的中试研究,分析了水力停留时间,溶解氧,pH和MLSS对出水水质的影响。在确定膜生物反应器适宜运行条件的基础上,对比了MBR和实际运行的二级SBR+气浮工艺的处理效率。研究表明,在水力停留时间为10h,ρ(DO)为2 5mg L,pH为7 8,ρ(MLSS)为8~9g L的条件下,膜生物反应器具有较好的处理效果,出水稳定达到一级排放标准,避免了在SBR中存在的CODCr和色度不能同步去除的问题。膜生物反应器中生物相研究表明,菌胶团、丝状菌、原生动物等构成膜生物反应器更为复杂的生态系统,使膜生物器的抗冲击性负荷的能力更强,在高、低负荷时都有稳定的处理效果。 相似文献
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采用调节+混凝+水解酸化+uAsB+膜生物反应器联合工艺处理高浓度酿造废水。结果表明CODcr、BOD5和总磷(TP)最终去除率为99.9%,SS、总氮(TN)和色度处理效率分别为88.4%、7013%和62.6%。表明该处理酿造废水的联合工艺系统净化效率高,尤其对有机物去I涂效果明显,抗冲击负荷能力强,运行稳定,处理后完全能够达到《污水综合排放标准》(GB8978—1996)规定的一级标准。 相似文献
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弯管分离法处理含油废水曹一兵(四川省江津增压器厂,重庆632284)前言船舶增压器试车是在高温条件下进行,为使试车能正常进行,必须加水冷却。在试车过程中试车装置不可避免存在跑、冒、滴、漏现象,固而试车后的废水中含有油类物质,造成对水源和环境的污染,必... 相似文献
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The oily wastewater generated from pretreatment unit of electrocoating industry contains oils, phosphate, organic solvents, and surfactants. In order to improve the removal efficiencies of phosphate and oils, to mitigate the membrane fouling, coagulation for ceramic membrane microfiltration of oily wastewater was performed. The results of filtration tests show that the membrane fouling decreased and the permeate flux and quality increased with coagulation as pretreatment. At the coagulant Ca (OH)2 dosage of 900 mg/L, the removal efficiency of phosphate was increased from 46.4% without coagulation to 99.6%; the removal of COD and oils were 97.0% and 99.8%, respectively. And the permeate flux was about 70% greater than that when Ca(OH)2 was not used. The permeate obtained from coagulation and microfiltration can be reused as make-up water, and the recommended operation conditions for pilot and industrial application are transmembrane pressure of 0.10 MPa and cross-flow velocity of 5 m/s. The comparison results show that 0.2 μm ZrO2 microfilter with coagulation could be used to perform the filtration rather than conventional ultrafilter, with very substantial gain in flux and removal efficiency of phosphate. 相似文献
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含油废水中因含有较高浓度的油脂类物质和聚合物而对环境造成危害,威胁人类健康,同时,为解决采用传统膜分离工艺运行成本较高的难题,开展了基于好氧颗粒污泥技术的含油废水处理研究.结果表明,以含油废水启动反应器,经35 d好氧颗粒污泥培养成熟,COD和溶解性油的去除率高达86.0%和94.2%;在絮状污泥颗粒化过程中,污泥胞外聚合物中蛋白质类物质含量提高3.7倍,蛋白质类物质与多糖类物质比值升高到2.72,证明胞外聚合物内蛋白质类物质浓度增加是活性污泥颗粒化的重要因素;好氧颗粒污泥荧光光谱结果显示好氧颗粒污泥中蛋白质类物质的稳定存在是好氧颗粒污泥形成的重要因素.选取好氧颗粒污泥技术处理含油废水的效果和成本均优于常规生物处理工艺和膜分离工艺,由于污泥及其胞外聚合物中多糖类和蛋白质类物质含量均较高,适用于回收污泥资源,对含油污泥的资源化利用意义重大. 相似文献
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为探究高效经济的电镀废水处理工艺,本研究采用悬浮载体复合MBR工艺(HMBR)与普通MBR工艺平行运行,以重金属离子Cu2+、Ni2+、Cr(VI)为代表,重点研究了不同浓度重金属冲击下对两种工艺处理电镀综合废水效能及微生物活性的影响,以及载体的介入对膜污染的控制作用和对微生物种群多样性的影响.实验结果表明:在Cu2+、Ni2+、Cr(VI)浓度5~30mg/L冲击下,HMBR工艺对COD和NH4+-N去除效率分别在60%和40%以上,而普通MBR工艺对COD、NH4+-N的去除率分别为30%和15%以上.随着重金属Cu2+、Ni2+、Cr(VI)浓度的升高,MBR反应器内活性污泥的污泥浓度及SOUR逐步下降,HMBR工艺SOUR受抑制率48.9%远小于普通MBR工艺的73.9%.HMBR系统中EPS分泌显著低于普通MBR工艺,有效减缓膜污染的速率.此外,投加载体增加了反应系统中微生物种群多样性. 相似文献
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农村生活污水由于进水水质水量波动较大,较难选择合适的处理工艺,另外,部分缺水地区由于农村居民习惯生活污水被多次反复利用,导致农村生活污水中有机污染物浓度较城市生活污水偏高。膜生物反应器(MBR)由于具有占地面积小、生化处理效率高和出水水质好等优点,在污水处理领域有着广泛的应用。从MBR技术在国内农村生活污水和国外分散生活污水的应用现状、膜污染控制及能耗优化3个方面进行了综述。针对膜污染控制问题,建议从加强电场辅助控制膜污染,采用无机纳米材料对膜进行亲水改性和对污染机理深入探索等几个方面开展研究;针对节能降耗问题,建议从控制曝气入手,优化整体能耗,降低运行成本,从而促进MBR技术在农村地区的推广应用。 相似文献
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为了探究两种润湿性相反的特殊润湿性滤料的耦合作用,将超疏水超亲油石英砂滤料和超亲水水下超疏油石英砂滤料均匀混合,研究了混合滤料的润湿性以及过滤除油性能.结果表明,两种滤料混合组成的固体表面润湿性不满足每种滤料润湿性的加权平均关系,更符合二次曲线关系,决定系数高达0.9992;交替润湿性对过滤除油效率具有耦合增强作用.混合滤料的疏水亲油性越强,其除油效率、归一化附着效率和渗透系数都越大,反之亦然.滤料粒径越小,归一化附着效率的变化斜率越大,而滤速和床深对归一化附着效率的变化斜率影响不明显.滤料的疏水性具有增阻的效应,流速的增加有助于增大滤层的渗透系数.以上研究成果可为特殊润湿性混合滤料过滤处理含油废水提供研究思路和参考. 相似文献
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采用海水为驱动液,研究了正渗透处理生活污水过程中的通量变化和膜污染行为.结果表明,采用分离层朝向原料液(AL-FS)的膜过滤方向可以降低膜污染程度,并获得稳定的通量.长时间(144h)的运行下膜两侧均出现不同程度的污染.膜污染分析显示支撑层的污染程度较低.但海水中的硅酸盐可能在其表面形成沉积物.相比之下,分离层形成了厚的污染层,主要是由污水中的物质如有机物、微生物、胶体类、盐类等沉积在膜表面造成,是通量降低的主要原因.正渗透膜对营养物质具有高的截留率,运行结束后海水的总有机碳、氨氮和总磷含量为2.49,2.40,0.05mg/L.说明正渗透采用海水为驱动液处理生活污水具有一定的应用前景. 相似文献
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In this study,direct contact membrane distillation(DCMD)was used for treating fermentation wastewater with high organic concentrations.DCMD performance characteristics including permeate flux,permeate water quality as well as membrane fouling were investigated systematically.Experimental results showed that,after 12 hr DCMD,the feed wastewater was concentrated by about a factor of 3.7 on a volumetric basis,with the permeate flux decreasing from the initial 8.7 L/m~2/hr to the final 4.3 L/m~2/hr due to membrane fouling;the protein concentration in the feed wastewater was increased by about 3.5 times and achieved a value of 6178 mg/L,which is suitable for reutilization.Although COD and TOC in permeate water increased continuously due to the transfer of volatile components from wastewater,organic rejection of over 95%was achieved in wastewater.GC–MS results suggested that the fermentation wastewater contained 128kinds of organics,in which 14 organics dominated.After 12 hr DCMD,not only volatile organics including trimethyl pyrazine,2-acetyl pyrrole,phenethyl alcohol and phenylacetic acid,but also non-volatile dibutyl phthalate was detected in permeate water due to membrane wetting.FT-IR and SEM–EDS results indicated that the deposits formed on the membrane inner surface mainly consisted of Ca,Mg,and amine,carboxylic acid and aromatic groups.The fouled membrane could be recovered,as most of the deposits could be removed using a HCl/Na OH chemical cleaning method. 相似文献