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1.
饮用水除砷技术研究进展   总被引:7,自引:5,他引:2  
饮用水中的砷对人体健康危害很大。介绍了从饮用水中去除砷的各种方法,总结了目前除砷技术存在的不足,指出混凝微滤工艺具有除砷效率高、能耗低、操作简单等优点,应成为今后饮用水除砷技术的发展方向。  相似文献   

2.
李继香 《环境工程学报》2014,8(7):2901-2905
实验对比考察了常规混凝和加载磁混凝工艺对微污染河水中COD、浊度和TP等污染物的去除效果,系统研究了混凝剂用量、磁种加载量、搅拌条件和药剂投加顺序等因素对加载磁混凝效果的影响。实验结果表明,加载磁种后沉淀颗粒的体积平均粒径为从常规混凝工艺的50.1 μm显著增加到68.6 μm;污染物去除效果明显优于常规混凝工艺,尤其对浊度和总磷的去除效果得到了显著的提升;在实验最优条件下COD、浊度和TP的去除率分别达到54.17%、99.28%和75.82%;并且加载磁种后可减少50%以上的混凝剂投加量,同时大大缩短沉淀时间。  相似文献   

3.
为适应天津新地(DB 12/599-2015)对出水总磷的排放需求,对天津某污水处理厂二沉池出水进行磁加载混凝工艺深度除磷实验。探讨了3种磁粉在粒径、表面电荷和磁感应强度等方面对混凝的影响;对比了磁加载混凝和常规混凝在沉降时间、絮体生长动力学的差异;分析了磁加载混凝和常规混凝对于不同形态磷的去除效果。结果表明,在磁加载混凝技术深度除磷中,磁粉的粒径、电性和磁性的协同作用是提高混凝效果的主要因素,粒径范围适中,表面带正电荷,磁感应强度越大越有利于污染物的去除。磁加载混凝技术可减少混凝剂用量、缩短沉降时间、提升去除效果,磁粉在混凝过程中起电性中和、表面吸附、絮凝成核、快速沉降的作用。  相似文献   

4.
强化活性炭吸附技术深度处理焦化废水的可行性研究   总被引:3,自引:0,他引:3  
采用混凝沉淀、活性炭吸附以及混凝沉淀 活性炭吸附工艺对焦化厂生化出水进行深度处理.单独混凝沉淀或活性炭吸附均可以将水样中COD降到100 mg/L以下,达到国家污水一级排放标准和冷却用水建议标准.活性炭根据不同的材质和进水而表现出不同的吸附性能,对于焦化厂生化出水,煤质炭Ⅰ和果壳炭均表现出良好的吸附效果,并使出水COD<100 mg/L,但处理成本较高.混凝沉淀 活性炭吸附工艺充分发挥适合去除大分子污染物的混凝沉淀与适宜去除小分子污染物的活性炭吸附技术两者的协同增效作用,吸附单元采用廉价的煤质炭,使出水水质达到个别生产或生活用水回用标准,并且降低深度处理成本.研究结果表明,混凝沉淀 活性炭吸附作为焦化厂生化出水回用工艺是经济可行的.  相似文献   

5.
研究了混凝、活性炭吸附及其组合工艺对内蒙古某制药废水二级生化出水中有机物的去除效率,同时采用荧光光谱和凝胶色谱分析了不同技术对废水中有机物的影响。研究显示,污水中主要的有机物为微生物代谢产物、腐殖酸和富里酸,分子量在800~1 250。混凝与吸附对污水中的有机物表现出不同的去除特征,混凝无法有效去除溶解性有机物,而活性炭吸附对3种物质的去除率均达到90%以上。采用混凝和吸附组合处理后,总COD去除率达到76%,满足污水综合排放标准。  相似文献   

6.
以某环氧树脂生产厂产生的高盐有机废水为对象,对比研究了Fenton、Fenton-混凝、混凝-Fenton等工艺去除废水中有机污染物的效能。考察了Fenton反应中Fe2+、H2O2投加比、初始pH、反应时间以及混凝反应中混凝剂种类、投加量等参数对处理效果的影响。结果表明:Fenton工艺的最佳条件为亚铁和过氧化氢投加比1:20,投加量分别为25 mmol·L-1和500 mmol·L-1,初始pH 3,反应时间120 min,TOC去除率为62.50%;混凝工艺选择FeSO4混凝剂,投加量为300 mg·L-1,TOC去除率为23.78%;废水经过Fenton-无混凝剂混凝、Fenton-混凝剂混凝、混凝-一级Fenton氧化和混凝-二级Fenton氧化工艺处理,TOC去除率分别为68.32%、71.51%、80.69%和89.27%。  相似文献   

7.
为降低液相中有机污染负荷,采用烧杯实验和气相色谱-质谱联用技术研究和分析了混凝-吸附法联用预处理页岩气压裂返排液的可行性。结果表明:精制硅藻土(硅藻土J)投加有利于污染物的去除,联用顺序和吸附反应时间可以影响处理效果;先投加硅藻土J 8 mg·L−1,反应30 min后再投加PAC 2 000 mg·L−1,COD和浊度去除率分别达到57%和87%;混凝-吸附联用能去除水中22种有机污染物,大部分烷烃类、醇类、邻苯二甲酸二丁酯和卤代烃得到很好的去除。PAC和硅藻土J联用比传统混凝/吸附可以更高效地降低溶液有机负荷物,可以作为一种页岩气压裂返排液预处理的方法。  相似文献   

8.
以向地表水中投加的隐孢子虫微球和贾第鞭毛虫微球为对象,研究通过对给水混凝工艺对其的去除效果进行比较,着重考察了不同混凝剂种类、投加量及水样pH值对去除效果的影响.结果表明,混凝工艺可较为有效地去除地表水中的两虫微球,去除率最高可达4 lg.相比常规的金属盐类混凝剂,高分子的PAC、PAFC混凝剂对两虫微球的混凝去除率更...  相似文献   

9.
采用气质联用分析,并结合自动识别与定量系统(AIQS-DB)考察2种再生水厂采用的深度处理工艺对微量有机污染物的去除效果。结果表明,以污水为原水的膜生物反应器(MBR)+臭氧氧化+生物活性炭滤池(BAC)工艺用于再生水生产,MBR工艺对有机污染物的去除起主要作用;城市污水厂二级出水为原水的混凝沉降+浸没式超滤(SMF)/连续微滤(CMF)+部分反渗透(RO)+臭氧氧化工艺用于再生水生产,其SMF和CMF工艺段的膜截留作用均可有效消减有机污染物含量,SMF的效果优于CMF;2种工艺中采用的臭氧技术都能进一步加强部分物质的去除效果。气质联用结合AIQS-DB可用于再生水中污染物的筛查和不同污水再生工艺对微污染物消减效果的评价。  相似文献   

10.
渗滤液循环回灌出水在混凝处理中的去除特性   总被引:4,自引:0,他引:4  
经循环回灌后的渗滤液出水含有大量的腐殖质,其生物降解性差、氨氮含量高,具有类似长填龄填埋层渗滤液的水质特征。用混凝法处理渗滤液循环回灌出水,通过混凝pH、混凝剂种类及其投加量实验,确定了最佳混凝条件;并通过分析混凝处理前后渗滤液循环回灌出水的分子量变化和从出水中分离出的腐殖酸(HA)、富里酸(FA)和Hydrophilic(HyI)三种组分的变化,讨论了混凝法对渗滤液循环回灌出水去除效率不高的原因。研究表明,聚合硫酸铁(PFS)在pH=5、投药量为0.22g/L(以Fe2O3计)的条件下的混凝效果最佳,其对渗滤液循环回灌出水的COD去除率达58.1%。混凝剂对渗滤液循环回灌出水中的HA、FA和HyI组分的去除效果依次为:HA>FA>HyI。  相似文献   

11.
Removal of NOM from drinking water: Fenton's and photo-Fenton's processes   总被引:4,自引:0,他引:4  
Murray CA  Parsons SA 《Chemosphere》2004,54(7):1017-1023
The control of disinfection by-products during water treatment is primarily undertaken by reducing the levels of precursor species prior to chlorination. As many waters contain natural organic matter at levels of up to 15 mgl(-1) there is a need for a range of control methods to support conventional coagulation. Two such processes are the Fenton and photo-Fenton's processes and in this paper they are assessed for their potential to remove NOM from organic rich waters. The performance of both processes is shown to be depentent on pH, Fe: H2O2 ratio as well as Fe2+ dose. Under optimum conditions both processes achieved greater than 90% removal of DOC and UV254 absorbance. This removal lead to the trihalomethane formation potential of the water being reduced from 140 to below 10 microgl(-1), well below UK and US standards.  相似文献   

12.
混凝絮凝法去除腐质酸的研究   总被引:6,自引:0,他引:6  
进行了混凝絮凝法去除水中腐殖酸的研究,结果表明,同传统的絮凝剂相比,微生物絮凝剂不仅用量少,去除效果好(去除率可达60%),而且不产生二次污染,可应用于废水特别是给水中腐殖酸的去除工艺中,对絮凝剂的絮凝机理进行了初步研究,研究表明,微生物絮凝剂去除腐殖酸主要是通过架桥完成的,不同于A12(SO4)3的电中和机理。  相似文献   

13.
In the pioneer days, the main driving forces for research of organics in drinking water treatment (DWT) were human health risks and optimisation of technology. The focus was on natural organic matter (NOM) structure, disinfection by-products (DBPs) formation, NOM removal by means of coagulation, adsorption, and oxidation, and development of the most efficient water treatment trains. Surprisingly, after decades of research, rapid development of analytical techniques and progress in risk assessment, the same driving forces are still in the limelight — although the topics have changed slightly. The attention switched from trihalomethanes to a new generation of DBPs. The definition of hydrophilic/hydrophobic NOM depends on the technique used for characterisation. It has become evident that numerous organic compounds can threaten water supply sources. Some of them had been ignored or overlooked in the past, but have recently been detected by advanced analytical tools even in drinking water. Prioritisation becomes priority per se. As far as processes are concerned, mainstream research has been following three lines: fouling mechanisms, application of hybrid processes and interactions between synthetic organic chemicals, other water constituents and materials used in DWT. Significant development has been made in membrane technology. This paper presents a broad overview of the recent organics research. Although the state-of-the-art technologies seem to have an answer to each and every question raised, it is still necessary to deal with specific problems on a case-by-case basis mainly due to the unique nature of NOM and different xenobiotics that may appear in various types of waters. In the end, human health risk, which derives from the presence/absence of organics, is only the tip of the iceberg — underneath lies a whole new universe — the socio-economic aspect of water treatment and quality that deserves much more attention.  相似文献   

14.
我国水体的富营养化日益严重,水源地出现季节性藻类爆发现象,严重威胁饮用水安全。以厦门市莲坂水厂各工艺段出水为研究对象,采用大气压强电离放电产生羟基自由基(·OH),分别对水源水、混凝沉淀出水、砂滤出水进行处理,处理时间为4.5 s。当注入总氧化剂浓度为1.8 mg· L-1时,高藻浓度从25.3×104 cells · mL-1降到800 cells · mL-1;对混凝沉淀出水注入总氧化剂0.6 mg· L-1、砂滤出水注入0.2 mg· L-1时,藻细胞都未检出;·OH处理后CODMn、TOC及UV254均有明显降低,砂滤出水三卤甲烷小于8 μg·L-1;检测的各项指标均达到国家《生活饮用水卫生标准》(GB 5479-2006)。因此,·OH可快速有效安全地杀灭高藻,为我国高藻水源地饮用水卫生安全保障提供技术支撑。  相似文献   

15.
为探究饮用水厂滤池反冲洗水和排泥水的直接回用和处理后回用对水厂的影响及两类水处理过程中的差异,采用了污染负荷计算、实验室混凝小试和现场混凝-超滤中试装置对两类生产废水分别进行了研究。溶解性有机碳(dissolved organic carbon,DOC)、氨氮 (NH4+-N)、Al3+和全氟类化合物(perfluorinated compounds,PFASs)的污染负荷计算结果表明生产废水直接回用会为水厂带来一定的额外负荷,其中排泥水和反冲洗水分别对PFASs和Al3+负荷贡献较大;通过对小试中浊度,UV254以及5种荧光组分去除效果的对比,反冲洗水的混凝效果稍好于排泥水,同时10 mg·L−1的聚合氯化铝为最佳混凝剂方案;在中试过程中,两类水中的浊度、有机物、Al3+和PFASs均可被有效去除,出水差异较小,但反冲洗水中的亲水性和小分子有机物使得其去除效果低于排泥水。总体来说,经过处理之后,两类生产废水均可回用,回用可有效减少废水排放量,提高水厂水资源利用率。  相似文献   

16.
《Chemosphere》2013,91(4):558-562
This paper presents a study on the chemical safety of the secondary effluent for reuse purposes and the requirement of advanced treatment. Water quality analysis was conducted regarding conventional chemical items, hazardous metals, trace organics and endocrine disrupting chemicals (EDCs). Generally speaking, the turbidity, COD, BOD, TN and TP of the secondary effluent can meet the Chinese standards for urban miscellaneous water reuse but higher colour is a problem. Further removal of BOD and TP may still be required if the water is reused for landscape and environmental purposes especially relating to recreation. In addition, Hazardous metals, trace organics and endocrine disrupting chemicals (EDCs) are not the main problems for water reuse. At the same time, several tertiary treatment processes were evaluated. The coagulation–filtration process is effective process for further improvement of the conventional water quality items and removal of hazardous metals but less effective in dealing with dissolved organic matter. The ultrafiltration (UF) can achieve almost complete removal of turbid matter while its ability to remove dissolved substances is limited. The ozone–biofiltration is the most effective for colour and organic removal but it can hardly remove the residual hazardous metals. Therefore, the selection of suitable process for different water quality is important for water use.  相似文献   

17.
Chemical solutions for greywater recycling   总被引:1,自引:0,他引:1  
Greywater recycling is now accepted as a sustainable solution to the general increase of the fresh water demand, water shortages and for environment protection. However, the majority of the suggested treatments are biological and such technologies can be affected, especially at small scale, by the variability in strength and flow of the greywater and potential shock loading. This investigation presents the study of alternative processes, coagulation and magnetic ion exchange resin, for the treatment of greywater for reuse. The potential of these processes as well as the influence of parameters such as coagulant or resin dose, pH or contact time were investigated for the treatment of two greywaters of low and high organic strengths. The results obtained revealed that magnetic ion exchange resin and coagulation were suitable treatment solutions for low strength greywater sources. However, they were unable to achieve the required level of treatment for the reuse of medium to high strength greywaters. Consequently, these processes could only be considered as an option for greywater recycling in specific conditions that is to say in case of low organic strength greywater or less stringent standards for reuse.  相似文献   

18.
人工湿地废水生态处理系统的作用机制   总被引:12,自引:0,他引:12  
人工湿地废水生态处理新技术的高效去污能力基于独特而复杂的作用机制 ,其中最重要的是湿地基质、大型植物和微生物的高度协同作用。基质在为植物和微生物提供生长介质的同时 ,也能够通过沉淀、过滤和吸附等作用直接去除污染物。大型湿地植物既是微生物的“固定化载体” ,氧气的生产和运输“机器” ,同时还能够稳固湿地床表面 ,起到冬季保温和支撑冰面的作用。微生物是消除污染物的作用者 ,它能够在去除氮、磷等营养物的同时把有机质作为丰富的能源转化为营养物质和能量  相似文献   

19.
Chien CC  Kao CM  Chen CW  Dong CD  Wu CY 《Chemosphere》2008,71(9):1786-1793
The Cheng-Ching Lake Water Treatment Plant (CCLWTP) is the main supplier of domestic water for the Greater Kaohsiung area, the second largest metropolis in Taiwan. Biological activated carbon (BAC) filtration is one of the major treatment processes in CCLWTP. The objectives of this study were to evaluate the effectiveness of BAC filtration on water treatment in the studied advanced water treatment plant and its capability on pollutants [e.g., AOC (assimilable organic carbon), bromide, bromate, iron] removal. In this study, water samples from each treatment process of CCLWTP were collected and analyzed periodically to assess the variations in concentrations of AOC and other water quality indicators after each treatment unit. Moreover, the efficiency of biofiltration process using granular activated carbon (GAC) and anthracite as the fillers was also evaluated through a column experiment. Results show that the removal efficiencies for AOC, bromide, bromate, and iron are 86% 100%, 17%, and 30% after the BAC filter bed, respectively. This indicates that BAC filtration plays an important role in pollutant removal. Results also show that AOC concentrations in raw water and effluent of the CCLWTP are approximately 143 and 16 microg acetate-Cl(-1), respectively. This reveals that the treatment processes applied in CCLWTP is able to remove AOC effectively. Results of column study show that the AOC removal efficiencies in the GAC and anthracite columns are 60% and 17%, respectively. Microbial colonization on GAC and anthracite were detected via the observation of scanning electron microscopic images. The observed microorganisms included bacteria (rods, cocci, and filamentous bacteria), fungi, and protozoa. Results from this study provide us insight into the mechanisms of AOC removal by advanced water treatment processes. These findings would be helpful in designing a modified water treatment system for AOC removal and water quality improvement.  相似文献   

20.
通过对比北京市西大望路和郊区城中村B村3类屋面雨水径流和8类路面雨水径流样品检测结果,分析北京市区和城中村屋面与路面雨水径流的污染特征。针对不同污染特征,分别采用改性沸石过滤法和混凝沉淀法处理城中村屋面和路面雨水径流。开展改性沸石过滤法固定床吸附实验发现:雨水流速越小、滤柱越高和沸石粒径越小,对氨氮吸附效果越好。开展混凝沉淀法批次实验发现:当初始pH为6~7、PAC投加量为80~100 mg·L−1时,混凝沉淀效果最佳,且初始pH和混凝剂投加量对混凝沉淀效果影响程度大。设计改性沸石过滤法处理城中村屋面雨水径流工艺与装置,通过实际运行验证处理效果,设计蓄水池-混凝反应罐处理城中村路面雨水径流。混凝反应罐在内的雨水处理单元与城中村污水处理厂 (站) 联合运行,经过处理后的雨水可用于河道补给,可用于郊区B村处理实际雨水径流。本研究结果可为城市城中村的路面径流污染处理提供参考。  相似文献   

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