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1.
王洪  李海波  孙铁衍 《生态环境》2008,17(2):484-488
针对当前社会对污染物减排和中水回用的需求,采用一体式膜生物反应器(SMBR)对生活污水进行处理,研究了处理效果和工艺条件.结果表明:SMBR是生活污水处理回用的简单高效的工艺方法,SMBR膜出水COD<20 mg·L-1,BOD5<1 mg·L-1,NH4 -N<1 mg·L-1,出水无悬浮物,可以达到城市杂用水回用标准.同时,SMBR对总氮、总磷具有一定的去除效果,污泥沉降性能良好,污泥指数稳定在78~115,污泥龄可达40-60 d,保证了系统内污泥质量浓度;通过控制合适的气水比25∶1~60∶1、采用间歇出水方式等工艺操作条件可以保持良好的污泥特性并可延缓膜污染,延长膜的使用寿命,提高SMBR对污水处理的效率.  相似文献   

2.
在水资源日趋紧张的今天,污水的深度处理回用工艺成了人们探讨的热点。结合郑州市五龙口污水处理厂的设计与运行,介绍了以改良氧化沟为主体的污水深度处理回用工艺,并对工艺除磷脱氮及污水深度处理的原理、设计参数、运行情况及运行条件的控制进行了介绍。运行结果表明该工艺既具有较高的COD、SS去除效率,又解决了传统氧化沟在脱氮除磷时存在相互影响的矛盾问题,在进水COD为326mg/L、SS为301mg/L、NH_4~+-N为45.1mg/L、TP为4.1mg/L;出水COD为21mg/L、SS为9mg/L、NH_4~+-N为1.4mg/L、TP为0.6mg/L,各项指标均达到了景观用水标准。  相似文献   

3.
针对天然蛭石的吸附能力,开发了天然蛭石组合工艺,用于生活污水处理,并分析其处理效果.通过对生活污水的浊度、CODcr、TN和TP的质量浓度进行测定,结果显示:组合工艺对于初始ρ(CODcr)低于500.0 mg·L-1的污水,处理后其浊度、ρ(CODcr)和ρ(TN)分别下降了86.6%、80.3%和70.7%,出水可达到污水二级排放标准(GB 8978-1996);同时,组合工艺也能有效降低生活污水的ρ(TP),获得了49.0%的下降效果.另外,在曝气强度为10.0 m3·m-3·h-1和投加有效微生物菌群时,均能提高组合工艺的处理效果.  相似文献   

4.
植被是城市生态系统中重要的组成部分,研究植被的生态需水、以及由生态缺水导致的服务功能变化具有重要意义。采用面积定额法,估算出北京市植被的最小生态需水量为37.4亿m3;采用情景分析方法,分析了不同植被类型、人均生活用水增加、人口增加情景下生态缺水量及其导致的生态服务功能变化。污水、中水回用、植被蓄水与雨水收集是缓解生态缺水的有效措施。  相似文献   

5.
高校校园中水回用的研究与规划   总被引:22,自引:0,他引:22  
在分析某高校校园中水回用的必要性的基础上,对校园中水回用方案进行了比较,提出最佳适合高校校园中水回用的方案;同时研究了中水回用系统工艺,并对本中水回用项目的经济效益、社会效益和环境效益进行了详细的分析研究。  相似文献   

6.
利用污水资源生产微藻生物柴油的关键技术及潜力分析   总被引:7,自引:0,他引:7  
胡洪营  李鑫 《生态环境》2010,19(3):739-744
21世纪人类面临着能源与水资源的双重危机与挑战。微藻制备生物柴油和微藻深度脱氮除磷分别是开发新能源和污水深度处理方面的热点研究,但二者的单一系统均存在一定的局限性。基于微藻培养的污水深度处理与生物柴油生产耦合系统可以克服上述单一系统的局限性,在深度处理污水的同时,以污水为资源制备微藻生物柴油。藻种筛选是耦合系统的前提与重点,其筛选原则为在二级出水条件下生长快、氮磷去除效率高和单位藻细胞油脂含量高。合适的藻细胞分离收获及油脂提取技术能够降低能耗;而油渣厌氧发酵可充分回收其中的能量,同时减少油渣对环境造成的不利影响。根据耦合系统的工艺特点,每年全国利用该耦合工艺以生活污水为原料生产微藻生物柴油的潜力约397万t。  相似文献   

7.
采用UASB-接触氧化法处理天津某中药厂废水,处理后出水各项指标达到了国家《污水综合排放标准》(GB8978-1996)二级标准。同时对二级处理后出水采用微絮凝沉淀-砂滤-消毒工艺,出水达到中水绿化使用标准。  相似文献   

8.
城乡结合部入河口是指分散点源的生活污水、雨水等经二级处理后排入河道时的入口.这里的污水特点是水量大,一般要求达标入河,如在这里进行深度处理,可将污水变成杂用水,成为城市用水第二水源.故开发新颖、高效的入河口污水深度处理工艺已成为关注对象.  相似文献   

9.
昆明市某森林公园污水回用工程处理规模1000t/d,于2007建成使用,水源为市政管网截污,使用一段时间后出水各项指标均超过回用水质标准33%~170%,针对出现问题采用MBR工艺进行了改造。改造后系统运行稳定,出水COD≤50mg/L、BOD≤6mg,/L、SS≤10mg/L、NH4-N≤5mg/L、TP≤0.5mg/L、TN≤15mg/L,均优于《城市污水再生利用景观环境用水水质》标准中观赏性景观环境用水水景类水质标准,同时运行费用较原工艺降低18%,为0.847元/m^3,实现了工程改造的预期目标。  相似文献   

10.
城市回用水中多环芳烃致癌风险评价   总被引:1,自引:0,他引:1  
为评价人群暴露于城市回用水中16种多环芳烃(polycyclic aromatic hydrocarbons,PAHs)对于人体健康的潜在风险,采用气相色谱-质谱(GC-MS)联用的分析化学方法对不同季节回用水中16种PAHs进行定量分析;在此基础上采用美国国家科学院和国家研究委员会提出的环境健康风险评价方法,分析不同回用条件下具有中国水体基质特色的城市回用水中PAHs健康风险.结果显示,回用水样中16种PAHs的总浓度为1 422.85 ng·L-1,污水处理厂二级出水水样16种PAHs的总浓度为1 791.77 ng ·L-1,经过处理后回用水中PAHs含量有所降低.风险评价分析结果显示,回用水在城市绿化、农业灌溉和景观娱乐3种不同回用途径下多环芳烃的致癌风险分别为788×10-8、2.77×10-6、3.04×10-6,总致癌风险为5.89×10-6.以上结果可以得出,回用水在城市绿化、农田灌溉和景观娱乐接触过程中多环芳烃所增加的致癌风险很低,回用水中多环芳烃的健康风险处于可接受水平.  相似文献   

11.
污水再生利用是解决水资源短缺问题的重要措施,其中再生水回用于景观水体是主要途径之一.而防止水华爆发则是再生水景观利用的首要任务,控制再生水中的氮磷是防止水华爆发的根本措施.目前已有的景观水体水质标准中,氮磷浓度限值要求不统一,缺乏科学依据.因此再生水处理过程中氮磷控制标准执行易出现矛盾,不利于保障再生水景观利用的水质安全.再生水景观利用的氮磷控制标准,应在藻类最大生长潜力研究的基础上,通过藻类生长的Logistic模型和Monod模型、景观水体氮磷浓度模型按拟合,并结合水体自净能力和水质保障措施等综合因素加以确定.以栅藻(Scenedesmus sp)为例,通过Logistic模型和Monod模型拟合景观水体水华控制氮磷浓度限值的确定方法.  相似文献   

12.
城市污水回用健康风险评价   总被引:5,自引:0,他引:5  
随污水回用量增加,其对人体健康可能产生的危害日益受到重视。利用风险评价技术对回用水的健康风险进行评估成为保证安全回用的关键。主要论述了污水回用健康风险评价的基本概念和方法。  相似文献   

13.
• Fate of microplastics in integrated membrane system for water reuse was investigated. • Integrated membrane system has high removal efficiency (>98%) for microplastics. • Microplastics (>93%) were mainly removed through membrane bioreactor treatment. • Small scale fiber plastics (<200 μm) could break through reverse osmosis (RO) system. • The flux of microplastics maintained at 2.7 × 1011 MPs/d after the RO treatment. Rare information on the fate of microplastics in the integrated membrane system (IMS) system in full-scale wastewater treatment plant was available. The fate of microplastics in IMS in a coastal reclaimed water plant was investigated. The removal rate of microplastics in the IMS system reached 93.2% after membrane bioreactor (MBR) treatment while that further increased to 98.0% after the reverse osmosis (RO) membrane process. The flux of microplastics in MBR effluent was reduced from 1.5 × 1013 MPs/d to 10.2 × 1011 MPs/d while that of the RO treatment decreased to 2.7 × 1011 MPs/d. Small scale fiber plastics (<200 μm) could break through RO system according to the size distribution analysis. The application of the IMS system in the reclaimed water plant could prevent most of the microplastics from being discharged in the coastal water. These findings suggested that the IMS system was more efficient than conventional activated sludge system (CAS) for the removal of microplastics, while the discharge of small scale fiber plastics through the IMS system should also not be neglected because small scale fiber plastics (<200 μm) could break through IMS system equipped with the RO system.  相似文献   

14.
• UV/chlorine can effectively remove VBNC pathogens, ARGs and MGEs in reclaimed water. • Microbial community was changed with reduced diversity during UV/chlorine process. • CRBs-carried MGEswere the predominant groups during UV/chlorine process. • No direct co-selection strategy was shared between UV/chlorine and resistome. Urban wastewater contains a wide range of pathogens and antibiotic resistance genes (ARGs), which are a serious concern if reusing treated wastewater. However, few studies have explored the microbial communities in reclaimed water using ultraviolet (UV)/chlorine treatment and assessed the changes of the resistome. This study investigated the occurrence of typical pathogens, ARGs, and bacterial communities in UV/chlorine-treated reclaimed water samples. The numbers of culturable and viable but non-culturable pathogens were effectively reduced to 0 CFU/mL within 1–10 and 10–30 min after UV/chlorine treatment, respectively. Meanwhile, the physicochemical indices of water quality were not affected. UV/chlorine treatment could significantly change the bacterial community structure of reclaimed water, showing a decrease in bacterial abundance and diversity. Chlorine-resistant Acinetobacter and Mycobacterium were the dominant bacterial genera (>50%) after UV/chlorine treatment. Moreover, the number of ARGs and mobile genetic elements (MGEs) decreased with an increase in UV/chlorine exposure. However, eight ARGs and three MGEs were consistently detected in more than three seasons, making these major concerns because of their potential role in the persistence and dissemination of antibiotic resistance. Overall, the results of this study suggest that UV/chlorine treatment can potentially improve the microbiological safety of reclaimed water. And more attention should be paid to the pathogens that are both chlorine-resistant and carry MGEs because of their potential for resistance transmission.  相似文献   

15.
我国污水处理的发展趋势   总被引:14,自引:2,他引:12  
目前我国污水处理的总体发展趋势;一是普及城市污水处理,二是提高工业废水排放达标率,三是推广污水回用。论文重点介绍了城市污水的强化一级处理、数学模型用于精确控制的技术,清洁生产在提高工业废水排放达标方面的作用,以及再生水作为环境用水的回用方式。  相似文献   

16.
Wastewater agricultural reuse has two main aspects. It is capable of preventing the discharge of wastewater treatment plant effluents in receiving waters and it is also a way to increase water resources. The controlled agricultural reuse has not been developed until now, either in Languedoc or in Catalonia, but is expected a quick development due to several circumstances: the growing awareness of water resources scarcity, the concern for sanitary hazards in bathing places, the WHO guidelines and the development of tertiary cost‐effective treatment methods. In the coastal areas, the growing demand on water resources is putting heavy pressure on some big water users, as golf courses and landscape irrigations, potential users of reclaimed wastewater.  相似文献   

17.
● Blackwater is the main source of organics and nutrients in domestic wastewater. ● Various treatment methods can be applied for resource recovery from blackwater. ● Blackwater treatment systems of high integration and efficiency are the future trend. ● More research is needed for the practical use of blackwater treatment systems. Blackwater (BW), consisting of feces, urine, flushing water and toilet paper, makes up an important portion of domestic wastewater. The improper disposal of BW may lead to environmental pollution and disease transmission, threatening the sustainable development of the world. Rich in nutrients and organic matter, BW could be treated for resource recovery and reuse through various approaches. Aimed at providing guidance for the future development of BW treatment and resource recovery, this paper presented a literature review of BWs produced in different countries and types of toilets, including their physiochemical characteristics, and current treatment and resource recovery strategies. The degradation and utilization of carbon (C), nitrogen (N) and phosphorus (P) within BW are underlined. The performance of different systems was classified and summarized. Among all the treating systems, biological and ecological systems have been long and widely applied for BW treatment, showing their universality and operability in nutrients and energy recovery, but they are either slow or ineffective in removal of some refractory pollutants. Novel processes, especially advanced oxidation processes (AOPs), are becoming increasingly extensively studied in BW treatment because of their high efficiency, especially for the removal of micropollutants and pathogens. This review could serve as an instructive guidance for the design and optimization of BW treatment technologies, aiming to help in the fulfilment of sustainable human excreta management.  相似文献   

18.
介绍了某含油废水回用工程的设计、运行和管理,该回用工程设计处理量为400 m3/d。采用了水解酸化预处理+生物接触氧化+生物活性炭的处理工艺,处理后的出水用于港区煤炭储存场的除尘系统。运行结果表明,本工程的处理出水水质明显优于生活杂用水水质标准的要求,出水可用于冲洗地面、洒水抑尘等用途。  相似文献   

19.
The awareness of the problem of the scarcity of water of high quality has strongly changed the approach of wastewater treatment. Currently, there is an increasing need for the beneficial reuse of treated wastewater and to recover valuable products and energy from the wastewater. Because microbiological treatment methods are, only to a limited part, able to satisfy these needs, the role and significance of physical/chemical processes in wastewater treatment are gaining more and more interest. The specific future role and aim of the various physical/chemical treatment processes can be categorized in five groups: improvement of the performance of microbiological treatment processes, achievement of the high quality required for reuse of the effluent, recovery of valuable components and energy from the wastewater for beneficial reuse, desalination of brackish water and seawater, and treatment of concentrated liquid or solid waste residues produced in a wastewater treatment process. Development of more environmentally sustainable wastewater treatment chains in which physical/chemical processes play a crucial role, also requires application of process control and modeling strategies. This is briefly introduced by the elaboration of treatment scenarios for three specific wastewaters.  相似文献   

20.
介绍了膜技术应用在电镀漂洗废水处理与回用中的运行效果及成本分析的实例。将连续膜过滤技术(CMF)用于反渗透的预处理,采用微滤膜在线连续反冲洗技术,成功解决了传统中空纤维膜易堵塞,不能连续工作的难题,保证了系统连续稳定运行。采用一级二段式RO(反渗透)系统,产水率65%,制备纯水180 m3/d,既提高了产水率也可满足生产用水要求。将抑菌剂、阻垢剂、在线监测和控制系统等关键技术,系统性、集成性引入连续微滤和反渗透装置,为其应用于废水脱盐深度处理提供支撑和保障。  相似文献   

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