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1.
垃圾填埋场渗滤液回流处理技术研究进展   总被引:3,自引:0,他引:3  
垃圾渗滤液回流处理后,CODcr去除率最高达95%,在半好氧状态下NH3-N质量浓度降低至10mg/L几以下,渗滤液水质得到改善;渗滤液回流增加了湿度,使有机物的降解速率加快;渗滤液同流处产甲烷速率是不回流处产甲烷速率的2倍多:渗滤液回流处的总沉降幅度可达填埋场深度的20%,而不回流处仅为8%。回流处理技术分为直接回流至垃圾层、表面喷灌或浇灌至填埋场表面、地表下回流或内层回流技术。在填埋场处于产酸阶段早期,回流的渗滤液量宜少不宜多:在产气阶段则可逐渐增加。应将稳定化程度高的垃圾层区(产甲烷区)排出的渗滤液回流至新填人的垃圾层(产酸区),将新垃圾层所产生的渗滤液回流至老的稳定化区。通过控制垃圾的组成、回流的时间、渗滤液的pH值等手段可改善回流处理效果。  相似文献   

2.
固体废弃物渗滤液组分动态变化预测   总被引:2,自引:0,他引:2  
渗滤液(Leachate)是城市固体废物填埋场(MSWLF)污染环境的主要来源之一,因此掌握其水质变化规律是研究填埋场对环境污染的首要问题。渗滤液的主要来源是大气降水,使用垃圾淋滤的方法模拟大气降水,利用实验结果建立模拟模型,揭示了渗滤液组分随降水的变化规律。可以预测垃圾填埋后渗滤液污染组分的浓度变化。为研究填埋场渗滤液组分变化及确定其处理对策提供了理论依据。  相似文献   

3.
活性污泥在渗滤液循环处理中的作用   总被引:2,自引:0,他引:2  
渗滤液是垃圾填埋场产生的一种含有高浓度污染物的废水,它对环境造成的污染已经引起了人们的关注。渗滤液的处理方法很多,其中渗滤液循环法以其投资小、运行费用低、能加速填埋场稳定化进程等特点而倍受关注。利用活性污泥引入微生物,是在渗滤液循环基础上提出的一种新的设想,通过实验研究结果显示:加入干污泥循环可使渗滤液的COD由最高值2275mg/L降为67lmg/L.加入湿污泥循环可使渗滤液COD由最高值2075mg/L降为82lmg/L;而单纯进行渗滤液循环只使渗滤液的COD由最高值23llmg/L下降到l386mg/L。  相似文献   

4.
This study may be the first investigation to be performed into the potential benefits of recycling industrial waste in controlling contaminants in leachate. Batch reactors were used to evaluate the efficacy of waste steel scrap and converter slag to treat mixed contaminants using mimic leachate solution. The waste steel scrap was prepared through pre-treatment by an acid-washed step, which retained both zero-valent iron site and iron oxide site. Extensive trichloroethene (TCE) removal (95%) occurred by acid-washed steel scrap within 48 h. In addition, dehalogenation (Cl production) was observed to be above 7.5% of the added TCE on a molar basis for 48 h. The waste steel scrap also removed tetrachloroethylene (PCE) through the dehalogenation process although to a lesser extent than TCE. Heavy metals (Cr, Mn, Cu, Zn, As, Cd, and Pb) were extensively removed by both acid-washed steel scrap and converter slag through the adsorption process. Among salt ions (NH4+, NO3, and PO43−), PO43− was removed by both waste steel scrap (100% within 8 h) and converter slag (100% within 20 min), whereas NO3- and NH4+ were removed by waste steel scrap (100% within 7 days) and converter slag (up to 50% within 4 days) respectively. This work suggests that permeable reactive barriers (PRBs) with waste steel scrap and converter slag might be an effective approach to intercepting mixed contaminants in leachate from landfill.  相似文献   

5.
Dumpsite leachate contains different hazardous substances, some of which threaten the environment. In this study, municipal solid waste, dumpsite leachate and topsoil from seven different dumpsites in Lagos and Ibadan, Nigeria were analysed using standard methods. The parameters analysed in the composite leachate samples collected are pH, solids, alkalinity, chloride, nitrate, sulfate, phosphate, biochemical oxygen demand, chemical oxygen demand turbidity, heavy metals (e.g. Zn, Pb, Co, Ni, Cd) and some persistent organic pollutants (e.g. polyaromatic hydrocarbons [PAHs] and polychlorinated biphenyls [PCBs]). Total organic carbon, heavy metals (e.g. Zn, Pb, Co, Ni, Cd) and organic pollutants (e.g. PAHs, PCBs) were analysed in the dumpsite topsoil and the control samples. The samples for heavy metal determination were digested using concentrated nitric acid and the digestate was analysed using atomic absorption spectrometry, whereas organic pollutants were extracted using cold extraction and quantified by gas chromatography-mass spectrometry (GC-MS). The study revealed that dumpsites in Ibadan have ~90% domestic and 10% industrial waste, whereas the figures for Lagos are 80% and 20%, respectively. In the leachate samples, concentrations of PAHs and PCBs ranged from 0.85 to 1.47 mg/L and 0.01 to 0.08 mg/L, respectively; the values were 0.94–2.79 mg/kg and 10.0–412 μg/kg in the topsoil. If not properly managed, dumpsite leachate can seep into groundwater and surface water via run-off, and can have adverse effects on human health and the entire ecosystem.  相似文献   

6.
生物反应器填埋场稳定技术   总被引:7,自引:0,他引:7  
通过模拟实验研究了污泥接种、回灌前对渗滤液进行加热、不同的渗滤液回灌频率对生物反应器填埋场稳定进程的影响。研究表明,污泥接种、回灌前对渗滤液进行加热、较高的环境温度均有利于生物反应器填埋场快速稳定,垃圾填埋前期较低的渗滤液回灌频率有助于生物反应器填埋场快速进入产甲烷阶段,后期较高的渗滤液回灌频率则有利于填埋垃圾较快稳定。  相似文献   

7.
垃圾填埋场是重要的甲烷释放源,其有效管理是减缓温室效应的重要环节.通过硝化渗滤液回灌模拟垃圾填埋柱,研究硝化渗滤液在新鲜垃圾和老龄垃圾填埋柱中的脱氮及对垃圾稳定化和产甲烷的影响.结果表明,回灌的硝化渗滤液在不同填埋龄垃圾柱中,均可实现总氧化态氮(Total oxidation nitroge,TON)完全还原.当回灌TON负荷分别达到14.19 g t-1(TS)d-1和10.45 g t-1(TS)d-1时,新、老垃圾柱中甲烷产生开始受到抑制.实验后期,回灌TON负荷增至38.78 g t-1(TS)d-1和30.62 g t-1(TS)d-1时,新、老垃圾填埋柱产甲烷相对抑制率分别达54.10%和95.77%.同时,回灌反硝化对新、老垃圾柱中垃圾降解贡献率(Rd)分别达85%和93%,能有效促进垃圾稳定.  相似文献   

8.
受垃圾渗滤液影响,垃圾场周边土壤有机物含量增加。试验结果显示,随着土壤有机物含量的增加,土壤中有效态铁锰含量增大。垃圾场周边土壤中渗滤液有机物和金属铁锰共存时,大量的有机物质能活化土壤中的铁锰,增加其有效性,增强其在土壤中的迁移能力。从而造成垃圾场地下水较严重的铁锰污染。  相似文献   

9.
垃圾渗滤液组合工艺处理技术   总被引:2,自引:0,他引:2  
针对垃圾渗滤液氨氮浓度高、COD浓度高、难降解物质含量高的特点,研究了MAP脱氮-生物处理-混凝组合工艺,考察了不同单元的作用及影响处理效果的因素。试验结果表明,高浓度的垃圾渗滤液经该优化组合工艺处理,污染物的去除率为COD97.5%、BOD599.2%、NH4-N87.2%、E26075.3%。除NH4-N外,其余指标均达到了生活垃圾填埋污染控制标准中规定的二级排放标准值。  相似文献   

10.
Variation and evolution process of leachate can be applied as a reference for landfill stabilization phase. In this work, leachates with different ages were collected from Laogang Refuse Landfill, and characterized with 14 key parameters. Simultaneously, principal component analysis (PCA) was applied to develop a synthetic parameter-F based on these 14 parameters, and a logarithm equation was simulated for the landfill stabilization process finally. It was predicted that leachates would meet Class I and Class II in standard for pollution control on the landfill site of municipal solid waste (GB 16889-1997) after 32 years and 22 years disposal under the natural attenuation in the humid and warm southern areas of China, respectively. The predication of landfill state would be more accurate and useful according to the synthetic parameter F of leachate from a working landfill.  相似文献   

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