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1.
垃圾渗滤液原位反硝化研究   总被引:2,自引:0,他引:2  
场外硝化-原位反硝化是垃圾填埋场氮管理的新途径.本文利用垃圾柱模拟生物反应器填埋场.研究了硝化渗滤液在填埋场内部的变迁及其对垃圾降解的影响.结果表明,硝化渗滤液回灌促进了填埋场垃圾降解,回灌的总氧化态氮(TON)被完全还原,反硝化为主要作用反应,最大TON负荷为28.6 mg(N)kg(TS)-1d-1.当负荷大于11.4 mg(N)kg(TS)-1d-1时,垃圾产甲烷受到抑制.抑制作用随负荷的增加而加强.在此过程中,反硝化逐渐代替产甲烷作用成为填埋场内垃圾降解的主要反应,产生气体以氮气为主,而非甲烷;硝化渗滤液与垃圾的长期作用也改变了填埋场的菌群结构.图5表1参18  相似文献   

2.
垃圾填埋场渗滤液地下原位脱氮技术综述   总被引:1,自引:0,他引:1  
丁爱中  张慧  李宗良 《生态环境》2007,16(6):1814-1818
氨氮是城市垃圾厌氧填埋过程中产生的常见的污染物。由于氨氮的持久性和生物毒性,生活垃圾填埋场渗滤液中氮的脱除已引起了人们的高度关注。文中结合国内外的研究现状的基础,论述了厌氧渗滤液回灌、强制通风好氧填埋、准好氧填埋和生物反应器填埋四种垃圾渗滤液原位脱氮处理技术的原理、技术特点、工程投资、运行成本以及处理效果等;指出了垃圾填埋场渗滤液原位脱氮技术的未来研究重点:填埋场内脱氮机理和脱氮速率的深入研究、工艺控制优化研究以及生物反应器填埋的实际应用设计研究。  相似文献   

3.
采用上流式厌氧污泥床处理某垃圾填埋场渗滤液.实验结果表明,在厌氧氨氧化活性稳定后,反应器对氨氮、亚硝氮具有较好的处理效果,氨氮和亚硝氮的平均去除率分别达到98.42%和99.01%,相应的平均容积去除负荷分别为93.64 mg·l-1·d-1和127.57 mg·l-1·d-1,COD的平均去除率为23.51%,平均容积去除负荷为84.53 mg·l-1·d-1.通过GC-MS总共检测出48种主要有机污染物,其中14种有机物的去除率为100%,2种有机物的去除率介于90%和100%之间,7种有机物的去除率介于50%和90%之间,此外还有13种有机物去除率低于50%,反应中亚硝氮和氨氮的去除率比值为1.37,反应器中存在厌氧氨氧化和反硝化的协同作用.  相似文献   

4.
序批式膜反应器处理高氨氮渗滤液同步硝化反硝化特性   总被引:1,自引:1,他引:0  
应用序批式生物膜反应器(SBBR)处理实际垃圾渗滤液,在DO浓度分别为0.45mg.l-1和1.19mg.l-1条件下,研究了系统的有机物,氨氮和总氮去除特性以及游离氨(FA),DO对系统同步硝化反硝化(SND)类型的影响.250d试验研究表明:SBRR系统能够稳定高效地同步去除渗滤液内高浓度有机物和高浓度氨氮.在初始COD浓度为122—2385 mg.l-1的情况下,出水COD浓度为23—929 mg.l-1,有机物最大去除速率25.6 kgCOD.m-2载体.d-1.在初始NH4+-N浓度为40—396.5 mg.l-1的情况下,出水NH4+-N浓度为0—41.2 mg.l-1,最大硝化速率2.87 kgN.m-2载体.d-1.SBBR系统内发生了明显的同步硝化反硝化(SND)现象,TN平均去除率分别为73.8%(DO=0.45 mg.l-1)和30%(DO=1.19 mg.l-1)左右.当FA浓度在1.5—11.6 mg.l-1范围内时,系统中共存硝酸型SND和亚硝酸性SND.当FA从18.6 mg.l-1增加到56 mg.l-1,系统中形成稳定的亚硝酸SND.因此,FA是影响系统SND类型的主要因素,DO可促进亚硝酸性SND向硝酸型SND转化.  相似文献   

5.
全(多)氟化合物(per-and polyfluoroalkyl substances,PFASs)是一类广泛存在、日益引起国内外关注的新微持久性污染物.近年来,PFASs已在全球垃圾填埋渗滤液中频繁检出,对生态安全与人体健康造成潜在威胁.本文系统综述了国内外废物填埋系统PFASs的来源,渗滤液赋存PFASs特征、影响因素及其去除方面的研究进展.总体上,垃圾填埋渗滤液赋存PFASs浓度水平跨越6个数量级(ng·L-1—mg·L-1),并呈现以短链PFASs为主的污染特征.降雨、渗滤液回灌、渗滤液理化性质等因素均会影响PFASs赋存特征,但具体影响机制尚未阐明.现有渗滤液处理工艺(生物处理、膜处理等)对PFASs的去除率可高达99.8%,但处理过程中仍存在前体物污染转化与副产物环境归宿不明等问题.本文还对该领域的前沿研究方向进行了展望,以期增进对填埋渗滤液赋存PFASs污染及其控制的科学认识,为填埋系统新污染物控制提供科技支持.  相似文献   

6.
矿化垃圾湿地处理畜禽养殖废水的研究   总被引:2,自引:0,他引:2  
采用序批式进水方式,在m(固)∶V(液)=1∶20及水力负荷1.25 m3.m-2.d-1条件下,研究种植旱伞草(Cyperus alternifolius)、芦苇(Phragmites australis)、美人蕉(Canna indica)和菖蒲(Acorus calamus)4种植物的矿化垃圾填料湿地对畜禽养殖废水的处理效果。持续运行90 d的结果表明,矿化垃圾填料湿地床对CODCr、SS、NH4+-N和TP的平均去除率分别为41.3%~52.5%、55.2%~72.1%4、4.2%~76.7%和40.1%~68.0%。不同植物种类对去除率的影响小,与无植物空白相比约有10百分点的变化,主要被矿化垃圾填料自身特性所掩盖。矿化垃圾填料硝化能力强,导致硝酸盐氮(NO3--N)的累积高达数十mg.L-1,并导致TN去除率偏低,仅为41.6%~45.9%。构建了150 cm高的矿化垃圾填料柱进行反硝化脱氮,在水力负荷0.30 m3.m-2.d-1条件下运行90 d期间内,距柱面120 cm处NO3--N去除率在ρ(NO3--N)约为20和40 mg.L-1的水质条件下均可达97%以上。  相似文献   

7.
基于BaPS技术的高山草甸土硝化和反硝化季节变化   总被引:4,自引:0,他引:4  
高永恒  罗鹏  吴宁  陈槐 《生态环境》2008,17(1):384-387
应用气压分离(BaPS)技术测定了川西北高山草甸土硝化和反硝化季节动态变化.结果表明:植物生长季节内,土壤总硝化、反硝化和N2O释放率的变化趋势一致,即从6月份(硝化率:N 8.40 mg kg-1 d-1;反硝化率:N 0.48 mg kg-1 d-1;N2O释放率:N 84.48 靏 kg-1 d-1)开始增加,7月份(N 19.36 mg kg-1 d-1;N 0.60 mg kg-1 d-1;N 100.13 靏 kg-1 d-1)达到最大值,然后开始下降,到9月份(N 1.81 mg kg-1 d-1;N 0.24 mg kg-1 d-1;N 40.09 靏 kg-1 d-1)降为最小值.氮素物质基础(NO3--N和NH4 -N)不是影响该高山草甸土硝化和反硝化的主要因素,土壤温度和湿度是该高山草甸土硝化、反硝化作用的主要影响因子.  相似文献   

8.
采用同步荧光光谱,结合移动窗口二维相关光谱技术,研究了垃圾渗滤液中溶解性有机物(DOM)在外界干扰下的分子构型变化.结果显示,填埋垃圾渗滤液DOM含有类蛋白、类富里酸和类胡敏酸物质,它们均含有羧基和酚羟基官能团,填埋3—5年垃圾渗滤液DOM酚羟基含量较高,且主要分布在类蛋白组分上,而填埋10年以上渗滤液DOM中羧基含量较高,但主要分布在类富里酸组分上.p H升高引起DOM分子构型改变不受Hg(Ⅱ)存在的影响,填埋3—5年垃圾渗滤液DOM在p H 3和p H 8—10时分别由于羧基和酚羟基解离分子构型发生了剧烈改变,而填埋10年以上垃圾渗滤液DOM仅在p H 3—4时由于羧基解离分子构型发生了变化.在Hg(Ⅱ)对DOM分子构型的影响上,填埋3—5年垃圾渗滤液DOM分子构型在溶液Hg(Ⅱ)浓度升至5μmol·L~(-1)和20—25μmol·L~(-1)时发生了两次剧烈改变,而填埋10年以上垃圾渗滤液DOM在体系Hg(Ⅱ)浓度为10—25μmol·L~(-1)发生了一次缓慢的改变.同步荧光光谱结合移动窗口二维相关光谱技术可以有效识别环境条件改变时DOM分子构型的变化及成因.  相似文献   

9.
优势菌种硝化新工艺处理垃圾渗滤液的研究   总被引:2,自引:0,他引:2  
李平 《生态环境》2005,14(4):545-548
通过摇瓶富集与开放体系扩大培养获得高含量的硝化细菌优势菌液,用于硝化反应器的强化挂膜启动、驯化。采用优势菌种生物硝化新工艺研究了含高质量浓度氨氮垃圾渗滤液的硝化特性,并对工艺条件进行了优化。结果表明,优势菌液中亚硝化细菌与硝化细菌的含量分别达到9.0×107和3.5×107MPN/mL。实际废水动态运行的结果显示,当进水垃圾渗滤液平均氨氮质量浓度为284.4mg/L时,出水平均氨氮质量浓度为14.3mg/L,硝化速率高达NH4+-N28.1g/(m3.h),与传统硝化工艺相比高出近一倍。本工艺处理垃圾渗滤液的优化操作工艺条件为:pH、氨氮质量浓度及DO分别控制在7.5~8.5、300mg/L、1.1~2.6mg/L。  相似文献   

10.
异养硝化微生物菌剂及其好氧颗粒污泥的脱氮试验   总被引:1,自引:0,他引:1  
在3个相同的反应器(No.1、No.2、No.3)中,向活性污泥中投加异养硝化微生物菌剂,以批次试验和SBR试验的方式,研究了异养硝化微牛物菌剂对模拟废水的处理效果.结果表明,该菌剂可以大幅度提高活性污泥对氨氮和COD的去除率.批次运行试验中,反应器No.1运行3 d,氨氮去除率大于98.11%,COD去除率大于99%.该投加菌剂的活性污泥每克干污泥的脱氮能力为15.77 mg d-1.以SBR方式运行16 d的试验中,可能是由于功能菌株的流失导致3个反应器的脱氮效果有逐步降低的趋势.采用该异养硝化脱氮微生物菌剂培育出的异养硝化好氧颗粒污泥对模拟废水进行了脱氮试验.在较低运行温度(11~13℃)下以SBR方式运行10 d,反应器处理效果稳定,氨氮去除率70.75%~76.42%,COD去除率在90%以上.该异养硝化好氧颗粒污泥每克干颗粒的脱氮能力为372.00 mg d-1.以上试验都没有发现硝酸氮和亚硝酸氮的积累.图5表1参19  相似文献   

11.
With the lack of space for new landfills, municipal solid waste (MSW) incineration is playing an increasingly important role in municipal solid waste management in China. The literatures on certain aspects of incineration plants in China are reviewed in this paper, including the development and status of the application of MSW incineration technologies, the treatment of leachate from stored MSW, air pollution control technologies, and the status of the fly-ash control method. Energy policy and its promotion of MSW-to-energy conversion are also elucidated.  相似文献   

12.
A new biological nitrogen removal process, which is named herein “The circulating fluidized bed bioreactor (CFBBR)”, was developed for simultaneous removal of nitrogen and organic matter. This process was composed of an anaerobic bed (Riser), aerobic bed (Downer) and connecting device. Influent and nitrified liquid from the aerobic bed enters the anaerobic bed from the bottom of the anaerobic bed, completing the removal of nitrogen and organic matter. The system performance under the conditions of different inflow loadings and nitrified liquid recirculation rates ranging from 200% to 600% was examined. From a technical and economic point of view, the optimum nitrified liquid recirculation ratewas 400%. With a shortest total retention time of 2.5 h (0.8 h in the anaerobic bed and 1.5 h in the aerobic bed) and a nitrified liquid recirculation rate of 400% based on the influent flow rate, the average removal efficiencies of total nitrogen (TN) and soluble chemical oxygen demand (SCOD) were found to be 88% and 95%, respectively. The average effluent concentrations of TN and SCOD were 3.5 mg/L and 16 mg/L, respectively. The volatile suspended solid (VSS) concentration, nitrification rate and denitrification rate in the system were less than 1.0 g/L, 0.026-0.1 g NH4 +-N/g VSS·d, and 0.016–0.074 g NOx ?-N/g VSS·d, respectively.  相似文献   

13.
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   

14.
The efficiency of microalgae in removing various pollutants in landfill leachate after pretreatment by free stripping or air stripping was tested by a laboratory batch system. The results showed that Chlorella pyrenoidosa and Scenedesmus sp. had similar removal efficiencies with regard to ammoniacal‐nitrogen, oxidized‐nitrogen, orthophosphate and chemical oxygen demand (COD). The COD removal by algal treatment was better in Junk Bay (JB) leachate than in Gin Drinkers’ Bay (GDB) leachate (14–21% and 0.4–7% respectively). No significant difference (P > 0.05) was found in removing other nutrients including ammoniacal‐nitrogen, oxidized‐nitrogen and orthophosphate between leachate from the two landfills, regardless of the pretreatment used. The removal efficiencies of ammoniacal‐nitrogen and phosphorus were found to be higher in air‐stripped leachate than in free‐stripped one. Removal of ammoniacal‐nitrogen and phosphorus in air‐stripped leachate was 30% and 87% respectively. Poor removal of ammoniacal‐nitrogen was probably due to a deficiency in phosphorus (high N : P ratio) for algal growth in leachate. The two‐stage leachate treatment (ammonia stripping followed by algal purification) resulted in overall reduction of COD (38–51%), ammoniacal‐nitrogen (72–96%) and orthophosphate (79–96%).  相似文献   

15.
Quinoline (C9H7N) commonly occurs in wastewaters from the chemical, pharmaceutical, and dyeing industries. As quinoline is biodegraded, nitrogen is released as ammonium. Total-N removal requires that the ammonium-N be nitrified and then denitrified. The objective of this study was to couple quinoline biodegradation with total-N removal. In a proof-of-concept step, activated sludge was sequenced from aerobic to anoxic stages. The ammonium nitrogen released from quinoline biodegradation in the aerobic stage was nitrified to nitrate in parallel. Anoxic biodegradation of the aerobic effluent then brought about nitrogen and COD removals through denitrification. Then, simultaneous quinoline biodegradation and total-N removal were demonstrated in a novel airlift internal loop biofilm reactor (AILBR) having aerobic and anoxic zones. Experimental results showed that the AILBR could achieve complete removal of quinoline, 91% COD removal, and 85% total-N removal when glucose added as a supplemental electron donor once nitrate was formed.  相似文献   

16.
Municipal solid waste management was studied for 1 year in a representative urban area of Lahore city for environmental sustainability. The effects of financial status of the household and the seasonal variations on generation rate and compositions of municipal solid waste (MSW) were determined. MSW generation rate and the economic status of the households were positively correlated (p < 0.05). Seasonal variations observed were significant only for organics (p = 0.001), plastics (p = 0.008) and food waste fractions (p = 0.009) in MSW. Response surface regression model developed and analysed by Minitab-15® showed that the interaction of season and different economic zones of the town on the MSW generation rate was non-significant (p = 0.334). Elemental and heating value analyses of the mixed organic fractions in kitchen waste had carbon 47.93%, hydrogen 6.20%, nitrogen 2.24%, sulphur 0.23%, oxygen 39.01%, and C and N ratio 27.78. Findings concluded that food waste was 56% of total MSW with 71.03% moisture content and a modest heating value of 5566 J/g. Existing temporary storage capacity of MSW is 51% of the total MSW generated considering the weighted MSW generation rate of 0.57 kg/person/day calculated in this study. Composting could be a possible final disposal option due to high moisture and organic content and can be studied in future research. Development of a transfer station, introduction of home composting programmes and awareness towards proper segregation and reduction of waste at the household level is suggested to attain sustainability in the MSW management system.  相似文献   

17.
初步实验证实螯台球菌(Chelatococcus daeguensis)TAD1在高温下具有异养硝化-反硝化的能力,为验证其可应用性,采用曝气生物滤池工艺,研究了TAD1在温度为50℃的异养硝化-反硝化性能.结果表明,TAD1在曝气生物滤池中可同时进行好氧反硝化和异养硝化.当分别以硝氮、氨氮及硝氮和氨氮为氮源时,12 h的氮去除率均达到100%,氮的去除能力分别为12.67 mg.L-.1h-1、3.62 mg.L-.1h-1及16.53 mg.L-.1h-1.虽然在脱氮过程中,亚硝盐在6 h迅速积累到76 mg.L-1(硝氮为氮源)和52.6 mg.L-1(硝氮和氨氮为氮源),但在随后的几个小时内又快速降低至0(检测限之外).因而,TAD1具有应用于高温生物脱氮工艺的能力和优势.  相似文献   

18.
准好氧填埋渗滤液中氮转化机理   总被引:1,自引:0,他引:1  
依据准好氧填埋的原理构建了填埋试验装置,在填埋装置各个层次设计采样装置.定期采集渗滤液进行分析,测定各个层次区域渗滤液中氨氮、硝态氮、亚硝态氮和总氮的质量浓度,分析各形态氮之间的变化规律与相关性,初步探讨氮转化的机理.结果表明,准好氧填埋上层区域中,渗滤液的氨氮与硝态氮质量浓度变化相关性极显著;中层和下层区域由于处于兼氧和厌氧状态,硝化作用较弱,渗滤液中氨氮与硝态氮质量浓度变化相关性不显著.上层渗滤液中氨氮与总氮相关性不显著,中层和下层氨氮与总氮相关性极显著,表明中层和下层区域中,渗滤液的氨氮质量浓度变化是导致总氮含量变化的主要贡献因素.  相似文献   

19.
To quantify the nitrogen losses through runoff and leaching under a tea plantation in hilly soil, a field experiment was conducted from October 2001 to October 2002 at United Planters Association of Southern India (UPASI), Coonoorin Nilgiri district. Runoff water was collected in the collection tub on most rainy days but the leachate was collected in the soil water sampler when the rainfall exceeded 150 mm. Higher nitrogen fertilization levels significantly influenced the NO3-N concentration in both the runoff and leachate and it was likely to cause adverse environmental impact at the delivery end. The NH4-N and NO3-N concentrations in runoff decreased with the days after fertilizer application. NH4-N concentration reduced from 10.27 mg/l on the 9th day to 1.72 mg/l on the 34th day after fertilizer application. NO3-N concentration reduced from 23.5 mg/l on the 9th day to 4.32 mg/l on the 34th day after fertilizer application. Nitrogen loss varied depending on the quantity of rainfall and runoff. The NO3-N concentration in the leachate increased with increase in depth (18.06 mg/l at 22.5 cm depth to 20.98 mg/l at 45 cm depth) whereas NH4-N concentration decreased with increase in depth (6.32 mg/l at 22.5 cm depth to 5.79 mg/l at 45 cm depth.  相似文献   

20.
The purpose of this study is to reduce the seasonal fluctuation and enhance the efficiency of nitrogen removal in vertical flow-horizontal subsurface flow (VF-HSF) constructed wetlands. Two sets of VF-HSF constructed wetlands were built, VF1-HSF1 and VF2-HSF2, and a zeolite section was placed in VF2. The results showed that VF2-HSF2 compared to VF1-HSF1 was not only a more reliable nitrogen removal method, but also enhanced the nitrogen removal efficiency by 50%. The average apparent rate of nitrogen removal in VF2-HSF2 reached to 2.52 gN·m-3·d-1, which doubled the rate in VF1-HSF1. Plant uptake and organic nitrogen sediment accounted for 12% and 6% of the total nitrogen removal in VF1-HSF1, respectively, and 10% and 4% in VF2-HSF2, respectively. Biologic nitrogen removal was the dominant mechanism, which accounted for 79% and 87% of the total nitrogen removal in VF1-HSF1 and VF2-HSF2, respectively. Ammonia adsorbed by zeolite during the cold seasons was desorbed, and then nitrified in warm seasons, which resulted in a bioregeneration efficiency of 91%. Zeolite in VF was capable of transferring ammonia from cold seasons to warm seasons as well as enhancing nitrification, which was accompanied by high potential denitrification in HSF that reinforced the efficiency and relieved seasonal fluctuation of nitrogen removal in VF-HSF.  相似文献   

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