混凝吸附—固定化光合细菌处理垃圾渗滤液的研究
详细信息    本馆镜像全文|  推荐本文 |  |   获取CNKI官网全文
摘要
垃圾填埋场渗滤液(渗沥液)有机污染物成份复杂,COD_(cr)和BOD_5含量高,NH_3-N高达5000mg/L以上,重金属含量是普通污水的3~10倍。本文用混凝吸附的方法对北京市六里屯垃圾填埋场渗滤液作了预处理。在预处理过程中首先对渗滤液进行混凝,采用浓度为200mg/L的FeCl_3作为混凝剂,并与硫酸铝混凝剂的混凝效果作了对比,同时用CaO作为肋沉剂。实验表明FeCl_3的混凝效果优于硫酸铝。然后再用10%的活性炭作为吸附剂,经预处理过的渗滤液的出水COD_(cr)的去除率为30%,NH_3-N的去除率为21.0%,BOD_5的去除率为28.6%。
     对光合细菌混合培养物进行了固定化,研究了聚已烯醇(PVA)、海藻酸钠作为固定化细胞包埋剂的不同性能比较。结果表明,9%PVA能有效地固定光合细菌细胞,并能使固定化细胞保持较高的生理活性,同时确定了最适的固定化条件与参数。
     最后采用固定化光合细菌-SBR法对垃圾渗滤液进行了后续生物处理,并筛选出了最佳工艺组合。在水力停留时间为72小时,COD_(cr)进水浓度为8308mg/L,BOD_5进水浓度为2504mg/L,NH_3-N的进水浓度为1446mg/L时,硫化物的进水浓度为8.0mg/L时,采用固定化光合细菌混合培养物-SBR法工艺处理后,垃圾滲滤液的COD_(cr)的去除率为82.6%,NH_3-N的去除率为98.6%,BOD_5的去除率为79.7%,硫化物的去除率为97.5%。
City refuse landfill site percolate contains a complex organic pollutant component. It is high in CODcr & BOD5 and NH3-N is exceed 5000mg/L in most cases, so dose the heavy metal content, which is often 3-10times more than common sewage. Percolate sampled in liulitun city refuse landfill site of Beijing is pretreated by using coagulation, and. absorption In that process, we use 200mg/L FeCl3 as coagulant, whose effect is better than ALt(SO4)3 by comparison. CaO is also used as sedimentation aid reagent and 1.0% active carbon as sorbent The effect shows that CODcr removal rate of pretreated percolate is 30%, NH3-N removal rate is 21. 0% and BOD 5removal rate is 28. 6%.
    Mixed culture then is immobilized and different performance by using Polyvinyl alcohol(PVA) and Sodium aljinate as embedding medium is also studied. The result shows that 9%PVA can immobilize the Photosynthetic bacteria effectively, keeping relatively high physiological activity. Next, the optimum immobilization condition and parameters are determined.
    Finally the percolate is treated organically by using immobilized PSB-SBR method; we also choose the best operation and condition combination. The result shows that when water settle time is 72hours, CODcr input concentration is 8308mg/L, BOD5 input concentration is 2504mg/L, NH3-Ninput concentration is 1446mg/mL, sulfide input concentration is 8.0mg/mL, percolate CODcr removal rate is 82.6%, NH3-Nremoval rate is 98.6%, BOD5 removal rate is 79. 7% and removal sulfide rate is 97. 5% by using SBR.
引文
[1]陈海滨,陶华.我国城市垃圾处理的现状研究.武汉城市建设学院,1997.9(14):23-25
    [2]刘丹,扬立中.德国垃圾卫生填埋技术的现状与发展.成都理工学院这报,1997.8(24:32-36)
    [3]陈世和,张所明.城市垃圾堆肥原理与工艺.上海复旦大学出版社.1990
    [4]曲颂华,陈绍伟.城市垃圾与污水厂污泥的混合堆肥研究.环境保护,1998.10:15-16
    [5]C.B.杜金科夫,B.A.扎伊采夫.у.Л.佩克列斯等.垃圾的处理和利用.北京:中国环境科学出版社.1987
    [6]世界卫生组织欧洲地区办公室.危险物的管理.中国环境科学出版社.1994
    [7]杨钦慧.日本固体生活垃圾的焚烧和发电.环境导报.1997(1):41-42
    [8]王廷奎.封杀二英.中国环境报,1999,16(1)
    [9]联邦德国环境保护局.生活垃圾特性分析研究指南.中国环境科学出版社.1998
    [10]方创琳.中国垃圾资源的基本特征.环境导报.1997.9(1):44
    [11]张望年,王国生.城市垃圾卫生填埋场浸出液的处理.重庆环境科学.1995,(4):44
    [12]卢成洪,徐迪民.回灌法处理城市垃圾填埋场渗滤液.上海环境科学,1 (4):44-47
    [13]唐家福,李国建.城市垃圾填埋场渗滤液处理工艺比较.环境卫生工程.1992,28(3):105-109
    [14]郑曼英等。垃圾浸出液对填埋场周围水环境污染的研究。重庆环境科学,1998,(3):17-20
    [15]陈玉成,李章平.城市生活垃圾渗滤水的污染及全过程控制.环境科学动态.1995,(4):15-17
    [16]汪慧贞等.固体垃圾填埋场的渗滤液处理.给水排水.1998,5:36-38
    [17]Robinson. H. O., Luo, M. N. H.. Characterizatio hand Treatment of Leachates from Hong Kong Landfill Sites. J. IWEM, Jun., 1991. 326-335
    [18]邹连华.城市生活垃圾填埋场渗滤液水质影响因素分析及水质预测.给水排水,1997,23(7):57-60
    [19]Christensen. T. H., et al., Landfilling of Waste:Leachate[J]Elsevier Applied Science,, 1992
    [20]顾夏声.废水处理数学模式.清华大学出版社.1993
    [21]金永麒.阿苏卫垃圾填埋场渗滤液处理中活性污泥的驯化与调试.环境科学与技术,2001,(2):35-36
    [22]John DKeenan, teal.. Landfill Leachate Treatment. Journal WpCP. 56(1):27-33
    
    
    [23]沈耀良等.厌氧折流板反应器处理垃圾渗滤液混合废水.中国给水排水.1999,15(5):10-13
    [24]黄群贤等.厌氧-好氧生物法处理垃圾渗滤液的研究.河北工业科技.1999,16(4):1-3
    [25]A. Am okrane, C. Comel, J. Veron. Landfilll eachates pretreatmentbycoagulationflocculation. Wat. Res. 1997, 31(11):2775-2782
    [26]沈耀良,王宝贞.垃圾渗滤液的混凝-吸附预处理研究.中国给水排水,1999(11):10-15
    [27]Morawe, Bernd et al. Activated carbon, column performance studies biologically treated landfill leachate. Chemical and Engineering Processing, 1995. (34):3,299-3,30
    [28]Ying. W.C, Bond. RR, Sojka. Sh. Treatment of a landfill Leachate in Powdered Activated Carbon Enhanced Sequencing Batch Bioreactors, Environmental Progress ENVPDI, 1987. (6):1,1-8
    [29]Pirbazaxi, M. Stevens, MR. Ravindran, V. Activated Carbon Adsorption of PCBs from Hazardous Landfill Leachate. Division of Environmental Chemistry, American Chemical Society, Washington, DC. 1988.369-370
    [30]Sekboelet, Metal. Photocatalytic detoxification with the thin-film fixed-bedreactor(TFFBR):Clean-up of highly polluted landfill effluents using a novel TiO2-Photocatalyst. Solar Energy, 1996. (56):5,455-5,469
    [31]Kim,Soo-Myung, Vogelpohl, Qlfons, Degradation of organic pollutants by the photo-Fenton-process. Chemical Engineering&Technology1998. (21):2,187-191
    [32]M. Yamazaki. Combined γ-ray irradiation-activated sludge treatmeat of humic acid solutionfrom landfill leachate.Wat. Res. 1983. (17):12,1811-1814
    [33]Bea,Byung-Uk etal. Treatment of landfill leachate usingactivated sludge process and electron-beam radiation. Eat. Res. 1999. 933):11,2669-2673
    [34]沈耀良等.吹脱法去除渗滤液中氨的动力学机理[L].污华防治技术.1999.12(2):67-70
    [35]Williams, C. E. et al. Waste Age[M], 1998. 205-210
    [36]陈秀为,张克强,牛成玉.光合细菌在模拟试验中净化水质作用的研究.环境保护1995,14(3):135-136
    [37]刘如林.光合细菌在有机废水处理中的应用.环境科学1991,12(2):63-67
    [38]小林正泰.发酵工业36(9):753
    [39]徐向阳,孙琦.光合细菌在有机废水处理中的应用现状与前景.环境污染与防治1990,12(5):32-37
    [40]Kodayasi M. Utilization and disposal of water by photosynthetic bacteria. Peramanpress. 1997, 39-45
    [41]Sawada H. Photosynthetic bacteria in Waste treatment, J Ferment Technol. 1997,55:311-316
    
    
    [42]王玮.光合细菌处理柠檬酸生产废水.污染防治技术1998,11(4):224-225
    [43]管希夷,王济生.利用光合细菌处理柠檬酸废水 1995,(7),28
    [44]星野八洲雄.发酵工业36(7),552
    [45]北村博.发酵工业36(8),659
    [46]王宇新,刘春朝等.光合细菌处理淀粉废水的中试研究.环境科学1995,16(3):39-40
    [47]王宇新,刘学选.光合细菌法综合处理丙酮丁醇发酵废水水处理技术 1995,2(15):291-294
    [48]席淑琪,陈敏.光合细菌处理高浓度制革废水的研究.南京理工大学报1997,21(5):432-436
    [49]朱核光,史家梁.光合细菌法处理酒糟废水的试验研究.上海环境科学1995,4(1):8-10
    [50]顾祖宜等.应用光合细菌处理有机废水的研究.中国环境科学1985.3(2):18-25
    [51]樊凌雯,张肇铬。PSB处理大豆深加工废水的研究.山西大学学报1999,22(3):283-286
    [52]郑爱榕,蔡阿根等.光合细菌和螺旋澡对啤酒废水的净化与利用研究.环科学学报1999,19(1):22-27
    [53]韩梅,陈锡时等.PSB净化水体作用的初步研究.沈阳大学学报1999,30(6)533-535
    [54]赵庆良,李湘中.垃圾渗滤液中的氨氮对微生物活性的抑制作用]环境污与防治1998,20(6):1-4
    [55]周茂洪等.几种重金属离子对光合细菌生长的抑制效应.生态学杂志.2002 21(4):6-11
    [56]污染源统一监测分析方法[M].技术标准出版社.
    [57]水质分析大全[M].科学技术文献出版社重庆分社.
    [58]张肇铬等.光合绿硫细菌的研究.山西大学学报(自然科学版).1984(1).
    [59]张肇铬等.一株可以利用硫化物的紫色硫细菌的分离鉴定研究.山西大学学报(自然科学版),1994(1).
    [60]Ormerod. J.G.,K.S. ormerod, andH. Gest. 1961, Arch. Biochem.Biophys. 94:449-463.
    [61]牛志卿,刘建荣,吴国庆.微生物学通报[J].1994,21(4)
    [62]VanNiel, C. B.: JnR. C. pietro, ced, Methodin. Enzymology23A:3-28Academipress, 1971

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700