CIESC Journal ›› 2015, Vol. 66 ›› Issue (7): 2361-2369.DOI: 10.11949/j.issn.0438-1157.20150003
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CHEN Ranran1, ZHU Xin2,3, LIN Yusuo2,3, YU Ran1, LONG Tao2,3
Received:
2015-01-04
Revised:
2015-03-08
Online:
2015-07-05
Published:
2015-07-05
Supported by:
supported by the National High Technology Research and Development Program of China(SS2013AA062608)and the National Environmental Protection Soil Environmental Management and Pollution Control Key Laboratory Open Fund of China (2014).
陈然然1, 祝欣2,3, 林玉锁2,3, 余冉1, 龙涛2,3
通讯作者:
余冉, 龙涛
基金资助:
国家高技术研究发展计划项目(SS2013AA062608);国家环境保护土壤环境管理与污染控制重点实验室开放基金(2014)。
CLC Number:
CHEN Ranran, ZHU Xin, LIN Yusuo, YU Ran, LONG Tao. Preliminary inquiry of monitored natural attenuation remediation of chlorinated organic compounds contaminated sites[J]. CIESC Journal, 2015, 66(7): 2361-2369.
陈然然, 祝欣, 林玉锁, 余冉, 龙涛. 氯代有机物污染场地的监控自然衰减修复初探[J]. 化工学报, 2015, 66(7): 2361-2369.
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URL: https://hgxb.cip.com.cn/EN/10.11949/j.issn.0438-1157.20150003
[1] | Yang Fenglin (杨凤林), Quan Xie (全燮), Xue Daming (薛大明), Zhao Yazhi (赵雅芝), Feng Wenguo (冯文国), Cang Yu (苍郁). Advance of disposal of chlorinated organic compounds in water [J]. Advances in Environmental Science (环境科学进展), 1996, 4(6): 37-45. |
[2] | Zheng Liping (郑丽萍), Long Tao (龙涛), Lin Yusuo (林玉锁), Yu Cigang (于赐刚), Liu Yan (刘燕), Zhu Xin (祝欣). Biolog-ECO analysis of microbial community functional diversity in organochlorine contaminated soil [J]. Chinese Journal of Applied & Environmental Biology (应用与环境生物学报), 2013, 19(5): 759-765. |
[3] | Yin Yimin (尹仪民). Key periods in the development of China pesticide industry—for China 60 anniversary [J]. Chemical Industry (化学工业), 2009, 27(7): 13-22. |
[4] | National Research Council. Alternatives for Ground Water Cleanup[M]. Washington D C:Academy Press, 1994: 336-350. |
[5] | Langwaldt J H, Puhakka J A. On-site biological remediation of contaminated groundwater: a review [J]. Environmental Pollution, 2000, 107: 187-197. |
[6] | Brenner Richard C, Magar Victor S, Ickes Jennifer A, Foote Eric A, Abbott James E, Bingler Linda S, Crecelius Eric A. Long-term recovery of PCB-contaminated surface sediments at the Sangamo-westonl Twelvemile Creek/lake Hartwell Superfund Site [J]. Environmental Science & Technology, 2004, 38(8): 2328-2337. |
[7] | Guo Lin (郭琳). Natural attenuation mechanism and capability of chlorinated hydrocarbons in shallow groundwater in a study area in Shanghai [J]. Environmental Technology (环境科技), 2013, 26(3): 9-13. |
[8] | Kong Xiangbin (孔祥斌). Transport and biodegradation of 1,2-dichloroethane in laboratory aquifer columns [D]. Baoding: Agricultural University of Hebei, 2013. |
[9] | Zhang Cuiyun (张翠云), Zhang Sheng (张胜), Yin Miying (殷密英), Ma Linna (马琳娜), He Ze (何泽), Ning Zhuo (宁卓). Research advances on natural attenuation of groundwater contamination [J]. South to North Water Transfers and Water Science & Technology (南水北调与水利科技), 2010, 8(6): 50-52,62. |
[10] | Ministy of Environmental Protection of the People's Republic of China (中华人民共和国环境保护部). Contaminated site remediation technologies directory (first batch) [R]. |
[11] | Ye Weimin (叶为民), Sun Fenghui (孙风慧). Bioremediation technology used to treat oil contaminated soil [J]. Shanghai Geology(上海地质), 2002, 1(4): 22-24, 57. |
[12] | Xie Yunfeng (谢云峰), Cao Yunzhe (曹云者), Liu Xiaojuan (柳晓娟), Kong Xiangbin (孔祥斌), Li Fasheng (李发生). Assessment methods of volatile organic contaminants natural attenuation in contaminated aquifers [J]. Journal of Environmental Engineering Technology (环境工程技术学报), 2013, 3(2): 104-112. |
[13] | Kao C M, Chen C S, Tsa F Y, Yang K H, Chien C C, Liang S H, Yang C A, Chen S C. Application of real-time PCR, DGGE fingerprinting, and culture-based method to evaluate the effectiveness of intrinsic bioremediation on the control of petroleum-hydrocarbon plume [J]. Journal of Hazardous Materials, 2010, 178(1/2/3): 409-416. |
[14] | Lipski A, Friedrich, Altendorf K. Application of rRNA-targeted oligonucleotide probes in biotechnology [J]. Applied Microbiology & Biotechnology, 2001, 56: 40-57. |
[15] | Madsen E L. Epistemology of environmental microbiology [J]. Environmental Science & Technology,1998, 32: 429-439. |
[16] | Wilson K, Sewell G, Kean J A, Vangelas K. Enhanced attenuation: Its place in the remediation of chlorinated solvents [J]. Remediation Journal, 2007, 17(2): 39-49. |
[17] | Yin Yong (尹勇), Dai Zhonghua (戴中华), Jiang Peng (蒋鹏), Zhang Hua (张华), Xu Shihao (许石豪). Research on the feasibility assessment programs of monitored natural attenuation in contaminated aquifers of volatile organic contaminants contaminated sites [J]. Jiangxi Chemical Industry (江西化工), 2013, (3): 28-31. |
[18] | USEPA. Superfund remedy report [R]. 13th Ed. EPA 542-R-07-012. Washington D C: US Environmental Protection Agency, 2010. |
[19] | Declercq I, Cappuyns V, Duclos Y. Monitored natural attenuation (MNA) of contaminated soils: state of the art in Europe—a critical evaluation [J]. Science of the Total Environment, 2012, 426: 393-405. |
[20] | Zhao Yongsheng (赵勇胜), Wang Bing (王冰), Qu Zhihui (屈智慧), Zheng Wei (郑苇), Jia Xu (贾旭), Sun Meng (孙猛). Natural attenuation of diesel pollution in sand layer of vadose zone [J]. Journal of Jilin University: Earth Science Edition (吉林大学学报:地球科学版), 2010, 37(2): 389-393. |
[21] | Chen Yudao (陈余道), Zhu Xueyu (朱学愚), Liu Jianli (刘建立). Fate and governance proposal of benzene in groundwater in Dawu water sources of Zibo city [J]. Chinese Science Bulletin (科学通报), 1998, 43(1): 81-85. |
[22] | Li Yuhua (李宇华), Zhang Xu (张旭), Li Guanghe (李广贺), Jin Wenbiao (金文标). Distribution of denitrifying bacteria and the degradation capability in a benzene-contaminated groundwater system [J]. Techniques and Equipment for Environmental Pollution Control (环境污染治理技术与设备), 2005, 6(6): 12-15. |
[23] | Jia Hui (贾慧), Wu Xiaofeng (武晓峰), Hu Liming (胡黎明), Liu Peibin (刘培斌). Confirmatory research on the natural attenuation capacity of oil pollutants based on in-situ experiment [J]. Environmental Pollution & Control (环境污染与防治), 2012, 34(1): 42-47. |
[24] | Bekins B A, Cozzarelli I M, Godsy E M, Warren E, Essaid H I, Tuccillo M E. Progression of natural attenuation processes at a crude oil spill site(Ⅱ): Controls on spatial distribution of microbial populations [J]. Journal of Contaminant Hydrology, 2002, 53: 387-406. |
[25] | Heath J S. Introduction: guidance on natural attenuation in soils and groundwater [J]. Journal of Soil Contamination, 1999, 8: 3-7. |
[26] | National Research Council. Committee on Intrinsic Remediation. Natural Attenuation for Groundwater Remediation [M]. Washington D C: National Academies Press, 2000. |
[27] | Wiedemeierth. Technical protocol for implementing intrinsic remediation with long-term monitoring for natural attenuation of fuel contamination dissolved in groundwater [R]. Denver: Colorado Parsons Engineering Science Inc, 1995. |
[28] | Mulligan C N, Yong R N. Natural attenuation of contaminated soils [J]. Environment International, 2004, 30(4): 587-601. |
[29] | Sun Wenjie (孙文杰), Liu Yongdi (刘勇弟). Research progress of biodegradation of chlorinated aromatic compounds [J]. Henan Chemical Industry (河南化工), 2003, (7): 1-3. |
[30] | He Jiangtao (何江涛), Shi Jinghua (史敬华), Cui Weihua (崔卫华), Liu Fei (刘菲), Chen Honghan (陈鸿汉). Determining criterions for natural biodegradation of chlorinated hydrocarbons in shallow groundwater [J]. Earth Science (地球科学), 2004, 29(3): 357-362. |
[31] | Spain J C, Zylstra G J, Blake C K, Gibson D T. Monohydroxylation of phenol and 2,5-dichlorophenol by toluene dioxygenase in pseuomonas-putida F1 [J].Applied and Environmental Microbiology, 1989, 55(10): 2648-2652. |
[32] | Zhang Jing (张晶), Wang Zhanyong (王战勇), Su Tingting (苏婷婷). Discussion on biodegradation mechanism of chlorinated aromatics [J]. Environmental Protection Science (环境保护科学), 2005, 31(2): 64-66. |
[33] | Broholm K, Christensen T H, Jensen B K. Different abilities of 8 mixed cultures of methane-oxidizing bacteria to degrade TCE [J]. Water Research, 1993, 27(2): 215-224. |
[34] | Middeldorp P J M, de Wolf J, Zehnder A J B, Schraa G. Enrichment and properties of a 1,2,4-trichlorobenzene-dechlorinating methanogenic microbial consortium [J]. Applied and Environmental Microbiology, 1997, 63: 1225-1229. |
[35] | Guerin W F, Boyd S A. Maintenance and induction of naphthalene degradation activity in Pseudomonas putida and an Alcaligenes sp. under different culture conditions [J]. Applied and Environmental Microbiology, 1995, 61: 4061-4068. |
[36] | Liu Yun (刘云), Jiang Zhong'an (蒋仲安), Wang Can (王灿). Progress on biodegradation technology of chlorinated organics [J]. Environmental Science & Technology (环境科学与技术), 2008, 31(2): 51-55. |
[37] | Shen Dongsheng (沈东升), Xu Xiangyang (徐向阳), Feng Xiaoshan (冯孝善). Role of microbial co-metabolism in biodegradation of chlorinated organic compounds [J]. Environmental Science (环境科学), 1994, 15(4): 84-87,96. |
[38] | USEPA. Technical protocol for evaluating natural attenuation of chlorinated solvents in ground water [R]. EPA/600/R-98/128. Washington D C: US EPA, 1998. |
[39] | Jia Qingzhu (贾青竹), Quan Xie (全燮), Chen Shuo (陈硕), Chen Jingwen (陈景文), Xue Daming (薛大明), Zhao Yazhi (赵雅芝). Kinetics of anaerobic degradation of lindane in Liaohe river sediment [J]. Environmental Science (环境科学), 2000, 21(3): 44-47. |
[40] | Potrawfke T, Timmis K N, Wittich R M. Degradation of 1,2,3,4-tetrachlorobenzene by Pseudomonas chlororaphis RW71 [J]. Applied and Environmental Microbiology, 1998, 64: 3798-3806. |
[41] | Kohler H P E, Kohlerstaub D, Focht D D. Co-metabolism of polychlorinated-biphenyls enhanced transformation of Aroclor 1254 by growing bacterial cells [J]. Applied and Environmental Microbiology, 1988, 54: 1940-1945. |
[42] | Jeffers P M, Ward L M, Woytowitch L M, Wolfe N L. Homogeneous hydrolysis rate constants for selected chlorinated methanes,ethanes,ethenes and propanes [J]. Environmental Science & Technology, 1989, 23: 965-969. |
[43] | Lee I S, Bae J H, McCarty P L. Comparison between acetate and hydrogen as electron donors and implications for the reductive dehalogenation of PCE and TCE [J]. Journal of Contaminant Hydrology, 2007, 94: 76-85. |
[44] | Zhang Dading (张大定), Xie Yunfeng (谢云峰), Liu Xiaojuan (柳晓娟), Kong Xiangbin (孔祥斌), Cao Yunzhe (曹云者), Li Fasheng (李发生). Dynamics of redox environment during natural attenuation of 1,2-dichloroethane in a laboratory aquifercolumn [J]. Research of Environmental Sciences (环境科学研究), 2012, 25(12): 1398-1403. |
[45] | He Jiangtao (何江涛), Li Ye (李烨), Liu Shi (刘石), Chen Honghan (陈鸿汉). Chlorinate solvents natural biodegradation in shallow groundwater [J]. Environmental Science (环境科学), 2005, 26(2): 121-125. |
[46] | Lahlou M, Harms H, Springael D, Ortega-Calvo J J. Influence of soil components on the transport of polycyclic aromatic hydrocarbon degrading bacteria through saturated porous media [J]. Environmental Science & Technology, 2000, 34: 3649-3656. |
[47] | He Yonghua (贺永华), Hu Lifang (胡立芳), Shen Dongsheng (沈东升), Zhu Yinmei (朱荫湄). Progress in contaminated environment bioremediation [J]. Chinese Science Bulletin (科技通报), 2007, 23(2): 271-276. |
[48] | Chiou C T, Porter P E, Schmedding D W. Partion equilibria of nonionic organic compounds between soil organic matter and water [J]. Environmental Science and Technology,1983, 17(4) : 227-231. |
[49] | Wei Shuhe (魏树和), Zhou Qixing (周启星), Wang Xin (王新). Characteristics of 18 species of weed hyperaccumulating heavy metals in contaminated soils [J]. Journal of Basic Science and Engineering (应用基础与工程科学学报), 2003, 11(2): 152-160. |
[50] | Yang Xiangkui (杨湘奎), Yin Xiuqi (阴秀琦), Li Hongwen (李洪文). The relativity of the quantificational structure of chlorine benzene chemical momopounds in biodegradation [J]. Journal of Heilongjiang Hydraulic Engineering College (黑龙江水专学报), 2006, 33(1): 97-99. |
[51] | Haigler B E, Nishino S F, Spain J. Degradation of 1,2-dichlorobenzene by a Pseudomonas sp [J]. Applied and Environmental Microbiology, 1988, 54: 294-301. |
[52] | Sun Wenjing (孙文静). Domestication of BTEX degrading becteria and study on its aerobic biodegradation [D]. Tianjin: Tianjin University, 2009. |
[53] | Song Lei (宋蕾), Wang Hui (王慧), Jiang Jian (姜健), Gao Jingsi (高静思), Shi Hanchang (施汉昌). Isolation, idetification of 1,2,4-trichlorobenzene-degrading strain Pseudomonas nitroreducens J521 and cloning of chlorocatechol 1,2-dioxygenase gene [J]. Environmental Science (环境科学), 2007, 28(8): 1878-1881. |
[54] | Adrian L, Szewzyk U, Wecke J, Görisch H. Bacterial dehalorespiration with chlorinated benzenes [J]. Nature, 2000, 408: 580-583. |
[55] | Holliger C, Wohlfarth G, Diekert G. Reductive dechlorination in the energy metabolism of anaerobic bacteria [J]. FEMS Microbiology Reviews, 1998, 22: 383-298. |
[56] | Neslihan Ta?, Miriam H A Van Eekert, Willem M De Vos, Hauke Smidt. The little bacteria that can — diversity, genomics and ecophysiology of ‘Dehalococcoides' spp. in contaminated environments [J]. Microbial Biotechnology, 2010, 3: 389-402. |
[57] | Kohler-Staub D, Leisinger T. Dichloromethane dehalogenase of Hyphomicrobium sp. strain DM2 [J]. Journal of Bacteriology, 1985, 162: 676-681. |
[58] | Janssen D B, Oppentocht J E, Poelarends G J. Microbial dehalogenation [J]. Current Opinion in Biotechnology, 2001, 12: 254-258. |
[59] | Roling W F M, van Verseveld H W. Natural attenuation: what does the subsurface have in store? [J]. Biodegradation, 2002, 13: 53-64. |
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