• ISSN 2305-7068
  • Indexed by ESCI CABI CAS
  • DOAJ Scopus GeoRef AJ CNKI
Advanced Search
Volume 2 Issue 4
Dec.  2014
Turn off MathJax
Article Contents
MA Shao-bing, ZHOU Jun, LIANG Peng, et al. 2014: Characteristics-based classification research on typical petroleum contaminants of groundwater. Journal of Groundwater Science and Engineering, 2(4): 41-47.
Citation: MA Shao-bing, ZHOU Jun, LIANG Peng, et al. 2014: Characteristics-based classification research on typical petroleum contaminants of groundwater. Journal of Groundwater Science and Engineering, 2(4): 41-47.

Characteristics-based classification research on typical petroleum contaminants of groundwater

  • Publish Date: 2014-12-28
  • Petroleum pollution has become an important factor to threaten the groundwater environment, and the classification of its typical characteristics will contribute to pollution assessment and environmental management. Under the same hydrogeological features con?dition, the reaction of typical petroleum pollutants in groundwater depends on the charac?teristics. This paper takes the typical toxicity, oil pollutant migration, degradation, water-soluble etc. as evaluation indexes, and with AHP method the typical petroleum pollut?ants in groundwater are divided into four classifications according to comprehensive calculated values: comprehensive value≥2.5, Class I hazardous pollutant; 2.0≤comprehensive value<2.5, Class II hazardous pollutant; 1.5≤comprehensive value<2.0, Class III hazardous po?llutant; comprehensive value<1.5, Class IV hazardous pollutant. The pollutant group shall be managed according to the classification, and obtained classification list will provide technical support for priority monitoring and priority repair of groundwater environmental management.
  • 加载中
  • Ministry of Health of the People’s Republic of China. 1993. Water quality standard for drinking water sources (CJ3020-93). Beijing: China Architecture & Building Press.
    YANG Bao-an, ZHANG Ke-jing. 2008. Multi- objective decision analysis theory, methods and application of research. Shanghai: Donghua University Press, 47-57.
    Philip H H, Robert B, et al. 1991. Handbook of environmental degradation rates. Shanghai: Shanghai Scientific and Technological Litera?ture Press.
    State Bureau of Technical Supervision. 1993. Quality Standard for Groundwater (GBT 14848-93). Beijing: China Stan?dards Press.
    DI Xue-yun. 1999. Cancerogen overall evaluation table recently released by international center for research on cancer (IARC). Journal of Labour Medicine, 16(3):196-209.
    QUAN Xie, SUN Ying, et al. 1996. Fuzzy system for assessment of the prior order and the risk classification of the marine organic pol1utants. Marine Environmental Science, 15(1):1-7.
    YAN Xue, XIA Qiao-hua, et al. 2014. Bio?degradation and kinetics of diesel pollutants in water. Chinese Journal of Environmental Engineering, 8(5):1883-1887.
    GUO Jin-yu, ZHANG Zhong-bin, et al. 2008. Study and applications of Analytic Hierarchy. China Safety Science Journal, 18(5):148-153.
    WANG Da-chun, ZHANG Ren-qun, et al. 1980. Fundamentals of Hydrogeology. Beijing: Geo?logical Press.
    ZHU Fei-fei, QIN Pu-feng, et al. 2013. Screening of priority organic pollutants in groundwater of China. Chinese Journal of Environmental Engineering, 3(5) :443-450.
    LU Zhong-da, ZHANG Jiang-shan. 2007. Applica?tion of analytic hierarchy process on environ?mental risk assessment. Environ?mental Science Survey, 26(3):79-81.
    ZHOU Wen-Min, Fu De-qian, et al. 1990. Priority pollutants in water blacklist. Environmental Moni?toring of China, 6(4):1-3.
    Gustafson D I. 1989. Groundwater ubiquity score: a simple method for assessing pesticide leachability. Environmental Toxicology and Chemistry, 8(4): 339- 357.
    Guzzella L, Pozzoni F, et al. 2006. Herbicide Con?tamination of Surficial Groundwater in Northern Italy. Environmental Pollution, 142 (2):344-353.
    HU Qun, LIU Wen-yun. 2009. SWOT analysis method improvement and examples based on the analytic hierarchy process. Information Studies: Theory & App?lication, 32(3):68-71.
    XIA Yuan-xun. 1991. Book of chemical substances toxicity. Shanghai: Shanghai Science and Technology Literature Publishing House, 7.
    CHEN Hong-ping, LIU Yong-xin, et al. 2004. Methods for determing and estimating octanol-water partition coefficient of organic compounds. Journal of Safety and Environ?mental, 4(6):82-86.
  • Relative Articles

    [1] Fatemeh Einlo, Mohammad Reza Ekhtesasi, Mehdi Ghorbani, Parviz Abdinejad, 2023: Determine the most appropriate strategy for groundwater management in arid and semi-arid regions, Abhar Plain, Iran, Journal of Groundwater Science and Engineering, 11, 97-115.  doi: 10.26599/JGSE.2023.9280010
    [2] Xiao-xia Tong, Rong Gan, Shu-qian Gu, Xing-le Sun, Kai-tuo Huang, Xiao-feng Yan, 2022: Stable chlorine isotopic signatures and fractionation mechanism of groundwater in Anyang, China, Journal of Groundwater Science and Engineering, 10, 393-404.  doi: 10.19637/j.cnki.2305-7068.2022.04.007
    [3] Vinay Kumar Gautam, Mahesh Kothari, P.K. Singh, S.R. Bhakar, K.K. Yadav, 2022: Analysis of groundwater level trend in Jakham River Basin of Southern Rajasthan, Journal of Groundwater Science and Engineering, 10, 1-9.  doi: 10.19637/j.cnki.2305-7068.2022.01.001
    [4] Abdelhakim LAHJOUJ, Abdellah EL HMAIDI, Karima BOUHAFA, 2020: Spatial and statistical assessment of nitrate contamination in groundwater: Case of Sais Basin, Morocco, Journal of Groundwater Science and Engineering, 8, 143-157.  doi: 10.19637/j.cnki.2305-7068.2020.02.006
    [5] KHELFAOUI Hakim, DAJBRI Larbi, LAKHAL Fatima Zohra, CHAFFAI Hicham, HANI Azzedine, SAYAD Lamine, 2020: Determination of the origin of mineralization and groundwater salinity in the Adrar region in the southwest of Algeria, Journal of Groundwater Science and Engineering, 8, 158-171.  doi: 10.19637/j.cnki.2305-7068.2020.02.007
    [6] LI Bo, LI Xue-mei, 2018: Characteristics of karst groundwater system in the northern basin of Laiyuan Spring area, Journal of Groundwater Science and Engineering, 6, 261-269.  doi: 10.19637/j.cnki.2305-7068.2018.04.002
    [7] LI Xiao-hang, WANG Rui, LI Jian-feng, 2018: Study on hydrochemical characteristics and formation mechanism of shallow groundwater in eastern Songnen Plain, Journal of Groundwater Science and Engineering, 6, 161-170.  doi: 10.19637/j.cnki.2305-7068.2018.03.001
    [8] ZHOU Xun, 2017: Arsenic distribution and source in groundwater of Yangtze River Delta economic region, China, Journal of Groundwater Science and Engineering, 5, 343-353.
    [9] Eunhee Lee, Kyoochul Ha, Nguyen Thi Minh Ngoc, Adichat Surinkum, Ramasamy Jayakumar, Yongje Kim, Kamaludin Bin Hassan, 2017: Groundwater status and associated issues in the Mekong-Lancang River Basin: International collaborations to achieve sustainable groundwater resources, Journal of Groundwater Science and Engineering, 5, 1-13.
    [10] Pezhman ROUDGARMI, Ebrahim FARAHANI, 2017: Investigation of groundwater quantitative change, Tehran Province, Iran, Journal of Groundwater Science and Engineering, 5, 278-285.
    [11] Khongsab Somphone, OunakoneKone Xayviliya, 2017: Climate change and groundwater resources in Lao PDR, Journal of Groundwater Science and Engineering, 5, 53-58.
    [12] BAI Bing, CHENG Yan-pei, JIANG Zhong-cheng, ZHANG Cheng, 2017: Climate change and groundwater resources in China, Journal of Groundwater Science and Engineering, 5, 44-52.
    [13] Chamroeun SOK, Sokuntheara CHOUP, 2017: Climate change and groundwater resources in Cambodia, Journal of Groundwater Science and Engineering, 5, 31-43.
    [14] ZHU Yu-chen, ZHANG Yi-long, HAO Qi-chen, 2017: Assessment of shallow groundwater vulnerability in Dahei River Plain based on AHP and DRASTIC, Journal of Groundwater Science and Engineering, 5, 266-277.
    [15] ZHANG Chun-chao, WANG Wen-Ke, SUN Yi-bo, LI Xiang-quan,HOU Xin-wei, 2015: Processes of hydrogeochemical evolution of groundwater in the Guanzhong Basin, China, Journal of Groundwater Science and Engineering, 3, 136-146.
    [16] YI Qing, GE Li-qiang, CHENG Yan-pei, DONG Hua, LIU Kun, ZHANG Jian-kang, YUE Chen, 2015: Compilation of Groundwater Quality Map and study of hydrogeochemical characteristics of groundwater in Asia, Journal of Groundwater Science and Engineering, 3, 176-185.
    [17] Liang ZHU, Wei-dong KANG, Ji-chao SUN, Jing-tao LIU, 2014: Quantitative Calculation of Groundwater Vulnerability Assessment Based on Quantification Theory III, Journal of Groundwater Science and Engineering, 2, 78-85.
    [18] Song Bo, Liu Changli, Zhang Yun, Hou Hongbing, Pei Lixin, Yang Liu, 2013: Urban Waste Disposal and Its Impact on Groundwater Pollution in China, Journal of Groundwater Science and Engineering, 1, 88-95.
    [19] Jingli Shao, Yali Cui, Yunzhang Zhao, 2013: A Study on Infiltration and Groundwater Development in the Influent Zone of the Perched Lower Yellow River, Journal of Groundwater Science and Engineering, 1, 46-53.
    [20] Jiansheng Shi, Hongtao Liu, Zhiyuan Liu, Tieliu Chen, 2013: Application of the “Accurate Control Groundwater Resources” Theory in Containment of Groundwater Resource Exhaustion Trend, Journal of Groundwater Science and Engineering, 1, 1-10.
  • 加载中

Catalog

    Article Metrics

    Article views (524) PDF downloads(1732) Cited by()
    Proportional views
    Related

    Welcome to Journal of Groundwater Science and  Engineering!

    Quick Submit

    Online Submission   E-mail Submission

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return