Sano M, Yotsui Y, Abe H, et al. A new technique for the detection of metabolites labeled by the isotope 13C using mass fragmentography[J]. Biomed:Mass Spectrom, 1976, 3(1):1-3.
[2]
Schmidt T C, Zwank L, Elsner M, et al. Compound-specific stable isotope analysis of organic contaminants in natural environments:A critical review of the state of the art, prospects, and future challenges[J]. Anal Bioanal Chem, 2004, 378(2):283-300.
[3]
Meckenstock R U, Morasch B, Griebler C, et al. Stable isotope fractionation analysis as a tool to monitor biodegradation in contaminated acquifers[J]. J Contam Hydrol, 2004, 75(3-4):215-255.
[4]
Elsner M. Stable isotope fractionation to investigate natural transformation mechanisms of organic contaminants:Principles, prospects and limitations[J]. J Environ Monit, 2010, 12(11):2005-2031.
[5]
Hofstetter T B, Berg M. Assessing transformation processes of organic contaminants by compound-specific stable isotope analysis[J]. TrAC Trends Anal Chem, 2011, 30(4):618-627.
[6]
Aelion C M, Hohener P, Hunkeler D, et al. Environmental isotopes in bioremediation and biodegradation[M]. CRC Press, 2009.
[7]
Elsner M, Jochmann M A, Hofstetter T B, et al. Current challenges in compound-specific stable isotope analysis of environmental organic contaminants[J]. Analytical and bioanalytical chemistry, 2012, 403(9): 2471-2491.
[8]
A guide for assessing biodegradation and source identification of organic ground water contaminants using compound specific isotope analysis (CSIA)[M]. Office of Research and Development, National Risk Management Research Laboratory, US Environmental Protection Agency, 2008. [8] Hunkeler D, Meckenstock RU, Sherwood Lollar B, et al. A guide for assessing biodegradation and source identification of organic ground water contaminants using compound specific isotope analysis(CSIA) office of research and development. US EPA, Oklahoma, USA. 2008.
[9]
Eisenmann H, Fischer A. Isotopenuntersuchungen in der altlastenbewertung[C]//Franzius V, Altenbockum M, Gerhold T(eds) handbuch der altlastensanierung und fl?chenmanagement. Verlagsgruppe Hüthig Jehle Rehm, München. 2010.
[10]
Boyd T J, Osburn C L, Johnson K J, et al. Compound-specific isotope analysis coupled with multivariate statistics to source-apportion hydrocarbon mixtures[J]. Environ Sci Technol, 2006, 40(6):1916-1924.
[11]
Walker S E, Dickhut R M, Chisholm-Brause C, et al. Molecular and isotopic identification of PAH sources in a highly industrialized urban estuary[J]. Org Geochem, 2005, 36(4):619-632.
[12]
Hunkeler D, Chollet N, Pittet X, et al. Effect of source variability and transport processes on carbon isotope ratios of TCE and PCE in two sandy aquifers[J]. J Contam Hydrol, 2004, 74(1-4):265-282.
[13]
Blessing M, Schmidt T C, Dinkel R, et al. Delineation of multiple chlorinated ethene sources in an industrialized area:A forensic field study using compound-specific isotope analysis[J]. Environ Sci Technol, 2009, 43(8):2701-2707.
[14]
Wang Y, Huang Y, Huckins J N, et al. Compound-specific carbon and hydrogen isotope analysis of sub-parts per billion level waterborne petroleum hydrocarbons[J]. Environ Sci Technol, 2004, 38(13):3689-3697.
[15]
Mudge S M, Meier-Augenstein W, Eadsforth C, et al. What contribution do detergent fatty alcohols make to sewage discharges and the marine environment[J]. J Environ Monit, 2010, 12(10):1846-1856.
[16]
韩 辉, 钟宁宁, 王延年, 等. 页岩气稳定碳同位素组成特征及应用前景[J]. 地质科技情报, 2014, 33(2):134-139. HAN Hui, ZHONG Ning-ning, WANG Yan-nian, et al. Characteristics of stable carbon isotope of shale gas and their applicaion prospects[J]. Geological Science and Technology Information, 2014, 33(2):134-139.
[17]
郭志刚, 杨作升, 林 田, 等. 东海泥质区单体正构烷烃的碳同位素组成及物源分析[J]. 第四纪研究, 2006, 26(3):384-390. GUO Zhi-gang, YANG Zuo-sheng, LIN Tian, et al. Compound specific carbon isotope compositions of individual n-alknes in the East China sea mud areas[J]. Quaternary Sciences, 2006, 26(3):384-390.
[18]
张玉龙, 冉 勇. 珠江中下游颗粒有机质的碳氮稳定同位素, 氨基酸和木质素组成及其地球化学意义[J]. 地球化学, 2014(2):114-121. ZHANG Yu-long, RAN Yong. Stable carbon and nitrogen isotopic, amino acids and lignin compositions and geochemical significance of particulate organic matter from the middle and lower reaches of the Pearl River[J]. Geochimica, 2014(2):114-121.
[19]
张 杰, 贾国东. 植物正构烷烃及其单体氢同位素在古环境研究中的应用[J]. 地球科学进展, 2009, 24(8):874-881. ZHANG Jie, JIA Guo-dong. Application of pant-derived alkanes and their compound specific hydrogen isotopic composition in paleo environment research[J]. Advances in Earth Science, 2009, 24(8):874-881.
[20]
贺行良, 刘昌岭, 王江涛, 等. 气相色谱-同位素比值质谱法测定天然气水合物气体单体碳氢同位素[J]. 岩矿测试, 2012, 31(1):154-158. HE Xing-liang, LIU Chang-ling, WANG Jiang-tao, et al. Measurement of carbon and hydrogen isotopes of natural gas hydrate-bound gases by gas chromatography-isotope ratio mass spectrometry[J]. Rock and Mineral Analysis, 2012, 31(1):154-158.