A Monte Carlo simulation method for assessing biotransformation effects on groundwater fuel hydrocarbon plume lengths

被引:6
作者
McNab, WW [1 ]
机构
[1] Lawrence Livermore Natl Lab, Environm Restorat Div, Livermore, CA 94551 USA
关键词
analytical transport modeling; biodegradation; biotransformation; groundwater contamination; Monte Carlo analysis;
D O I
10.1016/S0098-3004(00)00062-5
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Biotransformation of dissolved groundwater hydrocarbon plumes emanating from leaking underground fuel tanks should, in principle, result in plume length stabilization over relatively short distances, thus diminishing the environmental risk. However, because the behavior of hydrocarbon plumes is usually poorly constrained at most leaking underground fuel tank sites in terms of release history, groundwater velocity, dispersion, as well as the biotransformation rate, demonstrating such a limitation in plume length is problematic. Biotransformation signatures in the aquifer geochemistry, most notably elevated bicarbonate, may offer a means of constraining the relationship between plume length and the mean biotransformation rate. In this study, modeled plume lengths and spatial bicarbonate differences among a population of synthetic hydrocarbon plumes, generated through Monte Carlo simulation of an analytical solute transport model, are compared to held observations from six underground storage tank (UST) sites at military bases in California. Simulation results indicate that the relationship between plume length and the distribution of bicarbonate is best explained by biotransformation rates that are consistent with ranges commonly reported in the literature. This finding suggests that bicarbonate can indeed provide an independent means for evaluating limitations in hydrocarbon plume length resulting from biotransformation. Published by Elsevier Science Ltd.
引用
收藏
页码:31 / 42
页数:12
相关论文
共 35 条
[1]  
[Anonymous], 2015, SUPERBOB
[2]   CRUDE-OIL IN A SHALLOW SAND AND GRAVEL AQUIFER .3. BIOGEOCHEMICAL REACTIONS AND MASS-BALANCE MODELING IN ANOXIC GROUNDWATER [J].
BAEDECKER, MJ ;
COZZARELLI, IM ;
EGANHOUSE, RP ;
SIEGEL, DI ;
BENNETT, PC .
APPLIED GEOCHEMISTRY, 1993, 8 (06) :569-586
[3]   NATURAL ATTENUATION OF AROMATIC-HYDROCARBONS IN A SHALLOW SAND AQUIFER [J].
BARKER, JF ;
PATRICK, GC ;
MAJOR, D .
GROUND WATER MONITORING AND REMEDIATION, 1987, 7 (01) :64-71
[4]   A comparison of zero-order, first-order, and Monod biotransformation models [J].
Bekins, BA ;
Warren, E ;
Godsy, EM .
GROUND WATER, 1998, 36 (02) :261-268
[5]   GEOCHEMICAL INDICATORS OF INTRINSIC BIOREMEDIATION [J].
BORDEN, RC ;
GOMEZ, CA ;
BECKER, MT .
GROUND WATER, 1995, 33 (02) :180-189
[6]   Intrinsic biodegradation of MTBE and BTEX in a gasoline-contaminated aquifer [J].
Borden, RC ;
Daniel, RA ;
LeBrun, LE ;
Davis, CW .
WATER RESOURCES RESEARCH, 1997, 33 (05) :1105-1115
[7]   TRANSPORT OF DISSOLVED HYDROCARBONS INFLUENCED BY OXYGEN-LIMITED BIODEGRADATION .1. THEORETICAL DEVELOPMENT [J].
BORDEN, RC ;
BEDIENT, PB .
WATER RESOURCES RESEARCH, 1986, 22 (13) :1973-1982
[8]  
Buscheck TE, 1995, BIOREMED SER, V3, P109
[9]  
BUSCHECK TE, 1996, P C PETR HYDR ORG CH, P1
[10]   Measuring rates of biodegradation in a contaminated aquifer using field and laboratory methods [J].
Chapelle, FH ;
Bradley, PM ;
Lovley, DR ;
Vroblesky, DA .
GROUND WATER, 1996, 34 (04) :691-698