4.7 Article

Using variances in hydrocarbon concentration and carbon stable isotope to determine the important influence of irrigated water on petroleum accumulation in surface soil

Journal

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
Volume 20, Issue 5, Pages 3381-3394

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-012-1265-6

Keywords

Wastewater irrigation; Atmospheric deposition; Soil contamination; Aliphatic hydrocarbons; Compound-specific isotopes; Multivariate statistical analysis

Funding

  1. National Science Foundation of China [30970166, 40801088]
  2. Special Environmental Protection Foundation for Public Welfare Project [201009032]
  3. Science and Technology Development Plan Project of Shandong Province [2012G0021706]

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Hunpu is a wastewater-irrigated area southwest of Shenyang. To evaluate petroleum contamination and identify its sources at the area, the aliphatic hydrocarbons and compound-specific carbon stable isotopes of n-alkanes in the soil, irrigation water, and atmospheric deposition were analyzed. The analyses of hydrocarbon concentrations and geochemical characteristics reveal that the water is moderately contaminated by degraded heavy oil. According to the isotope analysis, inputs of modern C3 plants and degraded petroleum are present in the water, air, and soil. The similarities and dissimilarities among the water, air, and soil samples were determined by concentration, isotope, and multivariate statistical analyses. Hydrocarbons from various sources, as well as the water/atmospheric deposition samples, are more effectively differentiated through principal component analysis of carbon stable isotope ratios (delta C-13) relative to hydrocarbon concentrations. Redundancy analysis indicates that 57.1 % of the variance in the delta C-13 of the soil can be explained by the delta C-13 of both the water and air, and 35.5 % of the variance in the hydrocarbon concentrations of the soil can be explained by hydrocarbon concentrations of both the water and the air. The delta C-13 in the atmospheric deposition accounts for 28.2 % of the delta C-13 variance in the soil, which is considerably higher than the variance in hydrocarbon concentrations of the soil explained by hydrocarbon concentrations of the atmospheric deposition (7.7 %). In contrast to delta C-13 analysis, the analysis of hydrocarbon concentrations underestimates the effect of petroleum contamination in the irrigated water and air on the surface soil. Overall, the irrigated water exerts a larger effect on the surface soil than does the atmospheric deposition.

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