1,4-Dioxane Soil Remediation Using Enhanced Soil Vapor Extraction: I. Field Demonstration

被引:12
|
作者
Hinchee, Robert E. [1 ]
Dahlen, Paul R. [2 ]
Johnson, Paul C. [3 ]
Burris, David R. [4 ]
机构
[1] Integrated Sci & Technol Inc, POB 215, Brigham City, UT 84302 USA
[2] Arizona State Univ, Dept Civil Environm & Sustainable Engn, POB 875306, Tempe, AZ 85287 USA
[3] Colorado Sch Mines, 1500 Illinois St, Golden, CO 80401 USA
[4] Integrated Sci & Technol Inc, 228 Harrison Ave,Suite 102, Panama City, FL 32401 USA
来源
关键词
D O I
10.1111/gwmr.12264
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
1,4-Dioxane is totally miscible in water, sequestering in vadose pore water that can serve as a source of long-term groundwater contamination. Although some 1,4-dioxane is removed by conventional soil vapor extraction (SVE), remediation is typically inefficient. SVE efficiency is hindered by low Henry's Law constants at ambient temperature and redistribution to vadose pore water if SVE wells pull 1,4-dioxane vapors across previously clean soil. It was hypothesized that heated air injection and more focused SVE extraction (Enhanced SVE or XSVE) could increase the efficiency of 1,4-dioxane vadose treatment, and this new process was tested at former McClellan Air Force Base, CA. The XSVE system had four peripheral heated air injection wells surrounding a 6.1m x 6.1m x 9.1m deep treatment zone with a central vapor extraction well. After 14months of operation, soil temperatures reached as high as similar to 90 degrees C near the injection wells and the treatment zone was flushed with similar to 20,000 pore volumes of injected air. Post-treatment sampling results showed reductions of similar to 94% in 1,4-dioxane and similar to 45% in soil moisture. Given the simplicity of the remediation system components and the promising demonstration test results, XSVE has the potential to be a cost-effective remediation option for vadose zone soil containing 1,4-dioxane.
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页码:40 / 48
页数:9
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