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- W4228996860 endingPage "134804" @default.
- W4228996860 startingPage "134804" @default.
- W4228996860 abstract "The natural attenuation potential of a vadose zone against diesel is critical for optimizing remedial actions and determining groundwater vulnerability to contamination. Here, diesel attenuation in unsaturated soils was systematically examined to develop a qualitative relationship between physical soil properties and the natural attenuation capacity of a vadose zone against diesel. The uniformity coefficient (Cu) and water saturation (Sw, %) were considered as the proxies reflecting the degree of effects by porous network and water content in different soils, respectively. These, in turn, are related to the primary diesel attenuation mechanisms of volatilization and biodegradation. The volatilization of diesel was inversely proportional to Cu and Sw, which could be attributed to effective pore channels facilitating gas transport. Conversely, biodegradation was highly proportional to Cu under unsaturated conditions (Sw = 35-71%), owing to nutrients typically associated with fine soil particles. The microbial community in unsaturated soils was affected by Sw rather than Cu. The overall diesel attenuation including volatilization and biodegradation was optimized at Sw = 35% for all tested soils." @default.
- W4228996860 created "2022-05-08" @default.
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- W4228996860 date "2022-09-01" @default.
- W4228996860 modified "2023-10-09" @default.
- W4228996860 title "Coupled effect of porous network and water content on the natural attenuation of diesel in unsaturated soils" @default.
- W4228996860 cites W1001532945 @default.
- W4228996860 cites W1514168264 @default.
- W4228996860 cites W1608924361 @default.
- W4228996860 cites W1948183439 @default.
- W4228996860 cites W1966284786 @default.
- W4228996860 cites W1967771204 @default.
- W4228996860 cites W1969538385 @default.
- W4228996860 cites W1969840415 @default.
- W4228996860 cites W1976910523 @default.
- W4228996860 cites W1977653055 @default.
- W4228996860 cites W1983410529 @default.
- W4228996860 cites W1989441582 @default.
- W4228996860 cites W1996358228 @default.
- W4228996860 cites W1999631720 @default.
- W4228996860 cites W2000367374 @default.
- W4228996860 cites W2003701446 @default.
- W4228996860 cites W2006905549 @default.
- W4228996860 cites W2012683148 @default.
- W4228996860 cites W2017945395 @default.
- W4228996860 cites W2019730116 @default.
- W4228996860 cites W2028676776 @default.
- W4228996860 cites W2031911514 @default.
- W4228996860 cites W2055801775 @default.
- W4228996860 cites W2057336091 @default.
- W4228996860 cites W2061455269 @default.
- W4228996860 cites W2062877074 @default.
- W4228996860 cites W2064902175 @default.
- W4228996860 cites W2066246916 @default.
- W4228996860 cites W2068271564 @default.
- W4228996860 cites W2076728601 @default.
- W4228996860 cites W2080925955 @default.
- W4228996860 cites W2090140713 @default.
- W4228996860 cites W2091160252 @default.
- W4228996860 cites W2094870658 @default.
- W4228996860 cites W2102202537 @default.
- W4228996860 cites W2129838402 @default.
- W4228996860 cites W2138980434 @default.
- W4228996860 cites W2146563733 @default.
- W4228996860 cites W2189757279 @default.
- W4228996860 cites W2220297713 @default.
- W4228996860 cites W2221013115 @default.
- W4228996860 cites W2228352322 @default.
- W4228996860 cites W2288514457 @default.
- W4228996860 cites W2296015711 @default.
- W4228996860 cites W2406580931 @default.
- W4228996860 cites W2466025386 @default.
- W4228996860 cites W2515361638 @default.
- W4228996860 cites W2749908226 @default.
- W4228996860 cites W2775482329 @default.
- W4228996860 cites W2777127634 @default.
- W4228996860 cites W2790370685 @default.
- W4228996860 cites W2793634911 @default.
- W4228996860 cites W2795717135 @default.
- W4228996860 cites W2800314636 @default.
- W4228996860 cites W2886965305 @default.
- W4228996860 cites W2910020029 @default.
- W4228996860 cites W2940647849 @default.
- W4228996860 cites W2947002787 @default.
- W4228996860 cites W2949214743 @default.
- W4228996860 cites W2955373455 @default.
- W4228996860 cites W2971111466 @default.
- W4228996860 cites W2976824391 @default.
- W4228996860 cites W2977291268 @default.
- W4228996860 cites W2982074929 @default.
- W4228996860 cites W2990076005 @default.
- W4228996860 cites W2992383101 @default.
- W4228996860 cites W3000870948 @default.
- W4228996860 cites W3002866938 @default.
- W4228996860 cites W3020880339 @default.
- W4228996860 cites W3024073961 @default.
- W4228996860 cites W3024649803 @default.
- W4228996860 cites W3037053132 @default.
- W4228996860 cites W3039593716 @default.
- W4228996860 cites W3083073052 @default.
- W4228996860 cites W3083662622 @default.
- W4228996860 cites W3088444477 @default.
- W4228996860 cites W3135182526 @default.
- W4228996860 cites W3195300988 @default.
- W4228996860 doi "https://doi.org/10.1016/j.chemosphere.2022.134804" @default.
- W4228996860 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35533929" @default.
- W4228996860 hasPublicationYear "2022" @default.
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