Literature DB >> 19540651

Dust dynamics in off-road vehicle trails: Measurements on 16 arid soil types, Nevada, USA.

Dirk Goossens1, Brenda Buck.   

Abstract

Soil analyses and measurements with the Portable In Situ Wind Erosion Laboratory (PI-SWERL) were conducted on 16 soil types in an area heavily affected by off-road vehicle (ORV) driving. Measurements were performed in ORV trails as well as on undisturbed terrain to investigate how ORV driving affects the vulnerability of a soil to emit PM10 (particles<10microm), during the driving as well as during episodes of wind erosion. Particular attention is paid to how the creation of a new trail affects those properties of the topsoil that determine its capability to emit PM10. Also, recommendations are given for adequate management of ORV-designed areas. The type of surface (sand, silt, gravel, drainage) is a key factor with respect to dust emission in an ORV trail. Trails in sand, defined in this study as the grain size fraction 63-2000microm, show higher deflation thresholds (the critical wind condition at which wind erosion starts) than the surrounding undisturbed soil. Trails in silt (2-63microm) and in drainages, on the other hand, have lower deflation thresholds than undisturbed soil. The increase in PM10 emission resulting from the creation of a new ORV trail is much higher for surfaces with silt than for surfaces with sand. Also, the creation of a new trail in silt decreases the supply limitation in the top layer: the capacity of the reservoir of emission-available PM10 increases. For sand the situation is reversed: the supply limitation increases, and the capacity of the PM10 reservoir decreases. Finally, ORV trails are characterized by a progressive coarsening of the top layer with time, but the speed of coarsening is much lower in trails in silt than in trails in sand or in drainages. The results of this study suggest that, to minimize emissions of PM10, new ORV fields should preferably be designed on sandy terrain rather than in silt areas or in drainages.

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Year:  2009        PMID: 19540651     DOI: 10.1016/j.jenvman.2009.05.031

Source DB:  PubMed          Journal:  J Environ Manage        ISSN: 0301-4797            Impact factor:   6.789


  3 in total

1.  Surface and Airborne Arsenic Concentrations in a Recreational Site near Las Vegas, Nevada, USA.

Authors:  Dirk Goossens; Brenda J Buck; Yuanxin Teng; Brett T McLaurin
Journal:  PLoS One       Date:  2015-04-21       Impact factor: 3.240

2.  Investigating palygorskite's role in the development of mesothelioma in southern Nevada: Insights into fiber-induced carcinogenicity.

Authors:  David Larson; Amy Powers; Jean-Paul Ambrosi; Mika Tanji; Andrea Napolitano; Erin G Flores; Francine Baumann; Laura Pellegrini; Cormac J Jennings; Brenda J Buck; Brett T McLaurin; Doug Merkler; Cleo Robinson; Paul Morris; Meral Dogan; A Umran Dogan; Harvey I Pass; Sandra Pastorino; Michele Carbone; Haining Yang
Journal:  J Toxicol Environ Health B Crit Rev       Date:  2016       Impact factor: 6.393

3.  Nevada desert dust with heavy metals suppresses IgM antibody production.

Authors:  Deborah E Keil; Brenda Buck; Dirk Goossens; Brett McLaurin; Lacey Murphy; Mallory Leetham-Spencer; Yuanxin Teng; James Pollard; Russell Gerads; Jamie C DeWitt
Journal:  Toxicol Rep       Date:  2018-02-09
  3 in total

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