1 |
A review of the current state of the art of physiologically-based tests for measuring human dermal in vitro bioavailability of polycyclic aromatic hydrocarbons (PAH) in soil Beriro DJ, Cave MR, Wragg J, Thomas R, Wills G, Evans F Journal of Hazardous Materials, 305, 240, 2016 |
2 |
Impact of black carbon on the bioaccessibility of organic contaminants in soil Semple KT, Riding MJ, McAllister LE, Sopena-Vazquez F, Bending GD Journal of Hazardous Materials, 261, 808, 2013 |
3 |
Application of receptor-specific risk distribution in the arsenic contaminated land management Chen IC, Ng S, Wang GS, Ma HW Journal of Hazardous Materials, 262, 1080, 2013 |
4 |
Mercury-resistant rhizobial bacteria isolated from nodules of leguminous plants growing in high Hg-contaminated soils Ruiz-Diez B, Quinones MA, Fajardo S, Lopez MA, Higueras P, Fernandez-Pascual M Applied Microbiology and Biotechnology, 96(2), 543, 2012 |
5 |
Electrokinetic remediation of plutonium-contaminated nuclear site wastes: Results from a pilot-scale on-site trial Agnew K, Cundy AB, Hopkinson L, Croudace IW, Warwick PE, Purdie P Journal of Hazardous Materials, 186(2-3), 1405, 2011 |
6 |
Use of composts in the remediation of heavy metal contaminated soil Farrell M, Jones DL Journal of Hazardous Materials, 175(1-3), 575, 2010 |
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Critical evaluation of municipal solid waste composting and potential compost markets Farrell M, Jones DL Bioresource Technology, 100(19), 4301, 2009 |
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Microbe-aliphatic hydrocarbon interactions in soil: implications for biodegradation and bioremediation Stroud JL, Paton GI, Semple KT Journal of Applied Microbiology, 102(5), 1239, 2007 |
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Remediation of contaminated media using a jet pump - Part 2. Remediation dynamics of significant parameters in the jet pump remediation process Bayley RW, Biggs CA Chemical Engineering Journal, 118(1-2), 55, 2006 |
10 |
Remediation of contaminated media using a jet pump Part 1: Screening for significant parameters Bayley RW, Biggs CA Chemical Engineering Journal, 118(3), 221, 2006 |