Combined approaches to determine the impact of wood fire on PCDD/F and PCB contamination of the environment: a case study.
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[1] Charles S Wong,et al. Chiral polychlorinated biphenyl transport, metabolism, and distribution: a review. , 2010, Environmental science & technology.
[2] C. Branquinho,et al. Understanding the performance of different lichen species as biomonitors of atmospheric dioxins and furans: potential for intercalibration , 2009, Ecotoxicology.
[3] D. Lenoir,et al. Correlation of PCDD/F and PCB at combustion experiments using wood and hospital waste. Influence of (NH(4))(2)SO(4) as additive on PCDD/F and PCB emissions. , 2009, Chemosphere.
[4] D. Muir,et al. Global fate of POPs: current and future research directions. , 2007, Environmental pollution.
[5] Bogdan Z. Dlugogorski,et al. Formation of dioxins and furans during combustion of treated wood , 2007 .
[6] C. Creaser,et al. UK Soils and Herbage Survey. Report 8 : environmental concentrations of polychlorinated biphenyls (PCBs) in UK soil and herbage. , 2007 .
[7] C. Branquinho,et al. The contribution of environmental biomonitoring with lichens to assess human exposure to dioxins. , 2007, International journal of hygiene and environmental health.
[8] Kevin C Jones,et al. Emission factors and importance of PCDD/Fs, PCBs, PCNs, PAHs and PM10 from the domestic burning of coal and wood in the U.K. , 2005, Environmental science & technology.
[9] Peter Adriaens,et al. Modified polytopic vector analysis to identify and quantify a dioxin dechlorination signature in sediments. 1. Theory. , 2004, Environmental science & technology.
[10] T. Bidleman,et al. Current combustion-related sources contribute to polychlorinated naphthalene and dioxin-like polychlorinated biphenyl levels and profiles in air in Toronto, Canada. , 2003, Environmental science & technology.
[11] Wendy A. Ockenden,et al. Global distribution and budget of PCBs and HCB in background surface soils: implications for sources and environmental processes. , 2003, Environmental science & technology.
[12] M. Schuhmacher,et al. PCDD/PCDF congener profiles in soil and herbage samples collected in the vicinity of a municipal waste incinerator before and after pronounced reductions of PCDD/PCDF emissions from the facility. , 2002, Chemosphere.
[13] G Cecchetti,et al. Biological monitoring: lichens as bioindicators of air pollution assessment--a review. , 2001, Environmental pollution.
[14] M. Schuhmacher,et al. Congener profiles of PCDD/Fs in soil and vegetation samples collected near to a municipal waste incinerator. , 2001, Chemosphere.
[15] A. Johnston,et al. Further evidence for the existence of PCDD/Fs in the environment prior to 1900. , 2001, Environmental Science and Technology.
[16] K. Jones,et al. Air–soil exchange of semi-volatile organic compounds (SOCs) in the UK , 1998 .
[17] B. Jiménez,et al. Polychlorinated dibenzo-p-dioxins and dibenzofurans in soils near a clinical waste incinerator in Madrid, Spain. Chemometric comparison with other pollution sources and soils , 1996 .
[18] A. Buekens,et al. On the mechanisms of dioxin formation in combustion processes , 1995 .
[19] B. Gullett,et al. PCDD/F, PCB, HxCBz, PAH, and PM emission factors for fireplace and woodstove combustion in the San Francisco Bay region. , 2003, Environmental science & technology.
[20] J. Wood,et al. PCDD/Fs in archived historical soils. , 1999 .