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Release of PCDD and PCDF from biomass combustion such as forest and agricultural crop fires has been nominated as an important source for these chemicals despite minimal characterisation. Available emission factors that have been experimentally determined in laboratory and field experiments vary by several orders of magnitude from <0.5 μg TEQ (t fuel consumed)−1 to >100 μg TEQ (t fuel consumed)−1. The aim of this study was to evaluate the effect of experimental methods on the emission factor.A portable field sampler was used to measure PCDD/PCDF emissions from forest fires and the same fuel when burnt over a brick hearth to eliminate potential soil effects. A laboratory burn facility was used to sample emissions from the same fuels. There was very good agreement in emission factors to air (EFAir) for forest fuel (Duke Forest, NC) of 0.52 (range: 0.40-0.79), 0.59 (range: 0.18-1.2) and 0.75 (range: 0.27-1.2) μg TEQWHO2005 (t fuel consumed)−1 for the in-field, over a brick hearth, and burn facility experiments, respectively. Similarly, experiments with sugarcane showed very good agreement with EFAir of 1.1 (range: 0.40-2.2), 1.5 (range: 0.84-2.2) and 1.7 (range: 0.34-4.4) μg TEQ (t fuel consumed)−1 for in-field, over a brick hearth, open field and burn facility experiments respectively. Field sampling and laboratory simulations were in good agreement, and no significant changes in emissions of PCDD/PCDF could be attributed to fuel storage and transport to laboratory test facilities.  相似文献   
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Background, aim, and scope  

Fluorotelomer alcohols (FTOH) are widely used substances that were detected even in remote regions of the world. For the determination of FTOH in the atmosphere, appropriate sampling techniques are needed. In this study, triolein-filled low-density polyethylene tubes were used as semipermeable membrane devices (SPMD) and tested for their suitability as passive air samplers for FTOH.  相似文献   
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The success of the negotiations on the POPs Convention after the failure of the negotiations over the climate protocol in The Hague in late November is an important result for international action to protect the earth from damage by chemicals. It shows the countries’ real commitment to find compromises for protection of the environment and human health and for the restoration of damaged ecosystems on our planet. It deserves to be highlighted that all participants — not only the industrialized countries but also developing countries as well as environmental organizations and the (chemical) industry — regard the conclusion of this convention as a success and that a broad basis for joint action has thus been created. The convention is a signal also because of its useful contents, which includes instruments for the total elimination of 12 POPs in the beginning and of further persistent organic pollutants at a later stage. The basis for a gradual reduction of the increasing pollution of the environment on a global scale is given by mechanisms for subjecting further POPs to the requirements of this Convention in the future.  相似文献   
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