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cen wg2 bilbao 2016

   Olores.org had the pleasure of organizing the 11th meeting of the Working Group (WG) 2 of the Technical Committee 264 of the European Committee for Standardization (CEN). This group has the task of reviewing and updating the aged European Standard EN 13725 that deals with the determination of odour concentration by dynamic olfactometry and odour emission rate from stationary sources.

   This meeting took place in the city of Bilbao, Spain a day after the meeting of the WG41. This time the working documents focused on two of the juiciest part of the standard: Sampling and uncertainty. In the previous meeting in Delft. some aspects were commented but there is still further work ahead on these issues.

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dos2016   The 3rd World Congress of the Digital Olfaction Society will be held on December 7-8, 2016 at AP Tokyo Yaesu Dori - Convention Center, Tokyo, Japan. This Congress will gather all experts involved in the field of the olfaction, digital olfaction, electronic noses, olfactive markers and all other fields related to the digital olfaction.

   Some important companies, universities and research centers are participating in this event such as Sony Europe, Orchidia Fragrances, Procter & Gamble, SC Johnson, Shimadzu Corporation, Sony Corporation Japan, ScentRealm - Hangzhou Marker Information Technology, Use Electronics, Kao Corporation, IFF International Flavors & Fragrances, Stockolm University, Macao Polytechnic Institute, Alexandria University, Asahikawa Medical University and many others.

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new epa calpuff version   The USEPA approved in July 2016 an update of CALMET and CALPUFF from V5.8.4 to V5.8.5. This update includes code changes described in Model Change Bulletin H and include fixes to bugs in the implementation of PRIME downwash, along with updates to eliminate specific compilation and list file errors. Three years later after the last update approved by the US EPA, this second revision is still falling short for odour dispersion modelling.

   The CALPUFF Modeling System is a non-steady-state puff dispersion model that simulates the effects of time- and space-varying meteorological conditions on pollution transport, transformation, and removal. According to the US EPA CALPUFF can be applied for long-range transport and for complex terrain.

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