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Air quality in Norwegian cities in 2015. Evaluation Report for NBV Main Results.

Tarrasón, Leonor; Sousa Santos, Gabriela; Vo, Dam Thanh; Vogt, Matthias; Lopez-Aparicio, Susana; Denby, Bruce; Tønnesen, Dag Arild; Sundvor, Ingrid; Røen, Håvard Vika; Høiskar, Britt Ann Kåstad

This report documents the final deliveries of the first phase of development of the Norwegian Air Quality Planning Tool,
also called “Nasjonalt Beregningsverktøy” or NBV. The main purpose of NBV is to provide a common methodological and
information platform for local air quality modelling applications. The system is addressed to local and regional
environmental authorities, air quality experts and consulting companies. It is intended to help them meet the requirements
of current air quality legislation, to support local air quality planning and facilitate air quality good practices where people live.
The report constitutes a comprehensive user guide for the NBV services available at http://www.luftkvalitet-nbv.no. It
presents each of the different products developed at NBV, documents how the product has been calculated, provides
recommendations on how best to use it for planning purposes and explains the main strengths and limitations of each
product. The report also includes an extensive validation of the air quality information currently available at NBV.

NILU

2018

Air quality in larger cities in the European Union. A contribution to the Auto-Oil II programme.

de Leeuw, F.; Moussiopoulos, N.; Bartonova, A.; Sahm, P.; Pulles, T.; Visschedijk, A.

2001

Air quality in Europe. State and trends 1990-99. EEA Topic report, 4/2002

Larssen, S.; Barrett, K. J.; Fiala, J.; Goodwin, J.; Hagen, L. O.; Henriksen, J. F.; de Leeuw, F.; Tarrasón, L.

2003

2017

Air quality in Europe — 2019 report

Ortiz, Alberto González; Guerreiro, Cristina; Soares, Joana

Publications Office of the European Union

2019

Air quality in Europe - recent assessments. NILU F

Foltescu, V.; Guerreiro, C.; de Leeuw, F.

2012

Air quality in Europe - recent assessments. NILU F

Foltescu, V.; Guerreiro, C.; de Leeuw, F.

2013

Air quality in Europe - 2020 report

Ortiz, Alberto González; Guerreiro, Cristina; Soares, Joana; Antognazza, Frederico; Gsella, Artur; Houssiau, Michel; Liberti, Luca; Lükewille, Anke; Öztürk, Evrim; Horálek, Jan; Banyuls, Lorena; Targa, Jaume; Schneider, Philipp; Solberg, Sverre; Walker, Sam-Erik; Colette, Augustin

European Environment Agency

2020

Air quality in Europe - 2018 report

Guerreiro, Cristina; Ortiz, Alberto Gonzalez; de Leeuw, Frank; Viana, Mar; Colette, Augustin

The current report presents an updated overview and analysis of air quality in Europe from 2000 to 2016. It reviews the progress made towards meeting the air quality standards established in the two EU Ambient Air Quality Directives and towards the World Health Organization (WHO) air quality guidelines (AQGs). It also presents the latest findings and estimates on population and ecosystem exposure to the air pollutants with the greatest impacts and effects. The evaluation of the status of air quality is based mainly on reported ambient air measurements, in conjunction with modelling data and data on anthropogenic emissions and their evolution over time.

European Environment Agency

2018

Air quality in Europe - 2017 report. EEA report, 13/2017

Guerreiro, C.; Ortiz, A.G.; de Leeuw, F.

2017

Air quality in Europe - 2016 report. EEA report, 28/2016

Guerreiro, C.; Ortiz, A.G.; de Leeuw, F.; Viana, M.; Horálek, J.

2016

Air quality in Europe - 2015 report. EEA report, 5/2015

Guerreiro, C.; de Leeuw, F.; Foltescu, V.; Ortiz, A.G.; Horálek, J.

2015

Air quality in Europe - 2014 report. EEA report, 5/2014

Guerreiro, C.; de Leeuw, F.; Foltescu, V.; Horálek, J.

2014

Air quality in Europe - 2013 report. EEA report, 9/2013

Guerreiro, C.; de Leeuw, F.; Foltescu, V.

2013

Air quality in Europe - 2012 report. EEA report, 4/2012

Guerreiro, C.; de Leeuw, F.; Foltescu, V.; Schilling, J.; van Aardenne, J.; Lükewille, A.; Adams, M.

2012

Air quality in Europe - 2011 report. EEA Technical report, 12/2011

Guerreiro, C.; Larssen, S.; de Leeuw, F.; Foltescu, V.

2011

Air quality in 7 Norwegian municipalities in 2015. Summary report for NBV results.

Tarrasón, Leonor; Sousa Santos, Gabriela; Vo, Dam Thanh; Hamer, Paul David; Vogt, Matthias; Lopez-Aparicio, Susana; Røen, Håvard Vika; Høiskar, Britt Ann Kåstad

This report documents the methodology used to compile air quality information for the year 2015 in seven Norwegian municipality areas under the first phase of development of the Norwegian Air Quality Planning Tool, also called “Nasjonalt Beregningsverktøy” or NBV. It follows a similar structure to and complements the final report entitled “Air quality in 7 Norwegian municipalities in 2015 – Summary report for NBV results” (NILU rapport 21/2017) where information on air quality in the seven main city areas in Norway was presented.

This report constitutes a user guide for the NBV-services, available at http://www.luftkalitet-nbv.no, in municipal areas. It provides recommendations on how to best use each product for air quality planning purposes and explains the main strengths and limitations of the results. The NBV air quality data for municipalities is subject to larger uncertainties than the data available for the main Norwegian city areas and this has to be taken into consideration when analyzing the results.

NILU

2018

Air quality impacts of CNG fuel switch for vehicles in Chittagong, Bangladesh. NILU PP

Randall, S.; Sivertsen, B.; Ahammad, Sk. S.; Uddin, Md. N.; Rana, Md. M.

2014

Air quality impact assessment, Maria Gleta Power Plant, Benin. NILU OR

Sivertsen, B.; Liu, L.; Castell Balaguer, N.

Concentrations of air pollutants from the 50MW Jacobsen Electro power plant in Benin has been estimated using two different dispersion models. SO2 emissions from the power plant operated with heavy fuel oil has proven to be the most critical option compared to national and international limit values. The SO2 concentrations will never exceed more than 37% of the national air quality limit values. For all other options, such as light fuel oil and gas, the concentrations will be less. Also the impact of NOx and PM10 will be relative to the limit values be less than for SO2. The CO2 emissions will represent less than 10 % of the national greenhouse gas emissions in Benin.

2011

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