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Forecasting India's water future.

Mesquita, M. d. S.; Veldore, V.; Li, L.; Krishnan, R.; Orsolini, Y.; Senan, R.; Ramarao, M. V. S.; Viste, E.

2016

Modelling of arsenic aerosol in South-West Spain.

Milford, C.; Marrero, C.; Sánchez de la Campa, A.; Fernández-Camacho, R.; Bustos, J.J.; Rodríguez, S.; Castell, N.; De la Rosa, J.; Stein, A.F.

2016

Modelling the dispersion of particle numbers in five European cities.

Kukkonen, J.; Karl, M.; Keuken, M.P.; Denier van der Gon, H.A.C.; Denby, B.R.; Singh, V.; Douros, J.; Manders, A.; Samaras, Z.; Moussiopoulos, N.; Jonkers, S.; Aarnio, M.; Karppinen, A.; Kangas, L.; Lützenkirchen, S.; Petäjä, T.; Vouitsis, I.; Sokhi, R.S.

2016

Sustainability of future coasts and estuaries: A synthesis

Newton, A.; Harff, J.; You, Z.-J.; Zhang, H.; Wolanski, E.

2016

Impact of springtime Himalayan-Tibetan Plateau snowpack on the onset of the Indian summer monsoon in coupled seasonal forecasts.

Orsolini Y.J.; Senan, R.; Weisheimer, A.; Vitart, F.; Balsamo, G.; Doblas-Reyes, F. J.; Stockdale, T. N.; , Dutra, E.

2016

Total ozone and UV measurements at the Norwegian Troll Station, Antarctica.

Hansen, G.; Svendby, T.; Dahlback, A.; Edvardsen, K.

2016

Oslolufta på helsa løs?

Høiskar, B. A. K.; Sundvor, I.; Sousa Santos, G.; Vogt, M.

2016

Are poly(anhydride) nanoparticles really safe?

Alonso, T. I.; El Yamani, N.; Dusinska, M.; Salsamendi, A. L.; Oscoz, A. A.

2016

Environmental chemistry.

Warner, N. A.; Herzke, D.

2016

Field evaluation of polyurethane foam (PUF) passive air samplers in the tropical zone.

Bohlin-Nizzetto, P.; Melymuk, L.; Pribylová, P.; Klánová, J.

2016

Current and future levels of mercury atmospheric pollution on a global scale.

Pacyna, J.M.; Travnikov, O.; De Simone, F.; Hedgecock, I.M.; Sundseth, K.; Pacyna, E.G.; Steenhuisen, F.; Pirrone, N.; Munthe, J.; Kindbom, K.

2016

The sources of atmospheric black carbon at a European gateway to the Arctic.

Winiger, P.; Andersson, A.; Eckhardt, S.; Stohl, A.; Gustafsson, O.

2016

Comparing GOSAT observations of localized CO2 enhancements by large emitters with inventory-based estimates.

Janardanan, R.; Maksyutov, S.; Oda, T.; Saito, M.; Kaiser, J.W.; Ganshin, A.; Stohl, A.; Matsunaga, T.; Yoshida, Y.; Yokota, T.

2016

Can floating car data help improving traffic emissions estimates?

Castell, N.; Vogt, M.; Thanh, D. Vo, Lopez-Aparicio, S.; Sundvor, I.

2016

Environmental toxins and you.

Hanssen, L.; Nøst, T. H.

2016

NILU's Environmental Management Report 2016. NILU report

Braathen, O.-A.; Marsteen, L.; Skogvoll, T. L.; Andresen, E. B.; Fjeldstad, H.

One of NILU's main goals is to study the impact of pollution and supply decision-makers with a sound scientific platform for choosing measures to reduce the negative impacts. Furthermore, it is very important for the institute to have control of the impact the institute¿s own activities may have on the environment and to reduce negative impacts as far as possible.NILU has for many years been working to improve the status of the environment and to reduce negative impacts. In order to take this one step further, it was decided that the institute should restructure the work according to a relevant environmental standard and to seek certification according to the same standard.The chosen standard is ISO 14001:2004 (Environmental management systems¿Requirements with guidance for use) and NILU achieved certification according to this standard in October 2010. This report summarizes the results of the system in 2016.

2017

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