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Annual cycle of Antarctic baseline aerosol: A benchmark for natural aerosol processes.

Fiebig, M.; Hirdman, D.; Lunder, C.R.; Ogren, J.A.; Solberg, S.; Thompson, R.L.; Stohl, A.

2014

Annual cycle of Antarctic baseline aerosol: controlled by photooxidation-limited aerosol formation.

Fiebig, M.; Hirdman, D.; Lunder, C. R.; Ogren, J. A.; Solberg, S.; Stohl, A.; Thompson, R. L.

2014

Annual cycle of background aerosol at Troll station, Antarctica. NILU F

Fiebig, M.; Lunder, C.; Solberg, S.; Stohl, A.; Hirdman, D.; Ogren, J.A.

2014

Annual cycle of background aerosol at Troll Station, Antarctica. NILU F

Fiebig, M.; Hirdman, D.; Lunder, C.R.; Ogren, J.A.; Stohl, A.

2013

Annual cycle of background aerosol at Troll Station, Antarctica. NILU PP

Fiebig, M.; Hirdman, D.; Lunder, C.R.; Ogren, J.A.; Stohl, A.

2013

Antarctic sea-ice low resonates in the ecophysiology of humpback whales

Nash, Susan M. Bengtson; Groß, Jasmin; Castrillon, Juliana; Casa, Maria Valeria; Luche, Greta Dalle; Meager, Justin James; Ghosh, Ruma; Eggebo, June; Bohlin-Nizzetto, Pernilla

The past six years have been marked by some of the most dramatic climatic events observed in the Antarctic region in recent history, commencing with the 2017 sea-ice extreme low. The Humpback Whale Sentinel Programme is a circum-polar biomonitoring program for long term surveillance of the Antarctic sea-ice ecosystem. It has previously signalled the extreme La Niña event of 2010/11, and it was therefore of interest to assess the capacity of existing biomonitoring measures under the program to detect the impacts of 2017 anomalous climatic events. Six ecophysiological markers of population adiposity, diet, and fecundity were targeted, as well as calf and juvenile mortality via stranding records. All indicators, with the exception of bulk stable isotope dietary tracers, indicated a negative trend in 2017, whilst C and N bulk stable isotopes appeared to indicate a lag phase resulting from the anomalous year. The collation of multiple biochemical, chemical, and observational lines of evidence via a single biomonitoring platform provides comprehensive information for evidence-led policy in the Antarctic and Southern Ocean region.

Elsevier

2023

Antarctica Sampling and Logistic Hurdles for Cyclic Volatile Methylsiloxanes (cVMS)

Durham, Jeremy; McNett, Debra Ann; Irvine, Mark; Sauermilch, Isabel; Seston, Rita M.; Gerhards, Reinhard; Bialik, Robert; Bohlin-Nizzetto, Pernilla; Mateev, Dragomir; Dykyi, Evgen

2025

Anthropogenic carbon monoxide emissions during 2014-2020 in China constrained by in-situ observations

Jia, Mengwei; Jiang, Fei; Evangeliou, Nikolaos; Eckhardt, Sabine; Stohl, Andreas; Ding, Aijun; Huang, Xin; Feng, Shuzhuang; He, Wei; Wang, Jun; Wang, Hengmao; Wu, Mousong; Ju, Weimin

2024

Anthropogenic Carbon Monoxide Emissions During 2014–2020 in China Constrained by In Situ Ground Observations

Jia, Mengwei; Jiang, Fei; Evangeliou, Nikolaos; Eckhardt, Sabine; Stohl, Andreas; Huang, Xin; Sheng, Yang; Feng, Shuzhuang; He, Wei; Wang, Hengmao; Wu, Mousong; Ju, Weimin; Ding, Aijun

American Geophysical Union (AGU)

2025

Anthropogenic compounds in the northernmost Atlantic puffin population

Underwood, Arin K.P.; Descamps, Sebastien; Sagerup, Kjetil; Herzke, Dorte; Gabrielsen, Geir W.

Contamination by organic pollutants, even in remote regions, poses a growing threat to wildlife, including seabirds. However, for many seabirds breeding at high latitudes, both the extent and nature of contaminant exposure remain largely unknown. This study aimed to identify the persistent organic pollutants (POPs) present in the Svalbard Atlantic puffin Fratercula arctica at the northern limit of its range. We also compare contaminant concentrations with those found in other species breeding on Svalbard and in puffin colonies further south. The Svalbard puffins were found to be contaminated by organochlorine pesticides (OCPs), polychlorinated biphenyls (PCBs), and per- and polyfluoroalkyl substances (PFAS). No significant sex difference was found. OCPs, PCBs and/or PFASs concentrations in Svalbard puffins were comparable to those of Brünnich's guillemots Uria lomvia, black guillemots Cepphus grylle, and/or little auks Alle alle, but lower than in glaucous gulls Larus hyperboreus. PFAS concentrations were also lower than in black-legged kittiwakes Rissa tridactyla. OCP and PCB concentrations were lower on Svalbard than in puffin colonies further south. This study is the first to document PFAS concentrations in puffins, therefore it remains unknown whether PFAS levels were also lower on Svalbard than further south. These comparisons should be interpreted with caution, as data for different species or colonies were collected in different years, and contaminant levels vary over time. The current contaminant concentrations indicate that Svalbard puffins are still at low risk for biological effects, but continued monitoring is needed to assess potential future changes.

Elsevier

2025

Anthropogenic, Direct Pressures on Coastal Wetlands

Newton, Alice; Icely, John; Cristina, Sónia; Perillo, Gerardo M.; Turner, R. Eugene; Ashan, Dewan; Cragg, Simon; Luo, Yongming; Tu, Chen; Li, Yuan; Zhang, Haibo; Ramesh, Ramachandran; Forbes, Donald L.; Solidoro, Cosimo; Béjaoui, Béchir; Gao, Shu; Pastres, Roberto; Kelsey, Heath; Taillie, Dylan; Nhan, Nguyen; Brito, Ana C; de Lima, Ricardo; Kuenzer, Claudia

Coastal wetlands, such as saltmarshes and mangroves that fringe transitional waters, deliver important ecosystem services that support human development. Coastal wetlands are complex social-ecological systems that occur at all latitudes, from polar regions to the tropics. This overview covers wetlands in five continents. The wetlands are of varying size, catchment size, human population and stages of economic development. Economic sectors and activities in and around the coastal wetlands and their catchments exert multiple, direct pressures. These pressures affect the state of the wetland environment, ecology and valuable ecosystem services. All the coastal wetlands were found to be affected in some ways, irrespective of the conservation status. The main economic sectors were agriculture, animal rearing including aquaculture, fisheries, tourism, urbanization, shipping, industrial development and mining. Specific human activities include land reclamation, damming, draining and water extraction, construction of ponds for aquaculture and salt extraction, construction of ports and marinas, dredging, discharge of effluents from urban and industrial areas and logging, in the case of mangroves, subsistence hunting and oil and gas extraction. The main pressures were loss of wetland habitat, changes in connectivity affecting hydrology and sedimentology, as well as contamination and pollution. These pressures lead to changes in environmental state, such as erosion, subsidence and hypoxia that threaten the sustainability of the wetlands. There are also changes in the state of the ecology, such as loss of saltmarsh plants and seagrasses, and mangrove trees, in tropical wetlands. Changes in the structure and function of the wetland ecosystems affect ecosystem services that are often underestimated. The loss of ecosystem services impacts human welfare as well as the regulation of climate change by coastal wetlands. These cumulative impacts and multi-stressors are further aggravated by indirect pressures, such as sea-level rise.

Frontiers Media S.A.

2020

Anti-parasite treatment and blood biochemistry in raptor nestlings.

Hanssen, S. A.; Sonne, C.; Bustnes, J. O.; Schnug, L.; Bourgeon, S.; Ballesteros, M.; Eulaers, I.; Moum, T.; Johnsen, T. V.; Kjelgaard-Hansen, M.; Herzke, D.; Jaspers, V. L. B.; Covaci, A.; Eens, M.; Halley, D. J.; Erikstad, K. E.; Ims, R. A.

2017

Antioxidant responses in relation to persistent organic pollutants and metals in a low- and a high-exposure population of seabirds.

Fenstad, A.A.; Moody, A.J.; Ost, M.; Jaatinen, K.; Bustnes, J.O.; Moe, B.; Hanssen, S.A.; Gabrielsen, K.M.; Herzke, D.; Lierhagen, S.; Jenssen, B.M.; Krokje, A.

2016

Antioxidative state of workers exposed to asbestos.

Volkovová, K.; Mislanová, C.; Staruchová, M.; Spustová, V.; Wsólová, L.; Bonassi, S.; Ceppi, M.; Dusinska, M.

2010

Antiparasite treatments reduce humoral immunity and impact oxidative status in raptor nestlings.

Hanssen, S.A.; Bustnes, J.O.; Schnug, L.; Bourgeon, S.; Johnsen, T.V.; Ballesteros, M.; Sonne, C.; Herzke, D.; Eulaers, I.; Jaspers, V.L.B.; Covaci, A.; Eens, M.; Halley, D.J.; Moum, T.; Ims, R.A.; Erikstad, K.E.

2013

2001

APNEE-TU field trials results. NILU F

Endregard, G.

2003

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