Deoxygenation turns the coastal Red Sea lagoons into sources of nitrous oxide.
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[1] Ü. Mander,et al. Integrated isotope and microbiome analysis indicates dominance of denitrification in N2O production after rewetting of drained fen peat , 2022, Biogeochemistry.
[2] L. Hou,et al. Chlorate as a comammox Nitrospira specific inhibitor reveals nitrification and N2O production activity in coastal wetland , 2022, Soil Biology and Biochemistry.
[3] S. Riya,et al. Nonlinear pattern and algal dual-impact in N2O emission with increasing trophic levels in shallow lakes. , 2021, Water research.
[4] N. Chari,et al. The world’s largest coastal deoxygenation zone is not anthropogenically driven , 2021, Environmental Research Letters.
[5] Soonho Hwangbo,et al. Integrated Model for Understanding N2O Emissions from Wastewater Treatment Plants: A Deep Learning Approach. , 2021, Environmental science & technology.
[6] S. Riya,et al. Temperature and oxygen level determine N2O respiration activities of heterotrophic N2O‐reducing bacteria: Biokinetic study , 2020, Biotechnology and bioengineering.
[7] V. Sanil Kumar,et al. The maxima in northerly wind speeds and wave heights over the Arabian Sea, the Arabian/Persian Gulf and the Red Sea derived from 40 years of ERA5 data , 2020, Climate Dynamics.
[8] M. Orif. Environmental aspects of Al-Shabab and Al-Arbaeen, two coastal lagoons in the eastern Red Sea coast , 2020 .
[9] Ü. Mander,et al. Short-term flooding increases CH4 and N2O emissions from trees in a riparian forest soil-stem continuum , 2020, Scientific Reports.
[10] De-ti Xie,et al. Nitrous oxide produced directly from ammonium, nitrate and nitrite during nitrification and denitrification. , 2020, Journal of hazardous materials.
[11] Xiao Ma,et al. A multi-year observation of nitrous oxide at the Boknis Eck Time Series Station in the Eckernförde Bay (southwestern Baltic Sea) , 2019, Biogeosciences.
[12] C. Yoshikawa,et al. Response of N2O production rate to ocean acidification in the western North Pacific , 2019, Nature Climate Change.
[13] B. Jones,et al. Nitrous oxide in the northern Gulf of Aqaba and the central Red Sea , 2019, Deep Sea Research Part II: Topical Studies in Oceanography.
[14] P R Jayachandran,et al. Nitrous oxide flux from a Tropical estuarine system (Cochin estuary, India) , 2019, Regional Studies in Marine Science.
[15] Ad Stoffelen,et al. Characterizing ERA-Interim and ERA5 surface wind biases using ASCAT , 2019, Ocean Science.
[16] B. Seibel,et al. Declining oxygen in the global ocean and coastal waters , 2018, Science.
[17] Tina Sanders,et al. High Resolution Measurements of Nitrous Oxide (N2O) in the Elbe Estuary , 2017, Front. Mar. Sci..
[18] E. Dimitriou,et al. Nutrient flows and related impacts between a Mediterranean river and the associated coastal area , 2017 .
[19] S. Naqvi,et al. Upwelling intensity modulates N2O concentrations over the western Indian shelf , 2016 .
[20] Jun Yu Li,et al. Nitrous oxide emissions from river network with variable nitrogen loading in Tianjin, China , 2015 .
[21] M. Reis,et al. Determining the footprint of sewage discharges in a coastal lagoon in South-Western Europe. , 2015, Marine pollution bulletin.
[22] R. Schmitz,et al. Massive nitrous oxide emissions from the tropical South Pacific Ocean , 2015 .
[23] Rik Wanninkhof,et al. Relationship between wind speed and gas exchange over the ocean revisited , 2014 .
[24] A. Turki,et al. Input and dispersion of nutrients from the Jeddah Metropolitan Area, Red Sea. , 2014, Marine pollution bulletin.
[25] A. Rifaat,et al. Environmental status and nutrients and dissolved organic carbon budget of two Saudi Arabian Red Sea coastal inlets: a snapshot statement , 2015, Environmental Earth Sciences.
[26] D. Hutchins,et al. Microbial biogeochemistry of coastal upwelling regimes in a changing ocean , 2013 .
[27] V. Sarma,et al. Contribution of N2O emissions to the atmosphere from Indian monsoonal estuaries , 2013 .
[28] M. Burford,et al. Effect of sewage nutrients on algal production, biomass and pigments in tropical tidal creeks. , 2012, Marine pollution bulletin.
[29] S. Schiff,et al. Dependence of riverine nitrous oxide emissions on dissolved oxygen levels , 2012 .
[30] Dániel Koch,et al. Sources, loads and dispersion of dissolved inorganic nutrients in Paranaguá Bay , 2012, Ocean Dynamics.
[31] Y. Shaban,et al. Evaluation of the Adequacy of a Rehabilitation Programme, Implemented in Two Red Sea Coastal Lagoons, Using the Hydrological Characteristics of Surface Water@@@تقييم ملائمة مشروع إعادة تأهيل بحيرتين على الساحل الشرقي للبحر الأحمر باستخدام الخواص الهيدرولوجية للمياه السطحية , 2011 .
[32] K. Casciotti,et al. Biogeochemical controls and isotopic signatures of nitrous oxide production by a marine ammonia-oxidizing bacterium , 2010 .
[33] W. Shuster,et al. Nitrous oxide emissions from a large, impounded river: the Ohio River. , 2010, Environmental science & technology.
[34] M. Scranton,et al. Marine hypoxia/anoxia as a source of CH4 and N2O. , 2010 .
[35] A. Ravishankara,et al. Nitrous Oxide (N2O): The Dominant Ozone-Depleting Substance Emitted in the 21st Century , 2009, Science.
[36] N. Yoshida,et al. Denitrification and nitrous oxide cycling within the upper oxycline of the eastern tropical South Pacific oxygen minimum zone , 2009 .
[37] Lukas H. Meyer,et al. Summary for Policymakers , 2022, The Ocean and Cryosphere in a Changing Climate.
[38] L. Farías,et al. Seasonal cycle of N2O vertical distribution and air–sea fluxes over the continental shelf waters off central Chile (∼36°S) , 2007 .
[39] T. Wilbanks,et al. Contribution of Working Group II to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change , 2007 .
[40] R. Upstill‐Goddard. Air–sea gas exchange in the coastal zone , 2006 .
[41] Hermann W. Bange,et al. Nitrous oxide and methane in European coastal waters , 2006 .
[42] Jing Zhang,et al. Distributions, sources and atmospheric fluxes of nitrous oxide in Jiaozhou Bay , 2006 .
[43] L. Neretin. Past and present water column anoxia , 2006 .
[44] B. Ward,et al. Phylogenetic analysis of nitric oxide reductase gene homologues from aerobic ammonia-oxidizing bacteria. , 2005, FEMS microbiology ecology.
[45] L. Codispoti,et al. Suboxic respiration in the oceanic water column , 2005 .
[46] T. Stocker,et al. High‐resolution Holocene N2O ice core record and its relationship with CH4 and CO2 , 2002 .
[47] M. A. Sayed. Distribution and Behavior of Dissolved Species of Nitrogen and Phosphorus in Two Coastal Red Sea Lagoons Receiving Domestic Sewage , 2002 .
[48] M. A. Sayed. Factors Controlling the Distribution and Behaviour of Organic Carbon and Trace Elements in a Heavily Sewage Polluted Coastal Envoironment , 2002 .
[49] R. Harrison,et al. Hypernutrified estuaries as sources of N2O emission to the atmosphere: the estuary of the River Colne, Essex, UK , 1998 .
[50] O. El-Rayis,et al. Environmental Conditions of Two Red Sea Coastal Lagoons in Jeddah. 1. Hydrochemistry@@@الظروف البيئية لهورين في جدة على ساحل البحر الاحمر، 1-هيدروكيميائيتهما , 1998 .
[51] M. Andreae,et al. Nitrous oxide in coastal waters , 1996 .
[52] M. D. Kumar,et al. Nitrous oxide in the western Bay of Bengal , 1994 .
[53] C. Law,et al. Nitrous oxide: Estuarine sources and atmospheric flux , 1992 .
[54] Louis I. Gordon,et al. Oxygen solubility in seawater : better fitting equations , 1992 .
[55] L. Merlivat,et al. Air-Sea Gas Exchange Rates: Introduction and Synthesis , 1986 .
[56] R. Weiss,et al. Nitrous oxide solubility in water and seawater , 1980 .
[57] A. Hooper,et al. Hydroxylamine oxidoreductase of Nitrosomonas. Production of nitric oxide from hydroxylamine. , 1979, Biochimica et biophysica acta.
[58] P. Crutzen. The influence of nitrogen oxides on the atmospheric ozone content , 1970 .
[59] Joel D. Cline,et al. SPECTROPHOTOMETRIC DETERMINATION OF HYDROGEN SULFIDE IN NATURAL WATERS1 , 1969 .