Assessment and identification of nitrogen pollution sources in the Cheongmi River with intensive livestock farming areas, Korea
暂无分享,去创建一个
Min-Seob Kim | E. Chung | Hong-Duck Ryu | Yong Seok Kim | Sun-jung Kim | Jae-kwan Lee | Deok-Woo Kim | Un-il Baek
[1] R. Kudela,et al. Rapid nitrification of wastewater ammonium near coastal ocean outfalls, Southern California, USA , 2017 .
[2] Jaewoong Lee,et al. Stable isotope on the evaluation of water quality in the presence of WWTPs in rivers , 2016, Environmental Science and Pollution Research.
[3] Yizhi Sheng,et al. Enrichment and Sources of Nitrogen in Groundwater in the Turpan-Hami Area, Northwestern China , 2016, Exposure and Health.
[4] T. Lan,et al. Water quality assessment and source identification of water pollution in the Banchengzi reservoir, Beijing, China , 2016 .
[5] Y. Ouyang,et al. Removal of cadmium from aqueous solution using waste shells of golden apple snail , 2016 .
[6] G. Walsh,et al. Identification of Groundwater Nitrate Contamination from Explosives Used in Road Construction: Isotopic, Chemical, and Hydrologic Evidence. , 2016, Environmental science & technology.
[7] Oene Oenema,et al. Nitrogen excretion factors of livestock in the European Union: a review. , 2015, Journal of the science of food and agriculture.
[8] G. Jona-Lasinio,et al. Stable isotope-based statistical tools as ecological indicator of pollution sources in Mediterranean transitional water ecosystems , 2015 .
[9] G. Ma,et al. Nitrogen pollution characteristics and source analysis using the stable isotope tracing method in Ashi River, northeast China , 2015, Environmental Earth Sciences.
[10] H. Nadais,et al. Nitrogen and phosphorus discharge of animal origin in the Baixo Vouga: a spatial data analysis. , 2014, The Science of the total environment.
[11] S. Schiff,et al. Examining the fate of WWTP effluent nitrogen using δ15N–NH4+, δ15N–NO3− and δ15N of submersed macrophytes , 2014, Aquatic Sciences.
[12] F. Cacciatore,et al. Stable carbon and nitrogen isotope ratios as tools to evaluate the nature of particulate organic matter in the Venice lagoon , 2013 .
[13] Takahiro Hosono,et al. The use of δ15N and δ18O tracers with an understanding of groundwater flow dynamics for evaluating the origins and attenuation mechanisms of nitrate pollution. , 2013, Water research.
[14] P. Jha,et al. Factors Affecting Nutrient Concentration and Stable Carbon and Nitrogen Isotope Ratio of Particulate Organic Matter in the Ishikari River System, Japan , 2013, Water, Air, & Soil Pollution.
[15] J. Tobin,et al. The potential for a suite of isotope and chemical markers to differentiate sources of nitrate contamination: a review. , 2012, Water research.
[16] R. Ishii,et al. Variation in nitrogen isotopic composition in the Selenga river watershed, Mongolia , 2012, Limnology.
[17] J. Aboal,et al. Measurement of δ15N in macroalgae stored in an environmental specimen bank for regional scale monitoring of eutrophication in coastal areas , 2011 .
[18] Yu Tao,et al. Current status of agricultural and rural non-point source Pollution assessment in China. , 2010, Environmental pollution.
[19] J. A. Alburquerque,et al. Composting of animal manures and chemical criteria for compost maturity assessment. A review. , 2009, Bioresource technology.
[20] M. V. Vander Zanden,et al. Nitrogen stable isotopes in streams: effects of agricultural sources and transformations. , 2009, Ecological applications : a publication of the Ecological Society of America.
[21] B. De Baets,et al. Present limitations and future prospects of stable isotope methods for nitrate source identification in surface- and groundwater. , 2009, Water research.
[22] C. Kendall,et al. Identifying sources of nitrogen to Hanalei Bay, Kauai, utilizing the nitrogen isotope signature of macroalgae. , 2007, Environmental science & technology.
[23] M. Hirata,et al. Nitrate concentration of groundwater and its association with livestock farming in Miyakonojo Basin, southern Kyushu, Japan , 2006 .
[24] H. Valett,et al. Nitrification rates in a headwater stream: influences of seasonal variation in C and N supply , 2005, Journal of the North American Benthological Society.
[25] G. Jennings,et al. Low-level nitrate export from confined dairy farming detected in North Carolina streams using δ15N , 2003 .
[26] T. Okino,et al. Use of nitrogen stable isotope ratio of periphyton for monitoring nitrogen sources in a river system. , 2002, Water science and technology : a journal of the International Association on Water Pollution Research.
[27] A. J. Smit,et al. Use of δ15N signatures of different functional forms of macroalgae and filter-feeders to reveal temporal and spatial patterns in sewage dispersal , 2002 .
[28] S. Yun,et al. Nitrate contamination of alluvial groundwaters in the Nakdong River basin, Korea , 2002 .
[29] H. Ro,et al. Evaluation of nitrate contamination sources of unconfined groundwater in the North Han River basin of Korea using nitrogen isotope ratios , 2002 .
[30] G. Lamberti,et al. Effect of dissolved organic carbon quality on microbial decomposition and nitrification rates in stream sediments , 2002 .
[31] R. Gilkes,et al. Phosphorus Transformations and Their Relationships with Calcareous Soil Properties of Southern Western Australia , 1999 .
[32] N. Ostle,et al. Tracing nitrogen derived from slurry in earthworms using 15N/14N stable isotope ratios at natural abundances , 1999 .
[33] R. Spalding,et al. Nitrogen isotope indicators of seasonal source variability to groundwater , 1997 .
[34] P. Dennis,et al. A comparison of methods for nitrogen isotope analysis of groundwater , 1996 .
[35] L. Wassenaar. Evaluation of the origin and fate of nitrate in the Abbotsford Aquifer using the isotopes of15N and18O in NO3 , 1995 .
[36] N. Hue. EFFECTS OF ORGANIC ACIDS/ANIONS ON P SORPTION AND PHYTOAVAILABILITY IN SOILS WITH DIFFERENT MINERALOGIES , 1991 .
[37] E. S. Jensen. Evaluation of automated analysis of 15N and total N in plant material and soil , 1991, Plant and Soil.
[38] A. Mariotti,et al. 15N isotope biogeochemistry and natural denitrification process in groundwater: Application to the chalk aquifer of northern France , 1988 .
[39] C. Kreitler. Nitrogen-isotope ratio studies of soils and groundwater nitrate from alluvial fan aquifers in Texas☆ , 1979 .
[40] Roy F. Spalding,et al. Sources and Concentrations of Nitrate‐Nitrogen in Ground Water of the Central Platte Region, Nebraskaa , 1979 .
[41] G. Shearer,et al. Fertilizer Nitrogen: Contribution to Nitrate in Surface Water in a Corn Belt Watershed , 1971, Science.
[42] P. Williams,et al. A multi-stable isotope framework to understand eutrophication in aquatic ecosystems. , 2016, Water research.
[43] Y. Tao,et al. Effect of organic carbon on nitrification efficiency and community composition of nitrifying biofilms. , 2009, Journal of environmental sciences.
[44] J. Schepers,et al. Controlling nitrate leaching in irrigated agriculture. , 2001, Journal of environmental quality.
[45] A. E. Greenberg,et al. Standard methods for the examination of water and wastewater : supplement to the sixteenth edition , 1988 .
[46] T. Heaton. Isotopic studies of nitrogen pollution in the hydrosphere and atmosphere: A review , 1986 .
[47] J. Brockwell,et al. The natural abundance of , 1985 .
[48] S. Waring,et al. The natural abundance of 15N in the soil water system of a small catchment area , 1977 .