인위적 기원 가돌리늄(gadolinium)의 해양 유입 연구 동향 및 향후 연구 방향

김인태 2021년
논문상세정보
' 인위적 기원 가돌리늄(gadolinium)의 해양 유입 연구 동향 및 향후 연구 방향' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • gadolinium
  • mri
  • naturalwater
  • rare earth elements
  • wwtp
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
259 0

0.0%

' 인위적 기원 가돌리늄(gadolinium)의 해양 유입 연구 동향 및 향후 연구 방향' 의 참고문헌

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    Kim T [2020]
  • Tracing and tracking wastewater-derived substances in freshwater lakes and reservoirs: anthropogenic gadolinium and geogenic REEs in Lake Paranoá, Brasilia
    Merschel G [2015]
  • Thermodynamic stability and kinetic inertness of MS-325, a new blood pool agent for magnetic resonance imaging
    Caravan P [2001]
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  • The Continental Crust: Its Composition and Evolution
  • Submarine groundwater discharge is an important net source of light and middle REEs to coastal waters of the Indian River Lagoon, Florida, USA
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    Kim I [2014]
  • Strategies for increasing the sensitivity of gadolinium based MRI contrast agents
    Caravan P [2006]
  • Spatial and temporal distribution of rare earth elements in the Neuse River, North Carolina
    Smith C [2018]
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    Kanazawa Y [2006]
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    McLennan SM [1989]
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    Alibo DS [1999]
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    Massari S [2013]
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    Osborne AH [2015]
  • Rare earth element cycling in a sandy subterranean estuary in Florida, USA
    Chevis DA [2015]
  • Rare earth element concentrations in the natural water reference materials (NRCC)NASS-5, CASS-4 and SLEW-3
    Lawrence MG [2007]
  • Rare earth element behavior during groundwater–seawater mixing along the Kona Coast of Hawaii
  • Radium tracing of submarine groundwater discharge (SGD) and associated nutrient fluxes in a highly-permeable bed coastal zone
    Kim G [2008]
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    Knappe A [2005]
  • Novel contrast agents for magnetic resonance imaging. Synthesis and characterization of the ligand BOPTA and its Ln (III)complexes (Ln = Gd, La, Lu). X-ray structure of disodium (TPS-9-145337286-CS)-[4-carboxy-5, 8, 11-tris (carboxymethyl)-1-phenyl-2-oxa-5, 8, 11-triazatridecan-13-oato (5-)]gadolinate (2-) in a mixture with its enantiomer
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    Sawatari H [1995]
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    Raut NM [2005]
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  • Magnetic Resonance Imaging (MRI) exams
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    Thakral C [2007]
  • Large submarine groundwater discharge (SGD) from a volcanic island
    Guebuem Kim [2003]
  • Large fluxes of rare earth elements through submarine groundwater discharge (SGD) from a volcanic island, Jeju
    Kim I [2011]
  • Lanthanide tetrad effect observed in marine environment
    Masuda A [1979]
  • Increases in anthropogenic gadolinium anomalies and rare earth element concentrations in San Francisco Bay over a 20 year record
    Hatje V [2016]
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    Zhanheng C [2011]
  • Gadolinium-DTPA as a contrast agent in MRI: initial clinical experience in 20 patients
    Carr DH [1984]
  • Gadolinium as an Emerging Microcontaminant in Water Resources: Threats and Opportunities
  • Gadolinium as a new emerging contaminant of aquatic environments
    Rogowska J [2018]
  • Gadolinium anomaly in the distributions of rare earth elements observed for coastal seawater and river waters around Nagoya City
    Zhu Y [2004]
  • Gadolinium (III) chelates as MRI contrast agents: structure, dynamics, and applications
    Caravan P [1999]
  • Dissolved rare earth elements in the eastern Indian Ocean: chemical tracers of the water masses
    Alibo DS [2004]
  • Dissolved rare earth elements in the South China Sea: geochemical characterization of the water masses
    Alibo DS [2000]
  • Dissolved indium and rare earth elements in three Japanese rivers and Tokyo Bay: evidence for anthropogenic Gd and In
    Nozaki Y [2000]
  • Determination of rare earth elements after pre-concentration using NOBIASchelate PA-1® resin: method development and application in the San Francisco Bay plume
    Hatje V [2014]
  • Determination of gadolinium in river water by SPE preconcentration and ICP-MS
  • Detection of anthropogenic gadolinium in treated wastewater in South East Queensland, Australia
    Lawrence MG [2009]
  • Currently used non-specific extracellular MR contrast media
    Bellin MF [2003]
  • Contrasting behaviour of anthropogenic gadolinium and natural rare earth elements in estuaries and the gadolinium input into the North Sea
    Kulaksız S [2007]
  • Comparison of Gd (DTPA-BMA)(Omniscan) versus Gd(HP-DO3A)(ProHance)relative to gadolinium retention in human bone tissue by inductively coupled plasma mass spectroscopy
    White GW [2006]
  • Brief of health industry, market analysis of medical device
  • Aqueous stability of gadolinium in surface waters receiving sewage treatment plant effluent, Boulder Creek, Colorado
  • Anthropogenic rare earth elements and their spatial distributions in the Han River, South Korea
    Song H [2017]
  • Anthropogenic origin of positive gadolinium anomalies in river waters
    Bau M [1996]
  • Anthropogenic gadolinium in lakes and rivers near metrocities in Korea
    Kim I [2020]
  • Anthropogenic gadolinium as a micropollutant in river waters in Pennsylvania and in Lake Erie, northeastern United States
    Bau M [2006]
  • Anthropogenic gadolinium as a microcontaminant in tap water used as drinking water in urban areas and megacities
    Kulaksız S [2011]
  • Anthropogenic gadolinium anomalies and rare earth elements in the water of Atibaia River and Anhumas Creek, Southeast Brazil
  • Anomalous gadolinium, cerium, and yttrium contents in the adige and isarco river waters and in the water of their tributaries (Provinces Trento and Bolzano/Bozen, NE Italy)
    Möller P [2003]
  • Anaphylactic shock after first exposure to gadoterate meglumine: two case reports documented by positive allergy assessment
  • Analytical artifacts associated with the chelating resin extraction of dissolved rare earth elements in natural water samples
    Kim I [2010]
  • A novel solid phase extraction method for pre-concentration of gadolinium and gadolinium based MRI contrast agents from the environment
    Raju CSK [2010]