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(WKP)Q57416282
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0000-0002-1138-2556
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orcid
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56331511900
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scopus
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(OCoLC)Q57416282
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Jia-Zhong Zhang
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1
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Jia-Zhong Zhang
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researcher ORCID id 0000-0002-1138-2556
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Jia-Zhong Zhang
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oceanograaf
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nl
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670
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‡a
Author's A portable analyser for the measurement of ammonium in marine waters
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670
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‡a
Author's A simple, effective mi xing chamber used in conjunction with a syringe pump for flow analysis
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670
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‡a
Author's A simplified resorcinol method for direct spectrophotometric determination of nitrate in seawater
|
670
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‡a
Author's A simulation study of the growth of benthic microalgae following the decline of a surface phytoplankton bloom
|
670
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‡a
Author's Abundance and Chemical Speciation of Phosphorus in Sediments of the Mackenzie River Delta, the Chukchi Sea and the Bering Sea: Importance of Detrital Apatite
|
670
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|
‡a
Author's Adsorption and Desorption of Phosphate on Calcite and Aragonite in Seawater
|
670
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|
‡a
Author's An autonomous batch analyzer for the determination of trace ammonium in natural waters using fluorometric detection
|
670
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|
‡a
Author's An estimate of diapycnal nutrient fluxes to the euphotic zone in the Florida Straits
|
670
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|
‡a
Author's Ascorbic acid as a reductant for extraction of iron-bound phosphorus in soil samples: a method comparison study
|
670
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|
‡a
Author's Automated analysis of nanomolar concentrations of phosphate in natural waters with liquid waveguide
|
670
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|
‡a
Author's Avoiding spurious correlation in analysis of chemical kinetic data
|
670
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|
|
‡a
Author's Carbon dynamics of Florida Bay: spatiotemporal patterns and biological control.
|
670
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‡a
Author's Carbonate system in the waters near the Galapagos Islands
|
670
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‡a
Author's Changes in Ocean Heat, Carbon Content, and Ventilation: A Review of the First Decade of GO-SHIP Global Repeat Hydrography.
|
670
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‡a
Author's Comment on “A Kinetic Study of the Oxidation of S
|
670
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‡a
Author's Comment on “A Kinetic Study of the Oxidation of S(IV) in Seawater”
|
670
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‡a
Author's Comparison of Open Tubular Cadmium Reactor and Packed Cadmium Column in Automated Gas-Segmented Continuous Flow Nitrate Analysis
|
670
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‡a
Author's Continuous colorimetric determination of trace ammonium in seawater with a long-path liquid waveguide capillary cell
|
670
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|
‡a
Author's Continuous Flow Analysis of Phosphate in Natural Waters Using Hydrazine as a Reductant
|
670
|
|
|
‡a
Author's Control of phosphorus concentration through adsorption and desorption in shallow groundwater of subtropical carbonate estuary
|
670
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|
|
‡a
Author's Correction to “Effect of Temperature and Salinity on Phosphate Sorption on Marine Sediments”
|
670
|
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|
‡a
Author's Current Wet Persulfate Digestion Method Considerably Underestimates Total Phosphorus Content in Natural Waters
|
670
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|
‡a
Author's Effect of Temperature and Salinity on Phosphate Sorption on Marine Sediments
|
670
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|
|
‡a
Author's Effect of thawing condition on the recovery of reactive silicic acid from frozen natural water samples
|
670
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|
‡a
Author's Enhanced new production observed from the diurnal cycle of nitrate in an oligotrophic anticyclonic eddy
|
670
|
|
|
‡a
Author's Enhanced Sensitivity in Flow Injection Analysis Using a Long Pathlength Liquid Waveguide Capillary Flow Cell for Spectrophotometric Detection
|
670
|
|
|
‡a
Author's Gas-segmented continuous flow analysis of iron in water with a long liquid waveguide capillary flow cell
|
670
|
|
|
‡a
Author's Global estimates of net carbon production in the nitrate-depleted tropical and subtropical oceans
|
670
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|
|
‡a
Author's Hurricane Katrina induced nutrient runoff from an agricultural area to coastal waters in Biscayne Bay, Florida
|
670
|
|
|
‡a
Author's Hydrography, nutrients, and carbon pools in the Pacific sector of the Southern Ocean: Implications for carbon flux
|
670
|
|
|
‡a
Author's Hydrolysis of glucose-6-phosphate in aged, acid-forced hydrolysed nanomolar inorganic iron solutions—an inorganic biocatalyst?
|
670
|
|
|
‡a
Author's Investigation of metal sulfide complexes in sea water using cathodic stripping square wave voltammetry
|
670
|
|
|
‡a
Author's Kinetic spectrophotometric determination of submicromolar orthophosphate by molybdate reduction
|
670
|
|
|
‡a
Author's Laboratory glassware as a contaminant in silicate analysis of natural water samples
|
670
|
|
|
‡a
Author's Large, non-Redfieldian drawdown of nutrients and carbon in the extratropical North Atlantic Ocean (46°N): Evidence for dinitrogen fixation?
|
670
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|
|
‡a
Author's Liquid-waveguide spectrophotometric measurement of low silicate in natural waters.
|
670
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|
‡a
Author's Long-term storage of natural water samples for dissolved oxygen determination
|
670
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|
‡a
Author's Methyl bromide cycling in a warm-core eddy of the North Atlantic Ocean
|
670
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|
|
‡a
Author's Neutral persulfate digestion at sub-boiling temperature in an oven for total dissolved phosphorus determination in natural waters
|
670
|
|
|
‡a
Author's Ocean acidification along the Gulf Coast and East Coast of the USA
|
670
|
|
|
‡a
Author's Optimization of performance and minimization of silicate interference in continuous flow phosphate analysis.
|
670
|
|
|
‡a
Author's Phosphorus sorption on marine carbonate sediment: Phosphonate as Model Organic Compounds
|
670
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‡a
Author's Potential availability of sedimentary phosphorus to sediment resuspension in Florida Bay
|
670
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‡a
Author's Primary productivity, new productivity, and their relation to carbon flux during two Southern Ocean Gas Exchange tracer experiments
|
670
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|
‡a
Author's Rapid and Intense Phosphate Desorption Kinetics When Saltwater Intrudes into Carbonate Rock
|
670
|
|
|
‡a
Author's Rate of phosphoantimonylmolybdenum blue complex formation in acidic persulfate digested sample matrix for total dissolved phosphorus determination: importance of post-digestion pH adjustment
|
670
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|
‡a
Author's Relative importance of solid-phase phosphorus and iron on the sorption behavior of sediments.
|
670
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|
|
‡a
Author's Saltwater intrusion as potential driver of phosphorus release from limestone bedrock in a coastal aquifer
|
670
|
|
|
‡a
Author's Shipboard automated determination of trace concentrations of nitrite and nitrate in oligotrophic water by gas-segmented continuous flow analysis with a liquid waveguide capillary flow cell
|
670
|
|
|
‡a
Author's Shipboard fluorometric flow analyzer for high-resolution underway measurement of ammonium in seawater.
|
670
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|
|
‡a
Author's Spatial variation in sediment-water exchange of phosphorus in Florida Bay: AMP as a model organic compound
|
670
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|
‡a
Author's Speciation and fluxes of nutrients (N, P, Si) from the upper Yukon River
|
670
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|
|
‡a
Author's Surfactant-sensitized malachite green method for trace determination of orthophosphate in aqueous solution
|
670
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‡a
Author's Temporal Trends in Deep Ocean Redfield Ratios
|
670
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‡a
Author's The chemistry of the anoxic waters in the Cariaco Trench
|
670
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‡a
Author's The ionization of sulfurous acid in Na?Mg?Cl solutions at 25�C
|
670
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‡a
Author's The pK 2 * for the dissociation of H2SO3 in NaCl solutions with added Ni2+, Co2+, Mn2+, and Cd2+ at 25�C
|
670
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‡a
Author's The products from the oxidation of H2S in seawater
|
670
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‡a
Author's The rate of sulfite oxidation in seawater
|
670
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‡a
Author's The solubility of SO2 and the dissociation of H2SO3 in NaCl solutions
|
670
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‡a
Author's The use of buffers to measure the pH of seawater
|
670
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‡a
Author's The use of pH and buffer intensity to quantify the carbon cycle in the ocean
|
670
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‡a
Author's Titration alkalinity of seawater
|
670
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‡a
Author's Underway monitoring of nanomolar nitrate plus nitrite and phosphate in oligotrophic seawater
|
670
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‡a
Author's Variability in sinking fluxes and composition of particle-bound phosphorus in the Xisha area of the northern South China Sea
|
909
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‡a
(scopus) 56331511900
‡9
1
|
909
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‡a
(orcid) 0000000211382556
‡9
1
|
919
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‡a
chemistryoftheanoxicwatersinthecariacotrench
‡A
The chemistry of the anoxic waters in the Cariaco Trench
‡9
1
|
919
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|
‡a
variabilityinsinkingfluxesandcompositionofparticleboundphosphorusinthexishaareaofthenorthernsouthchinasea
‡A
Variability in sinking fluxes and composition of particle-bound phosphorus in the Xisha area of the northern South China Sea
‡9
1
|
919
|
|
|
‡a
temporaltrendsindeepoceanredfieldratios
‡A
Temporal Trends in Deep Ocean Redfield Ratios
‡9
1
|
919
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‡a
potentialavailabilityofsedimentaryphosphorustosedimentresuspensioninfloridabay
‡A
Potential availability of sedimentary phosphorus to sediment resuspension in Florida Bay
‡9
1
|
919
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‡a
ionizationofsulfurousacidinnamg150solutionsat25100
‡A
The ionization of sulfurous acid in Na?Mg?Cl solutions at 25�C
‡9
1
|
919
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‡a
underwaymonitoringofnanomolarnitrateplusnitriteandphosphateinoligotrophicseawater
‡A
Underway monitoring of nanomolar nitrate plus nitrite and phosphate in oligotrophic seawater
‡9
1
|
919
|
|
|
‡a
surfactantsensitizedmalachitegreenmethodfortracedeterminationoforthophosphateinaqueoussolution
‡A
Surfactant-sensitized malachite green method for trace determination of orthophosphate in aqueous solution
‡9
1
|
919
|
|
|
‡a
enhancednewproductionobservedfromthediurnalcycleofnitrateinanoligotrophicanticycloniceddy
‡A
Enhanced new production observed from the diurnal cycle of nitrate in an oligotrophic anticyclonic eddy
‡9
1
|
919
|
|
|
‡a
methylbromidecyclinginawarmcoreeddyofthenorthatlanticocean
‡A
Methyl bromide cycling in a warm-core eddy of the North Atlantic Ocean
‡9
1
|
919
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|
|
‡a
phosphorussorptiononmarinecarbonatesedimentphosphonateasmodelorganiccompounds
‡A
Phosphorus sorption on marine carbonate sediment: Phosphonate as Model Organic Compounds
‡9
1
|
919
|
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|
‡a
rateofphosphoantimonylmolybdenumbluecomplexformationinacidicpersulfatedigestedsamplematrixfortotaldissolvedphosphorusdeterminationimportanceofpostdigestionphadjustment
‡A
Rate of phosphoantimonylmolybdenum blue complex formation in acidic persulfate digested sample matrix for total dissolved phosphorus determination: importance of post-digestion pH adjustment
‡9
1
|
919
|
|
|
‡a
shipboardfluorometricflowanalyzerforhighresolutionunderwaymeasurementofammoniuminseawater
‡A
Shipboard fluorometric flow analyzer for high-resolution underway measurement of ammonium in seawater.
‡9
1
|
919
|
|
|
‡a
rateofsulfiteoxidationinseawater
‡A
The rate of sulfite oxidation in seawater
‡9
1
|
919
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|
‡a
titrationalkalinityofseawater
‡A
Titration alkalinity of seawater
‡9
1
|
919
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‡a
spatialvariationinsedimentwaterexchangeofphosphorusinfloridabayampasamodelorganiccompound
‡A
Spatial variation in sediment-water exchange of phosphorus in Florida Bay: AMP as a model organic compound
‡9
1
|
919
|
|
|
‡a
speciationandfluxesofnutrientsnpsifromtheupperyukonriver
‡A
Speciation and fluxes of nutrients (N, P, Si) from the upper Yukon River
‡9
1
|
919
|
|
|
‡a
currentwetpersulfatedigestionmethodconsiderablyunderestimatestotalphosphoruscontentinnaturalwaters
‡A
Current Wet Persulfate Digestion Method Considerably Underestimates Total Phosphorus Content in Natural Waters
‡9
1
|
919
|
|
|
‡a
effectofthawingconditionontherecoveryofreactivesilicicacidfromfrozennaturalwatersamples
‡A
Effect of thawing condition on the recovery of reactive silicic acid from frozen natural water samples
‡9
1
|
919
|
|
|
‡a
gassegmentedcontinuousflowanalysisofironinwaterwithalongliquidwaveguidecapillaryflowcell
‡A
Gas-segmented continuous flow analysis of iron in water with a long liquid waveguide capillary flow cell
‡9
1
|
919
|
|
|
‡a
longtermstorageofnaturalwatersamplesfordissolvedoxygendetermination
‡A
Long-term storage of natural water samples for dissolved oxygen determination
‡9
1
|
919
|
|
|
‡a
neutralpersulfatedigestionatsubboilingtemperatureinanovenfortotaldissolvedphosphorusdeterminationinnaturalwaters
‡A
Neutral persulfate digestion at sub-boiling temperature in an oven for total dissolved phosphorus determination in natural waters
‡9
1
|
919
|
|
|
‡a
optimizationofperformanceandminimizationofsilicateinterferenceincontinuousflowphosphateanalysis
‡A
Optimization of performance and minimization of silicate interference in continuous flow phosphate analysis.
‡9
1
|
919
|
|
|
‡a
hydrolysisofglucose6phosphateinagedacidforcedhydrolysednanomolarinorganicironsolutionsaninorganicbiocatalyst
‡A
Hydrolysis of glucose-6-phosphate in aged, acid-forced hydrolysed nanomolar inorganic iron solutions—an inorganic biocatalyst?
‡9
1
|
919
|
|
|
‡a
rapidandintensephosphatedesorptionkineticswhensaltwaterintrudesintocarbonaterock
‡A
Rapid and Intense Phosphate Desorption Kinetics When Saltwater Intrudes into Carbonate Rock
‡9
1
|
919
|
|
|
‡a
relativeimportanceofsolidphasephosphorusandirononthesorptionbehaviorofsediments
‡A
Relative importance of solid-phase phosphorus and iron on the sorption behavior of sediments.
‡9
1
|
919
|
|
|
‡a
shipboardautomateddeterminationoftraceconcentrationsofnitriteandnitrateinoligotrophicwaterbygassegmentedcontinuousflowanalysiswithaliquidwaveguidecapillaryflowcell
‡A
Shipboard automated determination of trace concentrations of nitrite and nitrate in oligotrophic water by gas-segmented continuous flow analysis with a liquid waveguide capillary flow cell
‡9
1
|
919
|
|
|
‡a
largenonredfieldiandrawdownofnutrientsandcarbonintheextratropicalnorthatlanticocean46nevidencefordinitrogenfixation
‡A
Large, non-Redfieldian drawdown of nutrients and carbon in the extratropical North Atlantic Ocean (46°N): Evidence for dinitrogen fixation?
‡9
1
|
919
|
|
|
‡a
productsfromtheoxidationofh2sinseawater
‡A
The products from the oxidation of H2S in seawater
‡9
1
|
919
|
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|
‡a
solubilityofso2andthedissociationofh2so3innaclsolutions
‡A
The solubility of SO2 and the dissociation of H2SO3 in NaCl solutions
‡9
1
|
919
|
|
|
‡a
useofphandbufferintensitytoquantifythecarboncycleintheocean
‡A
The use of pH and buffer intensity to quantify the carbon cycle in the ocean
‡9
1
|
919
|
|
|
‡a
correctiontoeffectoftemperatureandsalinityonphosphatesorptiononmarinesediments
‡A
Correction to “Effect of Temperature and Salinity on Phosphate Sorption on Marine Sediments”
‡9
1
|
919
|
|
|
‡a
primaryproductivitynewproductivityandtheirrelationtocarbonfluxduring2southernoceangasexchangetracerexperiments
‡A
Primary productivity, new productivity, and their relation to carbon flux during two Southern Ocean Gas Exchange tracer experiments
‡9
1
|
919
|
|
|
‡a
controlofphosphorusconcentrationthroughadsorptionanddesorptioninshallowgroundwaterofsubtropicalcarbonateestuary
‡A
Control of phosphorus concentration through adsorption and desorption in shallow groundwater of subtropical carbonate estuary
‡9
1
|
919
|
|
|
‡a
continuousflowanalysisofphosphateinnaturalwatersusinghydrazineasareductant
‡A
Continuous Flow Analysis of Phosphate in Natural Waters Using Hydrazine as a Reductant
‡9
1
|
919
|
|
|
‡a
simplifiedresorcinolmethodfordirectspectrophotometricdeterminationofnitrateinseawater
‡A
A simplified resorcinol method for direct spectrophotometric determination of nitrate in seawater
‡9
1
|
919
|
|
|
‡a
carbondynamicsoffloridabayspatiotemporalpatternsandbiologicalcontrol
‡A
Carbon dynamics of Florida Bay: spatiotemporal patterns and biological control.
‡9
1
|
919
|
|
|
‡a
simpleeffectivemi xing chamberusedinconjunctionwithasyringepumpforflowanalysis
‡A
A simple, effective mi xing chamber used in conjunction with a syringe pump for flow analysis
‡9
1
|
919
|
|
|
‡a
effectoftemperatureandsalinityonphosphatesorptiononmarinesediments
‡A
Effect of Temperature and Salinity on Phosphate Sorption on Marine Sediments
‡9
1
|
919
|
|
|
‡a
portableanalyserforthemeasurementofammoniuminmarinewaters
‡A
A portable analyser for the measurement of ammonium in marine waters
‡9
1
|
919
|
|
|
‡a
avoidingspuriouscorrelationinanalysisofchemicalkineticdata
‡A
Avoiding spurious correlation in analysis of chemical kinetic data
‡9
1
|
919
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|
‡a
globalestimatesofnetcarbonproductioninthenitratedepletedtropicalandsubtropicaloceans
‡A
Global estimates of net carbon production in the nitrate-depleted tropical and subtropical oceans
‡9
1
|
919
|
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|
‡a
commentonakineticstudyoftheoxidationofs4inseawater
‡A
Comment on “A Kinetic Study of the Oxidation of S(IV) in Seawater”
‡9
1
|
919
|
|
|
‡a
automatedanalysisofnanomolarconcentrationsofphosphateinnaturalwaterswithliquidwaveguide
‡A
Automated analysis of nanomolar concentrations of phosphate in natural waters with liquid waveguide
‡9
1
|
919
|
|
|
‡a
oceanacidificationalongthegulfcoastandeastcoastoftheusa
‡A
Ocean acidification along the Gulf Coast and East Coast of the USA
‡9
1
|
919
|
|
|
‡a
ascorbicacidasareductantforextractionofironboundphosphorusinsoilsamplesamethodcomparisonstudy
‡A
Ascorbic acid as a reductant for extraction of iron-bound phosphorus in soil samples: a method comparison study
‡9
1
|
919
|
|
|
‡a
continuouscolorimetricdeterminationoftraceammoniuminseawaterwithalongpathliquidwaveguidecapillarycell
‡A
Continuous colorimetric determination of trace ammonium in seawater with a long-path liquid waveguide capillary cell
‡9
1
|
919
|
|
|
‡a
commentonakineticstudyoftheoxidationofs
‡A
Comment on “A Kinetic Study of the Oxidation of S
‡9
1
|
919
|
|
|
‡a
liquidwaveguidespectrophotometricmeasurementoflowsilicateinnaturalwaters
‡A
Liquid-waveguide spectrophotometric measurement of low silicate in natural waters.
‡9
1
|
919
|
|
|
‡a
estimateofdiapycnalnutrientfluxestotheeuphoticzoneinthefloridastraits
‡A
An estimate of diapycnal nutrient fluxes to the euphotic zone in the Florida Straits
‡9
1
|
919
|
|
|
‡a
hydrographynutrientsandcarbonpoolsinthepacificsectorofthesouthernoceanimplicationsforcarbonflux
‡A
Hydrography, nutrients, and carbon pools in the Pacific sector of the Southern Ocean: Implications for carbon flux
‡9
1
|
919
|
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‡a
hurricanekatrinainducednutrientrunofffromanagriculturalareatocoastalwatersinbiscaynebayflorida
‡A
Hurricane Katrina induced nutrient runoff from an agricultural area to coastal waters in Biscayne Bay, Florida
‡9
1
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919
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|
‡a
saltwaterintrusionaspotentialdriverofphosphorusreleasefromlimestonebedrockinacoastalaquifer
‡A
Saltwater intrusion as potential driver of phosphorus release from limestone bedrock in a coastal aquifer
‡9
1
|
919
|
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|
‡a
autonomousbatchanalyzerforthedeterminationoftraceammoniuminnaturalwatersusingfluorometricdetection
‡A
An autonomous batch analyzer for the determination of trace ammonium in natural waters using fluorometric detection
‡9
1
|
919
|
|
|
‡a
investigationofmetalsulfidecomplexesinseawaterusingcathodicstrippingsquarewavevoltammetry
‡A
Investigation of metal sulfide complexes in sea water using cathodic stripping square wave voltammetry
‡9
1
|
919
|
|
|
‡a
changesinoceanheatcarboncontentandventilationareviewofthe1decadeof5shipglobalrepeathydrography
‡A
Changes in Ocean Heat, Carbon Content, and Ventilation: A Review of the First Decade of GO-SHIP Global Repeat Hydrography.
‡9
1
|
919
|
|
|
‡a
pk2forthedissociationofh2so3innaclsolutionswithaddedni2+co2+mn2+andcd2+at25100
‡A
The pK 2 * for the dissociation of H2SO3 in NaCl solutions with added Ni2+, Co2+, Mn2+, and Cd2+ at 25�C
‡9
1
|
919
|
|
|
‡a
adsorptionanddesorptionofphosphateoncalciteandaragoniteinseawater
‡A
Adsorption and Desorption of Phosphate on Calcite and Aragonite in Seawater
‡9
1
|
919
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‡a
laboratoryglasswareasacontaminantinsilicateanalysisofnaturalwatersamples
‡A
Laboratory glassware as a contaminant in silicate analysis of natural water samples
‡9
1
|
919
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|
‡a
kineticspectrophotometricdeterminationofsubmicromolarorthophosphatebymolybdatereduction
‡A
Kinetic spectrophotometric determination of submicromolar orthophosphate by molybdate reduction
‡9
1
|
919
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|
|
‡a
useofbufferstomeasurethephofseawater
‡A
The use of buffers to measure the pH of seawater
‡9
1
|
919
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|
‡a
abundanceandchemicalspeciationofphosphorusinsedimentsofthemackenzieriverdeltathechukchiseaandtheberingseaimportanceofdetritalapatite
‡A
Abundance and Chemical Speciation of Phosphorus in Sediments of the Mackenzie River Delta, the Chukchi Sea and the Bering Sea: Importance of Detrital Apatite
‡9
1
|
919
|
|
|
‡a
comparisonofopentubularcadmiumreactorandpackedcadmiumcolumninautomatedgassegmentedcontinuousflownitrateanalysis
‡A
Comparison of Open Tubular Cadmium Reactor and Packed Cadmium Column in Automated Gas-Segmented Continuous Flow Nitrate Analysis
‡9
1
|
919
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‡a
carbonatesysteminthewatersnearthegalapagosislands
‡A
Carbonate system in the waters near the Galapagos Islands
‡9
1
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919
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|
‡a
enhancedsensitivityinflowinjectionanalysisusingalongpathlengthliquidwaveguidecapillaryflowcellforspectrophotometricdetection
‡A
Enhanced Sensitivity in Flow Injection Analysis Using a Long Pathlength Liquid Waveguide Capillary Flow Cell for Spectrophotometric Detection
‡9
1
|
919
|
|
|
‡a
simulationstudyofthegrowthofbenthicmicroalgaefollowingthedeclineofasurfacephytoplanktonbloom
‡A
A simulation study of the growth of benthic microalgae following the decline of a surface phytoplankton bloom
‡9
1
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946
|
|
|
‡a
b
‡9
1
|
996
|
|
|
‡2
CYT|AC000503412
|
996
|
|
|
‡2
BNE|XX5547805
|
996
|
|
|
‡2
BNF|16557366
|
996
|
|
|
‡2
DNB|107633718X
|
996
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|
|
‡2
CYT|AC000658889
|
996
|
|
|
‡2
CYT|AC000637448
|
996
|
|
|
‡2
DNB|1235330524
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996
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|
|
‡2
J9U|987012502117205171
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996
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|
‡2
DNB|1139293532
|
996
|
|
|
‡2
CYT|AC000335111
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996
|
|
|
‡2
ISNI|0000000382420115
|
996
|
|
|
‡2
CYT|AC000637680
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996
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‡2
CYT|AC000405710
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996
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‡2
CYT|AC000405712
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996
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‡2
CYT|AC000661995
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996
|
|
|
‡2
CYT|AC000651940
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996
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|
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‡2
DNB|1099444667
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996
|
|
|
‡2
PLWABN|9810702481705606
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996
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|
|
‡2
CYT|AC000497320
|
996
|
|
|
‡2
NSK|000481065
|
996
|
|
|
‡2
NTA|429078765
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996
|
|
|
‡2
CYT|AC000640070
|
996
|
|
|
‡2
CYT|AC000590605
|
996
|
|
|
‡2
CYT|AC000332983
|
996
|
|
|
‡2
SUDOC|27658127X
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996
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|
|
‡2
BNF|12218365
|
996
|
|
|
‡2
BNF|13073286
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996
|
|
|
‡2
CYT|AC000655137
|
996
|
|
|
‡2
CYT|AC000638192
|
996
|
|
|
‡2
LC|no2005008038
|
996
|
|
|
‡2
CYT|AC000652146
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996
|
|
|
‡2
CYT|AC000423693
|
996
|
|
|
‡2
LC|no 95022272
|
996
|
|
|
‡2
CYT|AC000662227
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996
|
|
|
‡2
CYT|AC000639053
|
996
|
|
|
‡2
LC|no2012105124
|
996
|
|
|
‡2
CYT|AC000338678
|
996
|
|
|
‡2
ISNI|0000000116398373
|
996
|
|
|
‡2
DNB|1207878618
|
996
|
|
|
‡2
CYT|AC000653450
|
996
|
|
|
‡2
CAOONL|ncf11756691
|
996
|
|
|
‡2
CYT|AC000338677
|
996
|
|
|
‡2
LC|no2024066719
|
996
|
|
|
‡2
BNF|17045471
|
996
|
|
|
‡2
ISNI|0000000384723865
|
996
|
|
|
‡2
ISNI|0000000026943649
|
996
|
|
|
‡2
DNB|1203337795
|
996
|
|
|
‡2
ISNI|0000000370968132
|
996
|
|
|
‡2
CYT|AC000633845
|
996
|
|
|
‡2
ISNI|0000000442446828
|
996
|
|
|
‡2
CYT|AC000077389
|
996
|
|
|
‡2
BNF|16924192
|
996
|
|
|
‡2
LC|no2021116494
|
996
|
|
|
‡2
BIBSYS|98033039
|
996
|
|
|
‡2
PLWABN|9812079819905606
|
996
|
|
|
‡2
J9U|987011827742505171
|
996
|
|
|
‡2
CYT|AC000644350
|
996
|
|
|
‡2
ISNI|0000000117305909
|
996
|
|
|
‡2
NTA|173813542
|
996
|
|
|
‡2
BIBSYS|90691907
|
996
|
|
|
‡2
CYT|AC000657870
|
996
|
|
|
‡2
BIBSYS|14015535
|
996
|
|
|
‡2
RERO|A009384903
|
996
|
|
|
‡2
CYT|AC000663470
|
996
|
|
|
‡2
NSK|000580659
|
996
|
|
|
‡2
ISNI|0000000419212660
|
996
|
|
|
‡2
CYT|AC000405702
|
996
|
|
|
‡2
CYT|AC000405703
|
996
|
|
|
‡2
CYT|AC000405700
|
996
|
|
|
‡2
CYT|AC000405701
|
996
|
|
|
‡2
CYT|AC000405706
|
996
|
|
|
‡2
CYT|AC000405707
|
996
|
|
|
‡2
CYT|AC000663218
|
996
|
|
|
‡2
CYT|AC000405705
|
996
|
|
|
‡2
NTA|364177810
|
996
|
|
|
‡2
CYT|AC000405711
|
996
|
|
|
‡2
CYT|AC000405708
|
996
|
|
|
‡2
CYT|AC000405709
|
996
|
|
|
‡2
CAOONL|ncf11602666
|
996
|
|
|
‡2
DNB|1136047387
|
996
|
|
|
‡2
CYT|AC000416998
|
996
|
|
|
‡2
CYT|AC000590484
|
996
|
|
|
‡2
CYT|AC000590485
|
996
|
|
|
‡2
CYT|AC000590486
|
996
|
|
|
‡2
DNB|1067987150
|
996
|
|
|
‡2
CYT|AC000312287
|
996
|
|
|
‡2
CYT|AC000590483
|
996
|
|
|
‡2
DNB|1138651575
|
996
|
|
|
‡2
CYT|AC000076027
|
996
|
|
|
‡2
NTA|355346877
|
996
|
|
|
‡2
CYT|AC000636401
|
996
|
|
|
‡2
J9U|987007337513305171
|
996
|
|
|
‡2
LNB|LNC10-000137754
|
996
|
|
|
‡2
LC|no2016072690
|
996
|
|
|
‡2
CYT|AC000662284
|
996
|
|
|
‡2
BIBSYS|90612904
|
996
|
|
|
‡2
J9U|987007366625505171
|
996
|
|
|
‡2
CYT|AC000662161
|
996
|
|
|
‡2
BIBSYS|90848737
|
996
|
|
|
‡2
LC|nr 95029261
|
996
|
|
|
‡2
NSK|000542050
|
996
|
|
|
‡2
ISNI|0000000052215725
|
996
|
|
|
‡2
CAOONL|ncf10264717
|
996
|
|
|
‡2
J9U|987007448562905171
|
996
|
|
|
‡2
BNF|15852660
|
996
|
|
|
‡2
DNB|1293499250
|
996
|
|
|
‡2
CYT|AC000591680
|
996
|
|
|
‡2
CYT|AC000652009
|
996
|
|
|
‡2
NSK|000557376
|
996
|
|
|
‡2
LC|n 79110882
|
996
|
|
|
‡2
BNF|16919310
|
996
|
|
|
‡2
ISNI|0000000037222361
|
996
|
|
|
‡2
CYT|AC000659499
|
996
|
|
|
‡2
CYT|AC000405698
|
996
|
|
|
‡2
CYT|AC000405699
|
996
|
|
|
‡2
NTA|244894353
|
996
|
|
|
‡2
CYT|AC000650699
|
996
|
|
|
‡2
DNB|1211964620
|
996
|
|
|
‡2
DNB|133743365
|
996
|
|
|
‡2
ISNI|0000000053509768
|
996
|
|
|
‡2
NTA|405395515
|
996
|
|
|
‡2
DNB|113564022X
|
996
|
|
|
‡2
LC|nr 94015430
|
996
|
|
|
‡2
BNF|16979645
|
996
|
|
|
‡2
CYT|AC000419114
|
996
|
|
|
‡2
LIH|LNB:B_f__t_S;=B,
|
996
|
|
|
‡2
CYT|AC000529253
|
996
|
|
|
‡2
CYT|AC000529252
|
996
|
|
|
‡2
CYT|AC000591911
|
996
|
|
|
‡2
CYT|AC000591910
|
996
|
|
|
‡2
CYT|AC000591912
|
996
|
|
|
‡2
PLWABN|9811812133005606
|
996
|
|
|
‡2
LC|nb2022015486
|
996
|
|
|
‡2
PLWABN|9810812245105606
|
996
|
|
|
‡2
LC|no2013136184
|
996
|
|
|
‡2
NTA|406400210
|
996
|
|
|
‡2
BIBSYS|90858277
|
996
|
|
|
‡2
CYT|AC000075919
|
996
|
|
|
‡2
DNB|1317587383
|
996
|
|
|
‡2
NSK|000164595
|
996
|
|
|
‡2
LC|no2016034916
|
996
|
|
|
‡2
CYT|AC000489967
|
996
|
|
|
‡2
B2Q|0000136586
|
996
|
|
|
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CYT|AC000655269
|
996
|
|
|
‡2
CYT|AC000340779
|
996
|
|
|
‡2
NII|DA08971965
|
996
|
|
|
‡2
CYT|AC000345064
|
996
|
|
|
‡2
CYT|AC000591679
|
996
|
|
|
‡2
CYT|AC000652202
|
996
|
|
|
‡2
PLWABN|9812615464905606
|
996
|
|
|
‡2
ISNI|0000000392892458
|
996
|
|
|
‡2
NUKAT|n 95301961
|
996
|
|
|
‡2
ISNI|0000000063674943
|
996
|
|
|
‡2
LC|no2003026437
|
996
|
|
|
‡2
NTA|180814281
|
996
|
|
|
‡2
DNB|111442076X
|
996
|
|
|
‡2
CYT|AC000636974
|
996
|
|
|
‡2
CYT|AC000662155
|
996
|
|
|
‡2
ISNI|0000000434910424
|
996
|
|
|
‡2
PLWABN|9812800888505606
|
996
|
|
|
‡2
CYT|AC000656664
|
996
|
|
|
‡2
CYT|AC000638673
|
996
|
|
|
‡2
CAOONL|ncf10232021
|
996
|
|
|
‡2
DNB|1282158147
|
996
|
|
|
‡2
BNF|16912694
|
996
|
|
|
‡2
CYT|AC000662158
|
996
|
|
|
‡2
DNB|1246932377
|
996
|
|
|
‡2
LC|no2009161225
|
996
|
|
|
‡2
NTA|36417014X
|
996
|
|
|
‡2
ISNI|0000000063293366
|
996
|
|
|
‡2
CYT|AC000001825
|
996
|
|
|
‡2
CYT|AC000557666
|
996
|
|
|
‡2
KRNLK|KAC200907604
|
996
|
|
|
‡2
DNB|1253686750
|
996
|
|
|
‡2
CYT|AC000656812
|
996
|
|
|
‡2
CYT|AC000657857
|
996
|
|
|
‡2
LC|n 2021067734
|
996
|
|
|
‡2
NTA|213266474
|
996
|
|
|
‡2
CYT|AC000658903
|
996
|
|
|
‡2
CYT|AC000651765
|
996
|
|
|
‡2
NTA|364175974
|
996
|
|
|
‡2
ISNI|0000000081536456
|
996
|
|
|
‡2
ISNI|0000000114536533
|
996
|
|
|
‡2
CYT|AC000655422
|
996
|
|
|
‡2
SUDOC|27941966X
|
996
|
|
|
‡2
LC|no2012074441
|
996
|
|
|
‡2
CYT|AC000478746
|
996
|
|
|
‡2
CYT|AC000657113
|
996
|
|
|
‡2
CYT|AC000478745
|
996
|
|
|
‡2
SZ|1246932377
|
996
|
|
|
‡2
BNF|17122828
|
996
|
|
|
‡2
SUDOC|112183956
|
996
|
|
|
‡2
LC|no2003071743
|
996
|
|
|
‡2
CAOONL|ncf13793710
|
996
|
|
|
‡2
BNF|17043336
|
996
|
|
|
‡2
DNB|119052601
|
996
|
|
|
‡2
DNB|1158370016
|
996
|
|
|
‡2
LC|n 2011087808
|
996
|
|
|
‡2
CYT|AC000654865
|
996
|
|
|
‡2
CYT|AC000552544
|
996
|
|
|
‡2
CYT|AC000641193
|
996
|
|
|
‡2
LC|n 88298179
|
996
|
|
|
‡2
LC|n 94118301
|
996
|
|
|
‡2
NII|DA02876473
|
996
|
|
|
‡2
NSK|000753847
|
996
|
|
|
‡2
SUDOC|224926071
|
996
|
|
|
‡2
CYT|AC000652057
|
996
|
|
|
‡2
CYT|AC000345066
|
996
|
|
|
‡2
PLWABN|9810815939405606
|
996
|
|
|
‡2
ISNI|0000000050050736
|
996
|
|
|
‡2
DNB|1163627380
|
996
|
|
|
‡2
CYT|AC000590604
|
996
|
|
|
‡2
PLWABN|9813989590905606
|
996
|
|
|
‡2
DNB|117385410X
|
996
|
|
|
‡2
DNB|1035396696
|
996
|
|
|
‡2
BNF|15783889
|
996
|
|
|
‡2
LC|no2024047322
|
996
|
|
|
‡2
CYT|AC000634033
|
996
|
|
|
‡2
SUDOC|069943443
|
996
|
|
|
‡2
ISNI|0000000120051663
|
996
|
|
|
‡2
SZ|1136047387
|
996
|
|
|
‡2
ISNI|0000000391029601
|
996
|
|
|
‡2
ISNI|0000000075804442
|
996
|
|
|
‡2
ISNI|0000000093150884
|
997
|
|
|
‡a
0 0 lived 0 0
‡9
1
|