Effects of rainwater iron and hydrogen peroxide on iron speciation and phytoplankton growth in seawater near Bermuda

被引:10
|
作者
Willey, JD
Kieber, RJ
Avery, GB
机构
[1] Univ N Carolina, Dept Chem, Wilmington, NC 28403 USA
[2] Univ N Carolina, Marine Sci Program, Wilmington, NC 28403 USA
基金
美国国家科学基金会;
关键词
rain; iron; hydrogen peroxide; seawater; chlorophyll a;
D O I
10.1023/B:JOCH.0000021087.19846.e1
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Rainwater is a major source of dissolved iron to much of the world's oceans, including regions where iron may be a limiting nutrient for marine phytoplankton primary production. Rainwater iron is therefore potentially important in regulating global photosynthetic uptake of CO2, and hence climate. Two rainwater addition bioassay experiments (2% rain) conducted at the Bermuda Atlantic Time-series Station (BATS) during March 2000 using 50 or 100 nM FeCl2 or FeCl3 in synthetic rain (pH 4.5 H2SO4) showed an increase in chlorophyll a 50% greater than controls after three days. Addition of 20 muM hydrogen peroxide, a typical rainwater concentration at BATS, completely removed the chlorophyll a increase with both forms of iron additions, suggesting stimulation of phytoplankton growth by rainwater iron can be limited by rainwater H2O2. In laboratory experiments using Gulf Stream seawater, iron-enriched (100 nM Fe(III)) synthetic rain was mixed with seawater in a 5% rain 95% seawater ratio. Dissolved iron concentrations increased two times above concentrations predicted based on dilution alone. The increase in soluble iron probably resulted from release from seawater particles and was maintained for more than 24 hours. No increase was observed in controls that did not have iron added to the synthetic rain, or with synthetic rainwater containing both added iron and H2O2. The increase in iron concentration above that predicted by dilution indicates rain may have a larger effect on seawater iron concentrations than that calculated for rainwater iron addition alone.
引用
收藏
页码:209 / 222
页数:14
相关论文
共 50 条
  • [11] CHROMIUM SPECIATION IN SEAWATER - THE PROBABLE ROLE OF HYDROGEN-PEROXIDE
    PETTINE, M
    MILLERO, FJ
    LIMNOLOGY AND OCEANOGRAPHY, 1990, 35 (03) : 730 - 736
  • [12] A CHEMICAL METHOD FOR ESTIMATING THE AVAILABILITY OF IRON TO PHYTOPLANKTON IN SEAWATER
    WELLS, ML
    MAYER, LM
    GUILLARD, RRL
    MARINE CHEMISTRY, 1991, 33 (1-2) : 23 - 40
  • [13] THE CHEMISTRY OF IRON IN SEAWATER AND ITS INTERACTION WITH PHYTOPLANKTON - INTRODUCTION
    BRULAND, KW
    WELLS, SG
    MARINE CHEMISTRY, 1995, 50 (1-4) : 1 - 2
  • [14] REACTION OF HYDROGEN PEROXIDE WITH IRON PORPHYRINS
    PORTSMOU.D
    FEDERATION PROCEEDINGS, 1970, 29 (02) : A917 - +
  • [15] DNA damage by iron and hydrogen peroxide
    Linn, S
    ADVANCES IN DNA DAMAGE AND REPAIR: OXYGEN RADICAL EFFECTS, CELLULAR PROTECTION, AND BIOLOGICAL CONSEQUENCES, 1999, 302 : 259 - 266
  • [16] THE THIOCYANATE DETERMINATION OF IRON WITH HYDROGEN PEROXIDE
    HOULIHAN, JE
    FARINA, PEL
    ANALYST, 1953, 78 (930) : 559 - 559
  • [17] THE OXIDATION OF CYSTEINE BY IRON AND HYDROGEN PEROXIDE
    NEVILLE, RG
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1957, 79 (10) : 2456 - 2457
  • [18] Iron organic speciation determination in rainwater using cathodic stripping voltammetry
    Cheize, Marie
    Sarthou, Geraldine
    Croot, Peter L.
    Bucciarelli, Eva
    Baudoux, Anne-Claire
    Baker, Alex R.
    ANALYTICA CHIMICA ACTA, 2012, 736 : 45 - 54
  • [19] IRON(II) IN RAINWATER, SNOW, AND SURFACE SEAWATER FROM A COASTAL ENVIRONMENT
    ZHUANG, GS
    YI, Z
    WALLACE, GT
    MARINE CHEMISTRY, 1995, 50 (1-4) : 41 - 50
  • [20] Iron, phytoplankton growth and the carbon cycle
    Street, Joseph H.
    Paytan, Adina
    BIOGEOCHEMICAL CYCLES OF ELEMENTS, 2005, 43 : 153 - 193