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The present study investigated quantitatively the significance of HNLC (high-nutrient low-chlorophyll) regions and its grazing control with the improved iron fertilization for climate change. The limitation of iron (Fe) for phytoplankton growth in HNLC regions was confirmed by sulfur compounds (S) such as volcanic ash and hydrogen sulfide (H2S) in batch cultures, whose chemical sediment of Fe3S4 showed 4.06 wt%. The technologies developed for iron fertilization since 1993 till now were not practical to provide sufficient amounts of bioavailable iron due to sedimentary iron sulfides induced by undersea volcanic sulfur compounds. The proposed technology for iron fertilization was improved to enhance the bioavailable iron to phytoplankton by keeping minimal sulfur compounds in HNLC regions. The low productivity of phytoplankton by grazing control in HNLC regions was 6% diatoms whose 52% was grazed by copepods and 42% by krill on the basis of data analysis in 2000 EisenEx Experiment at boundary of Antarctic and African tectonic plates. All of the previous iron fertilization experiments were conducted at volcanic sulfur compounds enriched HNLC regions. The present study revealed that the enhanced phytoplankton productivity in batch culture without sedimentary iron sulfides can be possible only if sulfur compounds are minimal, as is in Shag Rocks (53°S, 42°W) of South Georgia in Scotia Sea in the Southern Ocean.
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篇名 Iron Fertilization with Enhanced Phytoplankton Productivity under Minimal Sulfur Compounds and Grazing Control Analysis in HNLC Region
来源期刊 美国气候变化期刊(英文) 学科 医学
关键词 Iron FERTILIZATION PHYTOPLANKTON PRODUCTIVITY GRAZING Control Analysis MINIMAL SULFUR Compounds
年,卷(期) 2019,(1) 所属期刊栏目
研究方向 页码范围 14-39
页数 26页 分类号 R73
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Iron
FERTILIZATION
PHYTOPLANKTON
PRODUCTIVITY
GRAZING
Control
Analysis
MINIMAL
SULFUR
Compounds
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期刊影响力
美国气候变化期刊(英文)
季刊
2167-9495
武汉市江夏区汤逊湖北路38号光谷总部空间
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95
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0
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