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Enhancement of Photosynthetic CO2 Fixation by Marine Phytoplankton with Steelmaking Slags as a Nutrient Source

机译:加强海洋浮游植物与炼钢渣作为营养源的光合二氧化碳固定

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Suppression of CO_2 and waste such as slags discharged from iron- and steelmaking processes are some of the typical major issues for the protection of global environment and sustainable growth of steelmaking industry. Utilization of active phytoplankton growth will be one of the best options to stabilize and suppress carbon dioxide at high-efficiency. Inorganic minerals such as C, O, N, Si, P and Fe are necessary for phytoplankton multiplication. It is crucial for supply of nutrition into seawater effectively for phytoplankton multiplication to understand the dissolution behavior of some elements from steelmaking slags into seawater. The morphology of the precipitated phases in steelmaking slags during cooling period was investigated in the present work. The dissolution behavior of some elements from steelmaking slags into artificial seawater has also been studied. The effect of nutrient dissolved into seawater on phytoplankton multiplication, some examples of marine structure made from steelmaking slag, and estimation of CO_2 fixation amount by marine phytoplankton are also discussed.
机译:抑制来自铁和炼铁工艺排出的炉渣的CO_2和废物是保护全球环境和炼钢行业可持续增长的典型主要问题。活性浮游植物生长的利用将是在高效率下稳定和抑制二氧化碳的最佳选择之一。无机矿物如C,O,N,Si,P和Fe是植物植物繁殖所必需的。有效地向海水供应植物对浮游植物乘法来了解炼钢渣中的溶出行为至关重要。在本作工作中研究了冷却期间炼钢矿渣中沉淀相的形态。还研究了一些从炼钢渣中溶出的溶解行为到人造海水中。还讨论了培养物溶解在浮游植物繁殖中的海水中的影响,以及由炼钢渣制成的船舶结构的一些例子,以及海洋植物浮游植物的估算。

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