北平Spyrogyra藻类在分批培养基中生产纳米金的潜力

Arbaina Syahdinnur, Agusrahman Ekaputra Abas, Chitriani Armidha
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摘要

利用北平螺旋体藻进行了纳米金的生物合成。本研究旨在利用不同浓度和培养时间的北平螺旋藻来测定金纳米颗粒的生物合成。使用HauCl4溶液合成金纳米颗粒,在1升坐浴盆中浓度分别为5ppm、10ppm、15ppm和20ppm。在添加了0.2克Sulfahri-01营养素的HauCl4培养基中生长了北平螺藻。然后,每5克Spirogyra藻类在添加了0.2克Sulfahri-01营养物质的HAuCl4培养基中孵育。在阳光下培养4小时。纳米粒子尺寸的测定是通过观察溶液中出现的颜色来完成的。研究结果表明,北平螺旋藻能够合成金纳米粒子,其特征是经过处理后,藻类生物量由绿色变为紫色,形成大小为40-60nm的金纳米粒子。最佳使用的HAuCl4浓度为5ppm,颗粒尺寸最小。关键词洗脱液内,北平螺旋体,HAuCl4,生物合成。文章历史接收日期2017年5月8日接受日期2017年7月3日
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The Potential of Algae Spyrogyra peipingensis to Produce Nanogold in Batch Culture Medium
The biosynthesis of gold nanoparticles by using algae Spirogyra peipingensis was conducted. This research aimed to determine biosynthesis of gold nanoparticles by using algae Spirogyra peipingensis with different concentration and incubation time. The synthesis of gold nanoparticles using HauCl4 solution with variations of concentration 5 ppm, 10 ppm, 15 ppm and 20 ppm respectively in 1 liter of aquabidest. Algae Spirogyra peipingensis was grown in HauCl4 medium with the addition of 0.2 gr Sulfahri-01 nutrient. Then each 5 gram Spirogyra algae incubated in HAuCl4 medium with the addition of Sulfahri-01 0.2 gram nutrients. 4 hours long incubation under exposure to sunlight. Nanoparticle size determination is done by looking at the color that appears in the solution. From the results of the research, it is known that Spirogyra peipingensis algae is able to synthesize gold nanoparticles characterized by the color change in algae biomass from green to purple color after being treated and forming gold nanoparticles with size 40-60 NM. The best-used HAuCl4 consent is 5 ppm with the smallest particle size. KeywordIntracelullar, Spirogyra peipingensis,HAuCl4,Biosynthesis.  Article HistoryReceived 8 May 2017 Accepted 3 July 2017                                                                               
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