...
首页> 外文期刊>African Journal of Agricultural Research >Carbon sequestration potential of Scenedesmus species (Microalgae) under the fresh water ecosystem
【24h】

Carbon sequestration potential of Scenedesmus species (Microalgae) under the fresh water ecosystem

机译:淡水生态系统下场景藻(微藻)的固碳潜力

获取原文
           

摘要

The study was conducted to investigate the carbon sequestration potential of?Scenedesmus?species (a microalgae species)?under the fresh water ecosystem. Biofixation of CO2?by microalgae mass cultures represents an advanced, climate friendly biological process that enables the direct utilization of fossil CO2streams produced from concentrated sources, such as power plants. The study was done in Nagpur region, the sample of?Scenedesmus?species (a microalgae species) were collected from fresh water ponds scattered over in Nagpur area. Collected samples were isolated for?Scenedesmus?species with Streak plate and Pour plate method by using serial dilution, purification was done by antibiotic treatment. The growth ofScenedesmus?species was tested under different concentration of CO2, heavy metal treatment and different pH values and also chlorophyll contents were estimated over the various concentrations of CO2. Results revealed that the highest growth reported at 36% of CO2?treatment, 7.4 to 8.0 pH values and growth inhibited under high concentration of heavy metals. Chlorophyll synthesis was reported highest at 36% of CO2treatment. With the results it concluded that the?Scenedesmus?species having good carbon sequestration potential as it can tolerate up to 48% CO2?concentration in the medium, and can give excellent biomass accumulation under the 36% CO2?contents in the medium. This?Scenedesmus?species can be exploited as good source of bio-fixation of environmental CO2.
机译:这项研究是为了研究淡水生态系统下“情景动物”(一种微藻类)的碳固存潜力。微藻大规模培养对CO2?的生物固定作用代表了一种先进的,对气候友好的生物过程,可直接利用从浓缩源(如发电厂)产生的化石CO2流。该研究在那格浦尔地区进行,从散布在那格浦尔地区的淡水池塘中收集了“情景藻”物种(一种微藻物种)的样本。通过连续稀释法,使用Streak平板和Pour平板方法分离收集的样品,用于Scenedesmus物种,通过抗生素处理进行纯化。在不同的CO2浓度,重金属处理和不同的pH值下,测试了情景种的生长,并估算了不同浓度的CO2下的叶绿素含量。结果表明,在36%的CO2处理,pH值为7.4至8.0的情况下,生长最快,在重金属高浓度下生长受到抑制。据报道,叶绿素合成的最高浓度为二氧化碳处理量的36%。结果表明,情景种具有良好的固碳潜力,因为它可以耐受培养基中高达48%的CO2浓度,并且在培养基中36%的CO2含量下可以提供出色的生物量积累。这种场景动物可以作为环境二氧化碳生物固定的良好来源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号