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Effects of light intensity and nutrients on the lipid content of marine microalga (diatom) Amphiprora sp. for promising biodiesel production

机译:光强度与营养对海洋微藻(硅藻)Amphiprora Sp脂质含量的影响。 用于有前途的生物柴油生产

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摘要

In this research investigation, three microalgal species were screened [Pleurosigma sp., Amphora sp., and Amphiprora sp.) for lipid content before choosing the potential microalgae for biodiesel production. It was found that the lipid content of Amphiprora sp. was 41.48 ± 0.18%, which was higher than the Pleurosigma sp. (273 ± 0.8%) and Amphora sp. (22.49 ± 0.21%). The diatom microalga, Amphiprora sp. was isolated and exposed to a controlled environment. Two different media were prepared, and the main research was on the SiO_2-NP medium as the cell wall of diatom was made up of silica. Essential growth parameters were studied such as dry cell weight and chlorophyll a content. The results revealed that Amphiprora sp. cultured in the modified medium showed a higher biomass yield and growth rate in all the analyses. In Soxhlet extraction method, biodiesel yield of Amphiprora sp. in modified medium under 24 μmol m~(-2) s~(-1) of light intensity was 81.47 ± 1.59% when using 2% of catalyst amount with 1.5∶1 volume ratio of methanol/oil in 3 h reaction time at 65 °C. Results reveled that Amphiprora sp. diatom has a higher yield of oil 52.94 ± 0.42% and can be efficiently optimized with further studies with modified nanomaterial culture medium. The present research revealed the series of experiments on microalgal lipid transesterification and in future investigation different types of nanomaterials should be used in culture medium to identify the lipid production in microalgal cells.
机译:在该研究中,筛选了三种微藻物种[Pleurosigma Sp。,Amphora sp。和Amphiprora sp。)用于脂质含量,然后选择潜在的微藻生产用于生物柴油生产。发现Amphiprora sp的脂质含量。是41.48±0.18%,高于胸膜肺炎。 (273±0.8%)和Amphora sp。 (22.49±0.21%)。硅藻微藻,Amphiprora sp。被隔离并暴露于受控环境。制备两种不同的培养基,主要研究在SiO_2-NP培养基上,因为硅藻的细胞壁由二氧化硅组成。研究了必要的生长参数,例如干细胞重量和叶绿素的含量。结果表明,Amphiprora sp。在改性培养基中培养显示出在所有分析中的生物质产量和生长速率。在Soxhlet提取方法中,Amphiprora的生物柴油产率。在24μmolM〜(-2)下的改性培养基中,光强度为81.47±1.59%,当使用2%的催化剂含量为1.5:1在3小时内甲醇/油的体积比在65时°C。结果启动了Amphiprora sp。硅藻具有较高的油产率52.94±0.42%,可以通过改性纳米材料培养基进一步研究有效地优化。本研究揭示了一系列关于微藻脂质酯交换的一系列实验,并在未来调查中,应在培养基中使用不同类型的纳米材料,以鉴定微藻细胞中的脂质产生。

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  • 来源
    《Science of the total environment》 |2021年第10期|145471.1-145471.11|共11页
  • 作者单位

    Algae Biotechnology Laboratory Faculty of Industrial Sciences and Technology Universiti Malaysia Pahang Lebuhraya Tun Razak 26300 Gambang Kuantan Pahang Malaysia;

    Algae Biotechnology Laboratory Faculty of Industrial Sciences and Technology Universiti Malaysia Pahang Lebuhraya Tun Razak 26300 Gambang Kuantan Pahang Malaysia;

    Innovative Green Product Synthesis and Renewable Environment Development Research Croup Faculty of Environment and Labour Safety Ton Duc Thang University Ho Chi Minh City Viet Nam;

    Algae Biotechnology Laboratory Faculty of Industrial Sciences and Technology Universiti Malaysia Pahang Lebuhraya Tun Razak 26300 Gambang Kuantan Pahang Malaysia;

    Algae Biotechnology Laboratory Faculty of Industrial Sciences and Technology Universiti Malaysia Pahang Lebuhraya Tun Razak 26300 Gambang Kuantan Pahang Malaysia;

    Algae Biotechnology Laboratory Faculty of Industrial Sciences and Technology Universiti Malaysia Pahang Lebuhraya Tun Razak 26300 Gambang Kuantan Pahang Malaysia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Amphiprora sp.; diatom; Future biodiesel; Catalyst; GC-FID; Wastewater nutrients;

    机译:amphiprora sp;硅藻;未来生物柴油;催化剂;GC-FID;废水养分;

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