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Enhanced microbial biodiesel production from lignocellulosic hydrolysates using yeast isolates

机译:使用酵母菌分离物提高木质纤维素水解产物的微生物生物柴油产量

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摘要

An effort in contributing to the reduction of fossil resource dependence along with utilization of lignocellulosic wastes, will be a beneficial approach in biofuel production. These approaches will aid in sustainable waste management and will contribute to economic feasibility. This study probed the exploitation of abundant, non-edible lignocellulosic wastes such as sugarcane bagasse and rice husk as a low-cost carbon source for the cultivation of oleaginous yeast isolates and lipid accumulation, respectively. The hydrolysis of the lignocellulose was explored by steam explosion alone to reduce the inflation of toxic compounds like hydroxy methyl furfural (HMF), furfural, and acetic acid. This optimization study investigated the effects of carbon sources (sugarcane bagasse hydrolysate, rice husk hydrolysate, and commercial glucose), nitrogen sources, and pH on biodiesel production using central composite design (CCD), and achieved a full factorial design. All the three variables were found to have a positive influence on biodiesel production. Greater biomass production was achieved by SY2 (Pichia kudriavzevii) with a value of - 8.37 +/- 0.067 g/L when sugarcane bagasse hydrolysate was used. Maximum lipid content of 37.99 +/- 0.003% was attained by the strain G5 (Meyerozyma guilliermondii) upon using sugarcane bagasse hydrolysate in the production medium and higher lipid accumulation of 2.39 +/- 0.003 g/L was attained by SY2 (Pichia kudriavzevii) upon using rice husk hydrolysate. Analysis of the kinematic properties of FAME (Fatty Acid Methyl Esters) was obtained using Biodiesel analyzer V1.1. software, and affirmed the values similar to the biodiesel standard values (EN 14214, ASTM, IS 15607). The kinematic studies used to figure out the quality of the biodiesel, revealed that FAME produced by SY2 (Pichia kudriavzevii) strain showed greater oxidation stability (37.17 h) and better kinematic viscosity (1.3084). These properties ensured that SY2 (Pichia kudriavzevii) strain was appropriate in producing exceptional quality biodiesel. Hence, the present investigation tried to prove the competency of the yeast isolates in sustainable biodiesel production by engaging agronomic wastes.
机译:努力减少对化石资源的依赖以及木质纤维素废料的利用,将是生物燃料生产中的一种有益方法。这些方法将有助于可持续的废物管理,并有助于经济可行性。这项研究探讨了利用丰富的,不可食用的木质纤维素废料,例如甘蔗渣和稻壳作为低成本碳源,分别用于培养油性酵母分离株和脂质积累。仅通过蒸汽爆炸就可以探索木质纤维素的水解,以减少有毒化合物(如羟甲基糠醛(HMF),糠醛和乙酸)的膨胀。这项优化研究使用中央复合设计(CCD)研究了碳源(蔗糖蔗糖水解物,稻壳水解物和商业葡萄糖),氮源和pH对生物柴油生产的影响,并实现了全因子设计。发现所有这三个变量对生物柴油生产都有积极影响。当使用甘蔗渣蔗糖水解物时,SY2(毕赤酵母)的生物量更高,值为-8.37 +/- 0.067 g / L。在生产培养基中使用甘蔗渣水解物后,菌株G5(Meyerozyma guilliermondii)获得的最大脂质含量为37.99 +/- 0.003%,SY2(毕赤酵母)获得的脂质积累更高,为2.39 +/- 0.003 g / L。使用稻壳水解物时。使用生物柴油分析仪V1.1对FAME(脂肪酸甲酯)的运动学特性进行了分析。软件,并确认与生物柴油标准值(EN 14214,ASTM,IS 15607)相似的值。用来确定生物柴油质量的运动学研究表明,SY2(Pichia kudriavzevii)菌株产生的FAME显示出更高的氧化稳定性(37.17 h)和更好的运动粘度(1.3084)。这些特性确保SY2(Pichia kudriavzevii)菌株适用于生产品质卓越的生物柴油。因此,本研究试图通过利用农业废弃物来证明酵母分离物在可持续生物柴油生产中的能力。

著录项

  • 来源
    《Fuel》 |2019年第15期|115932.1-115932.13|共13页
  • 作者单位

    Alagappa Univ Dept Energy Sci Karaikkudi 630003 Tamil Nadu India|Alagappa Univ Dept Microbiol Bioenergy & Bioremediat Lab Karaikkudi 630003 Tamil Nadu India|Thiagarajar Coll Dept Zool & Microbiol Madurai Tamil Nadu India;

    Alagappa Univ Dept Energy Sci Karaikkudi 630003 Tamil Nadu India|Alagappa Univ Dept Microbiol Bioenergy & Bioremediat Lab Karaikkudi 630003 Tamil Nadu India;

    Kyonggi Univ Dept Environm Energy Engn Suwon 16227 Gyeonggi Do South Korea;

    Kyonggi Univ Dept Environm Energy Engn Suwon 16227 Gyeonggi Do South Korea|Nguyen Tat Thanh Univ Fac Environm & Food Engn 300A Nguyen Tat Thanh Dist 4 Ho Chi Minh City 755414 Vietnam;

    Nguyen Tat Thanh Univ Ctr Excellence Green Energy & Environm Nanomat GE 300A Nguyen Tat Thanh Dist 4 Ho Chi Minh City 755414 Vietnam;

    Inst Chem & Mat Hanoi Vietnam;

    Duy Tan Univ Inst Res & Dev Da Nang Vietnam;

    Hong Kong Baptist Univ Dept Biol Sino Forest Appl Res Ctr Pearl Delta Environm Hong Kong Peoples R China;

    Indian Inst Technol Delhi Dept Civil Engn Environm Engn New Delhi 110016 India;

    Sejong Univ Dept Food Sci & Biotechnol Coll Life Sci Seoul South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lignocellulosic wastes; Sugarcane bagasse; Rice husk; Oleaginous; Optimization biodiesel;

    机译:木质纤维素废料;甘蔗渣;稻壳;产卵的优化生物柴油;

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