class='kwd-title'>Method name: Surface response '/> Chemically synthesized biofuels from agricultural waste: Optimization operating parameters with surface response methodology (CCD)
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Chemically synthesized biofuels from agricultural waste: Optimization operating parameters with surface response methodology (CCD)

机译:农业废弃物中的化学合成生物燃料:利用表面响应方法(CCD)优化运行参数

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摘要

class="kwd-title">Method name: Surface response methodology for process optimization class="kwd-title">Keywords: Bioethanol, Distillation, Fermentation, Hydrolysis, Waste class="head no_bottom_margin" id="abs0010title">AbstractBioethanol is one of the most important alternative renewable energy sources that substitute the fossil fuels. Sugarcane bagasse has a content of cellulose and hemicelluloses, which make it suitable as fermentation substrate when hydrolyzed. The objective of work is ethanol production from sugarcane bagasse (SCB) by the fermentation process. Eight laboratory experiments were conducted to produce bioethanol from sugarcane bagasse. By using Design Expert, it was formulated the dilute acid hydrolysis step to investigate the effects of hydrolysis parameters on a yield of ethanol and optimum condition. All the three hydrolysis parameters were significant variables for the yield of ethanol. The optimum combinations of the three factors maximum ethanol yield were 10.86 ml at 50 g sample, 92.59 °C hydrolysis temperature, 30 min hydrolysis time and 1%v/v acid concentration. From this study following point were concluded: class="first-line-outdent">
  • • Lignocellulosic containing material are sustainable for clean energy production
  • • Production of bioethanol from waste sugarcane baggage’s is possible
  • • Operating parameters (time, temperature and acid concentration) can be optimized by surface response methodology.
  • • Process parameters hydrolysis, fermentation and distillation have significant role on bioethanol yield.
  • 机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>方法名称:用于过程优化的表面响应方法 class =“ kwd-title”>关键字:生物乙醇,蒸馏,发酵,水解,废物 class =“ head no_bottom_margin” id =“ abs0010title”>摘要生物乙醇是替代化石燃料的最重要的可再生能源之一。甘蔗渣含有一定量的纤维素和半纤维素,使其在水解时适合作为发酵底物。工作的目标是通过发酵过程从甘蔗渣(SCB)生产乙醇。进行了八个实验室实验,以从甘蔗渣中生产生物乙醇。通过使用Design Expert,制定了稀酸水解步骤,以研究水解参数对乙醇收率和最佳条件的影响。所有三个水解参数都是乙醇收率的重要变量。三因素最大乙醇产量的最佳组合是在50 g样品中为10.86 ml,92.59°C的水解温度,30 min的水解时间和1%v / v的酸浓度。从这项研究得出以下结论: class =“ first-line-outdent”> <!-list-behavior =简单的前缀-word = mark-type = none max-label-size = 9->
  • •含有木质纤维素的材料对于清洁能源生产是可持续的
  • •可以从甘蔗废行李中生产生物乙醇
  • •可通过表面响应方法优化操作参数(时间,温度和酸浓度)。
  • •水解,发酵和蒸馏过程参数对生物乙醇收率起着重要作用。
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