首页> 外文期刊>Journal of Applied Phycology >Thermo-acidic pretreatment of marine brown algae Fucus vesiculosus to increase methane production-a disposal principle for macroalgae waste from beaches
【24h】

Thermo-acidic pretreatment of marine brown algae Fucus vesiculosus to increase methane production-a disposal principle for macroalgae waste from beaches

机译:热酸预处理海藻褐藻(Fusus vesiculosus)以增加甲烷的产生-海滩大型藻类废物的处理原则

获取原文
获取原文并翻译 | 示例
           

摘要

Marine biomass is washed ashore on beaches used for recreational purposes causing problems for local and spa authorities. The present management of marine waste biomass does not include a sustainable disposing policy and biomass is dumped inadequately. Since macroalgae are receiving increasing attention in the field of biofuel production, this "spare" biomass may present a potential feedstock in biogas plants. The present study shows an increase in methane production from macroalgae Fucus vesiculosus collected from the beach by applying thermo-acidic pretreatment to enhance hydrolysis of polymeric molecules in biomass. Flue gas condensate (FGC), an industrial acidic waste product accumulating in power plants, was used for acid hydrolysis as well as technical HCl and water. Biomethane potential tests were carried out on pretreated samples. Pretreatment conditions of 80 A degrees C using 0.2 M HCl and a reaction time of 24 h resulted in a +140 % increase of methane yield in biogas production. FGC and hot-water pretreatment at 80 A degrees C for 24 h yielded +38 and +51 % more methane than untreated biomass, respectively. Lower temperature pretreatment (20 and 50 A degrees C) did not show considerable improvement of methane yield neither in water nor in acidic media except when using 0.2 M HCl at 50 A degrees C (+83 %). An extended pretreatment reaction time of 24 h did not reveal any additional recovery of methane compared to a reaction time of 2 h. The full pretreatment effect is already deployed below 2 h. To attain maximum efficiency in the pretreatment process, the amendatory combination of both heat and acidity is necessary.
机译:海洋生物质在用于娱乐目的的海滩上被冲上岸,给地方和水疗部门造成麻烦。目前对海洋废物生物质的管理不包括可持续的处置政策,并且生物质的弃置不充分。由于大型藻类在生物燃料生产领域受到越来越多的关注,因此这种“备用”生物质可能会成为沼气厂的潜在原料。本研究表明,通过应用热酸预处理来增强生物质中聚合物分子的水解作用,可以从海滩上收集的大型藻类海藻岩藻中产生的甲烷增加。烟气冷凝物(FGC)是一种发电厂中积累的工业酸性废物,被用于酸水解以及工业HCl和水。对经过预处理的样品进行了生物甲烷潜力测试。使用0.2 M HCl于80 A的预处理条件和24 h的反应时间导致沼气生产中甲烷产率提高+ 140%。在80 A的温度下进行FGC和热水预处理24 h分别比未处理的生物质多生成+38和+51%的甲烷。低温预处理(20和50 A摄氏度)在水和酸性介质中均未显示甲烷产率的显着提高,除非在50 A摄氏度(+ 83%)下使用0.2 M HCl。与2小时的反应时间相比,延长的24小时的预处理反应时间未显示出任何其他的甲烷回收率。完全的预处理效果已在2小时以下部署。为了在预处理过程中获得最大的效率,必须同时进行热和酸度的修正组合。

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