首页> 外文学位 >Coupled ozonation-anaerobic digestion of glycerol for biomethane production.
【24h】

Coupled ozonation-anaerobic digestion of glycerol for biomethane production.

机译:耦合的臭氧氧化-厌氧消化甘油以生产生物甲烷。

获取原文
获取原文并翻译 | 示例

摘要

The demand for renewable energy has increased significantly over the last few decades due to limited fossil fuel reserves and concern over their contribution to greenhouse gas emissions. To meet the demand for renewable energy and finding an alternative fuel source to fossil fuels, emphasis has been placed on the use of biofuels from biomass resources. The production of one of the biofuels, biodiesel results in the generation of crude glycerol at rate of 10% on weight basis. In order to maintain environmentally sustainable and economically viable biodiesel production, it is essential to find alternative use for crude glycerol. The goal of this research was to improve methane (CH 4) production from glycerol using coupled ozonation-anaerobic digestion process. To achieve the goal, the following objectives were completed: (1) investigated the enhancements in CH4 production due to preozonation of glycerol, (2) evaluated the effects of operational parameters, such as substrate to inoculum ratio and temperature, and (3) compared energy input vs. energy output of coupled ozonation-anaerobic digestion process.;Anaerobic digestion experiments were conducted at bench-scale to test the feasibility of coupled ozonation-anaerobic digestion of glycerol. A glycerol solution ozonated for 5, 10, 15, and 20 minutes was subsequently anaerobically digested for 20 days. Results show an improvement in CH 4 production in this experiment compared to anaerobic digestion of nonozonated glycerol. Anaerobic digesters containing glycerol ozonated for 20 minutes produced about 25% more CH4 than that of the anaerobic digesters using non-ozonated glycerol. In this same set of experiments, the mL of CH 4/mg of COD oxidized varied in the range of 0.51--0.79.;To examine the effect of the substrate to inoculum ratio on CH4 production, anaerobic digestion experiments were conducted at substrate/inoculum ratios of 1:1, 1:1.5, and 1:2.3 using glycerol solution ozonated for 20 minutes as a substrate. The results showed that decreasing the substrate/inoculum ratio from 1:1 to 1:2.3 reduced the CH4 production by 37.9%.;Under the experimental conditions used in this study, glycerol ozonated for 5 min resulted in 7 kWh energy gain per kWh energy input, while 20 min of ozonation yielded 2 kWh of energy per kWh energy input. The implications of the findings in this research are that the proposed process could be a viable solution for the surplus crude glycerol generated during biofuels production. This process increases CH4production, as well as reduce the amount of glycerol sent to landfills. Thus, the couple ozonation-anaerobic digestion process has the potential to contribute to the long-term economic viability and sustainability of biofuels.
机译:在过去的几十年中,由于化石燃料的储量有限以及人们担心其对温室气体排放的影响,对可再生能源的需求已大大增加。为了满足对可再生能源的需求并找到化石燃料的替代燃料来源,重点已放在利用生物质资源中的生物燃料。一种生物燃料,生物柴油的生产导致以重量计10%的比例生成粗甘油。为了维持环境可持续的和经济上可行的生物柴油生产,必须找到粗甘油的替代用途。这项研究的目标是使用臭氧氧化-厌氧消化工艺,改善甘油的甲烷(CH 4)生产。为了实现该目标,完成了以下目标:(1)研究了甘油预臭氧化后CH4产量的提高;(2)评估了操作参数(如底物与接种物的比例和温度)的影响,以及(3)比较臭氧-厌氧消化耦合过程的能量输入与能量输出之间的关系;在实验室规模下进行厌氧消化实验,以测试甘油臭氧-厌氧-耦合消化的可行性。臭氧化5、10、15和20分钟的甘油溶液随后厌氧消化20天。结果表明,与非臭氧化甘油的厌氧消化相比,该实验中CH 4的产生有所改善。含甘油进行20分钟臭氧处理的厌氧消化池产生的CH4较使用非臭氧化甘油的厌氧消化池产生的CH4多约25%。在同一组实验中,氧化的CH 4 / mg COD的毫升数在0.51--0.79范围内变化;为了检查底物接种量对CH4产生的影响,在底物/使用甘油溶液臭氧化20分钟作为底物的1:1、1:1.5和1:2.3接种比例。结果表明,将底物/接种物比例从1:1降低到1:2.3会使CH4产生减少了37.9%.;在本研究使用的实验条件下,将甘油臭氧化5分钟可将每kWh能量获得7 kWh能量增加输入,而20分钟的臭氧化产生每千瓦时能量输入2千瓦时的能量。这项研究发现的意义在于,所提出的方法可能是生物燃料生产过程中产生的多余粗甘油的可行解决方案。此过程增加了CH4的产生,并减少了送入垃圾填埋场的甘油量。因此,夫妇的臭氧氧化-厌氧消化过程具有促进长期经济可行性和生物燃料可持续性的潜力。

著录项

  • 作者

    Stone, Blaine Douglas.;

  • 作者单位

    San Diego State University.;

  • 授予单位 San Diego State University.;
  • 学科 Engineering Civil.;Engineering Environmental.
  • 学位 M.S.
  • 年度 2015
  • 页码 48 p.
  • 总页数 48
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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