气候依赖的燃烧 Ganoderma lucidum 生物质,以提高其转化为绿色能源的可变性
Hanlin Cao1, Hongda Zhan2, Jianying Qi3
1Technical Centre for Soil, Agriculture and Rural Ecology and Environment, Ministry of Ecology and Environment, Beijing, 100012, China.
概括
在N2/O2大气层中,光的生物质燃烧效率比CO2/O2大气层更高. 这项研究为将GL残留物转化为可持续能源提供了基础.
科学领域:
- 生物质能源转换生物质能源转换
- 在热化学加工过程中进行热化学加工.
- 循环经济原则循环经济原则
背景情况:
- 对可持续能源的需求不断增长.
- 与化石燃料相关的环境问题.
- 需要有效利用生物质资源.
研究的目的:
- 量化Ganoderma lucidum (GL) 生物质的依赖大气的燃烧情况.
- 确定GL燃烧的热力学和运动参数.
- 提高GL生物质的循环性和可变性.
主要方法:
- 大气依赖性燃烧分析 (N2/O2与CO2/O2) 的情况.
- 使用Ozawa-Flynn-Wall和Kissinger-Akahira-Sunose方法确定热力学和运动参数.
- 分析气体燃烧产品和灰的行为.
主要成果:
- 燃烧过程分为三个阶段:除去水分,释放挥发性物质和焦炭燃烧.
- 与CO2大气相比,N2/O2的燃烧性能在N2/O2大气中优越.
- 在N2/O2 (大约) 中,激活能量更高. 283-288 kJ/mol) 低于CO2/O2 (大约2~3个小时). 233-235 kJ/mol) 的时间.
- 氧化燃料的燃烧降低了灰形成的风险.
结论:
- GL生物质燃烧特性受大气组成的影响.
- 优化燃烧大气 (N2/O2) 提高了效率和可变性.
- 这些发现支持Ganoderma lucidum残留物的可持续能源潜力.
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