进步的循环塑料:用于高产率乙烯生产的热解油的水处理
Anas Jamil Abdulrahman1, Marvin Kusenberg1, Miloš Auersvald1
1Laboratory for Chemical Technology (LCT), Department of Materials, Textiles and Chemical Engineering, Faculty of Engineering & Architecture, Ghent University, B-9052 Zwijnaarde, Belgium.
水处理从塑料废物中提升了热解油,使其适合蒸汽裂解. 这一过程产生了高质量的烯酸,促进了化学回收和塑料循环经济.
科学领域:
- 化学工程是化学工程的重要组成部分.
- 材料科学 材料科学 材料科学
- 环境科学 环境科学
背景情况:
- 塑料废物危机需要超越机械回收的先进回收方法.
- 化学回收,特别是热解,然后蒸汽裂解,提供了一条将塑料废物转化为有价值的烯酸的途径.
- 热解油需要升级才能达到有效使用的工业原料标准.
研究的目的:
- 研究水处理作为从混合塑料废弃物中提炼的热解油的升级策略.
- 为了表征原始和水处理的热解油分量.
- 为了评估水处理热解油在蒸汽破碎机中的性能.
主要方法:
- 来自混合塑料废物的热解油被蒸成柴油范围的部分.
- 用二维气相色谱 (GC x GC) 进行了详细的组成分析.
- 基板级蒸汽裂解实验是用原始和水处理过的热解油进行的.
主要成果:
- 水处理显著减少了 (<10毫克·公斤-1),烯酸 (8重量%) 和氧气 (无法检测),符合工业规格.
- 在880°C时,水处理热解柴油实现了高乙烯产量 (高达32%重量%),表现优于化石石油.
- 水处理油的裂变抑制了CO和,和 (BTX) 等不良副产品.
结论:
- 水处理是炼化热解油成可行的裂原料的关键步骤.
- 这种升级过程有助于将废物材料整合到现有的石化基础设施中.
- 该研究支持推进化学回收和塑料循环经济.
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