通过使用多效蒸发器,高效地提高生物基碳酸的度
Srija Balachandran1, Tobias De Somer1, Joël Hogie1
1Laboratory for Circular Process Engineering (LCPE), Department of Green Chemistry and Technology, Ghent University, Graaf Karel De Goedelaan 5, 8500, Kortrijk, Belgium.
Journal of environmental management
|October 15, 2024
概括
本研究提出了一种有效的方法,可以从废物中缩短链碳酸 (SCCA),实现高产量,减少能源消耗和较低的碳足迹,相比化石替代品.
科学领域:
- 生物化学工程 生物化学工程
- 废弃物价值化 废弃物价值化 废弃物价值化
- 可持续化学 可持续化学
背景情况:
- 城市固体废物 (MSW) 有机分离是通过无氧发酵产生短链碳酸 (SCCA) 的来源.
- 固分消化的剩余生物气可以为SCCA的缩提供能量.
研究的目的:
- 提出和模拟一个集成的流程链,以从MSW上集SCCA.
- 评估拟议过程的能源效率,产量和碳足迹.
主要方法:
- 使用Aspen Plus®进行工艺模拟,用于多效应蒸发器场景.
- 在不同压力范围内验证模拟模型.
- 对各种蒸发器配置的技术经济评估.
主要成果:
- 将SCCA的度从20g/L提高到526g/L,使用具有最小酸损失的四效蒸发器.
- 能源需求量为9.8千瓦时/千克SCCA,由固体残留物消化的生物气供应.
- 与基于化石的SCCA生产相比,碳足迹减少50% (1.24公斤CO2eq/公斤SCCA).
结论:
- 综合的工艺链是高产量的SCCA从MSW上度有效.
- 该过程提供了显著的环境效益,包括减少碳排放.
- 该研究为实施这种可持续的SCCA生产方法提供了技术经济基础.
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