用光合作用生物材料进行双碳封存
Dalia Dranseike1, Yifan Cui1, Andrea S Ling2
1Macromolecular Engineering Laboratory, Department of Mechanical and Process Engineering, ETH Zurich, Zurich, Switzerland.
Nature communications
|April 23, 2025
概括
工程生物材料通过光合作用和微生物诱导的碳酸盐沉提供双重二氧化碳封存. 这种可扩展的技术对碳中和基础设施和减轻二氧化碳排放充满希望.
科学领域:
- 生物材料工程 生物材料工程
- 环境科学 环境科学
- 合成生物学 合成生物学
背景情况:
- 自然碳捕获是高效的,但难以控制.
- 生物系统为碳捕获提供了独特的能力.
- 控制二氧化碳封存的生物过程是一个重大挑战.
研究的目的:
- 设计一种新型的光合作用生物材料,用于二重二氧化碳 (CO2) 封存.
- 为了利用生物质生产和微生物诱导的碳酸盐沉 (MICP) 来增强二氧化碳捕获.
- 开发一种可扩展和低维护的碳捕获解决方案.
主要方法:
- 在可打印的聚合物水凝网络中,光合作用微生物 (?? 菌) 的固定.
- 活体结构的数字设计和制造,以优化光线和营养物质的输送.
- 长期培养封装的蓝藻细菌超过一年.
- 通过生物质生产和碳酸盐形成量化二氧化碳捕获率.
主要成果:
- 工程生物材料展示了双重二氧化碳封存能力.
- 光合作用生物物质隔离了每克水凝2.2 ± 0.9毫克的二氧化碳,长达30天.
- 在400天的时间里,该物质每克隔离了26±7毫克的二氧化碳.
- 已经成功地长期培养了封装的蓝藻细菌.
结论:
- 光合作用生物材料为有效和可扩展的碳捕获提供了一个可行的策略.
- 生物质生产和MICP的双重机制提高了二氧化碳捕获潜力.
- 这项技术有望发展碳中和基础设施和减排应用.
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