# Yale University

研发仿生再生木质化，以生产超硬、可持续的竹类结构材料。

Source: https://cn.bioecon.ru/companies/yale-university/
Updated: 2026-07-09

- 国家: United States

## 可核验事实

| 事实 | 数值 | 来源 |
| --- | --- | --- |
| 隶属机构 | 耶鲁大学材料创新中心（CMI） | https://cmi.yale.edu/sustainable-materials |
| 研究方向 | 可持续材料、木材与竹材结构工程、仿生再生木质化、产业生态学及材料创新 | https://cmi.yale.edu/news, https://cmi.yale.edu/sustainable-materials, https://doi.org/10.1002/exp.20250303 |
| 实验设施 | 材料创新中心（CMI）、耶鲁建筑实验室 | https://cmi.yale.edu/sustainable-materials, https://planetarysolutions.yale.edu/building-dense-cities-with-forest-biomass-resilient-regional-forests-and-regenerative-urban |
| 科研资助 | 耶鲁行星解决方案项目资助、ARPA-E经费、美国能源部资助 | https://cmi.yale.edu/news, https://planetarysolutions.yale.edu/building-dense-cities-with-forest-biomass-resilient-regional-forests-and-regenerative-urban |
| 论文产出 | 仿生再生木质化实现超硬且可持续的竹材结构材料（Exploration，2026） | https://doi.org/10.1002/exp.20250303 |
| 主要研究人员 | 胡良兵、姚源、Alan Organschi、Julie Zimmerman、Paul Anastas、Mark Ashton、Phillip Bernstein、Anna Dyson、Nikhil Malvankar | https://cmi.yale.edu/news, https://cmi.yale.edu/sustainable-materials, https://planetarysolutions.yale.edu/building-dense-cities-with-forest-biomass-resilient-regional-forests-and-regenerative-urban |

独立来源: cmi.yale.edu, doi.org, planetarysolutions.yale.edu

## 技术

- [培育木材与植物支架](https://cn.bioecon.ru/technology/cultivated-wood-plant-scaffolds/)
