# VTT

F3——Films for Future平台（与LUT大学合作）已于2026年3月达到100%纤维素透明薄膜和涂层的中试规模，用于包装和柔性生物电子。

Source: https://cn.bioecon.ru/companies/vtt/
Updated: 2026-06-29

- 国家: Finland

## 可核验事实

| 事实 | 数值 | 来源 |
| --- | --- | --- |
| 合作 | 芬兰VTT技术研究中心与LUT大学（牵头），并与34家工业企业合作 | https://cris.vtt.fi/en/projects/films-for-future/, https://packagingeurope.com/news/vtt-and-lut-university-wrap-up-cellulose-based-film-and-coating-project/14371.article, https://www.prnewswire.com/news-releases/finnish-bio-based-materials-project-advances-100-cellulose-based-film-and-coating-technology-as-a-scalable-alternative-to-fossil-based-packaging-302796455.html, https://www.vttresearch.com/en/news-and-ideas/finnish-bio-based-materials-project-advances-100-cellulose-based-film-and-coating |
| 研究方向 | 可持续、100%纤维素基透明薄膜与涂层的开发及中试规模生产，用以替代食品及其他包装中的化石基塑料 | https://cris.vtt.fi/en/projects/films-for-future/, https://materialdistrict.com/article/100-cellulose-films-and-coatings-offer-scalable-alternative-to-plastic-packaging/, https://packagingeurope.com/news/vtt-and-lut-university-wrap-up-cellulose-based-film-and-coating-project/14371.article, https://www.prnewswire.com/news-releases/finnish-bio-based-materials-project-advances-100-cellulose-based-film-and-coating-technology-as-a-scalable-alternative-to-fossil-based-packaging-302796455.html, https://www.vttresearch.com/en/news-and-ideas/finnish-bio-based-materials-project-advances-100-cellulose-based-film-and-coating |
| 实验设施 | 位于芬兰埃斯波的VTT Cellulose Films中试线与VTT Bioruukki中试中心 | https://cris.vtt.fi/en/projects/films-for-future/, https://www.vttresearch.com/en/ourservices/cellulose-films-and-coatings, https://www.vttresearch.com/en/technology-infrastructures/vtt-bioruukki-pilot-centre |
| 科研资助 | 由欧洲区域发展基金（ERDF）资助 | https://cris.vtt.fi/en/projects/films-for-future/, https://packagingeurope.com/news/vtt-and-lut-university-wrap-up-cellulose-based-film-and-coating-project/14371.article, https://www.prnewswire.com/news-releases/finnish-bio-based-materials-project-advances-100-cellulose-based-film-and-coating-technology-as-a-scalable-alternative-to-fossil-based-packaging-302796455.html, https://www.vttresearch.com/en/news-and-ideas/finnish-bio-based-materials-project-advances-100-cellulose-based-film-and-coating |
| 主要研究人员 | Ali Harlin（VTT研究教授）、Vinay Kumar（VTT高级科学家）及Ville Leminen（LUT大学包装技术教授） | https://cris.vtt.fi/en/projects/films-for-future/, https://packagingeurope.com/news/vtt-and-lut-university-wrap-up-cellulose-based-film-and-coating-project/14371.article, https://www.packagingstrategies.com/articles/106497-finnish-project-advances-100-cellulose-based-film-and-coating-technology, https://www.prnewswire.com/news-releases/finnish-bio-based-materials-project-advances-100-cellulose-based-film-and-coating-technology-as-a-scalable-alternative-to-fossil-based-packaging-302796455.html, https://www.vttresearch.com/en/news-and-ideas/finnish-bio-based-materials-project-advances-100-cellulose-based-film-and-coating |
| 员工人数 | 2,386名员工（VTT总数，截至2024年） [中等置信度] | https://www.vttresearch.com/sites/default/files/2025-03/vtt_annual_and_sustainability_report_2024.pdf |

独立来源: cris.vtt.fi, materialdistrict.com, packagingeurope.com, packagingstrategies.com, prnewswire.com, vttresearch.com

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