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一种受类似降落伞的婆罗门参果实启发的可生物降解多孔飞行器,用于环境保护。

A Biodegradable, Porous Flier Inspired by a Parachute-Like Tragopogon Fruit for Environmental Preservation.

作者信息

Mariani Stefano, Cikalleshi Kliton, Ronzan Marilena, Filippeschi Carlo, Naselli Giovanna Adele, Mazzolai Barbara

机构信息

Bioinspired Soft Robotics Laboratory, Istituto Italiano di Tecnologia, Via Morego 30, Genova, 16163, Italy.

The Biorobotics Institute, Scuola Superiore Sant'Anna, Pontedera, 56025, Italy.

出版信息

Small. 2025 Jan;21(3):e2403582. doi: 10.1002/smll.202403582. Epub 2024 Sep 17.

Abstract

New devices inspired by flying seeds, or more technically by fruits with dispersal units, could have a significant impact for environmental monitoring and aerial seeding. Among the various types of dispersal units (e.g., winged, gliding), parachuted or plumed units offer the lowest vertical descent speed (i.e., 0.3-0.7 m s), making them an appealing solution for wind-driven distribution over large areas. Here, a biodegradable and porous parachute flier based on cellulose acetate, inspired by a Tragopogon pratensis fruit is presented. A micrometric-thick pappus is 3D printed and integrated with a porous colorimetric indicator or a porous beak, with micrometric pores, fabricated through injection molding and leaching techniques. Thanks to the bioinspired design and the lightweight porous structure, the artificial Tragopogon mimics the aerodynamics and descent speed of the natural species. Its feasibility is demonstrated in aerial seeding by integrating the beak with a mustard seed (as a model), and in environmental monitoring by coupling it with colorimetric indicators for rain pH and nitrate levels in soils. The proposed flier represents a significant advancement as it is the first parachute-like biodegradable solution, seamlessly integrated into natural ecosystems, thus contributing to moving a step forward in artificial solutions with zero impact.

摘要

受飞籽启发,或者更准确地说是受带有传播单元的果实启发而研发的新型装置,可能会对环境监测和空中播种产生重大影响。在各种类型的传播单元中(例如有翼的、滑翔的),降落伞状或羽状单元的垂直下降速度最低(即0.3 - 0.7米/秒),这使其成为大面积风力驱动分布的理想解决方案。在此,展示了一种基于醋酸纤维素的可生物降解多孔降落伞飞行器,其灵感来自草地婆罗门参的果实。一个微米级厚的冠毛通过3D打印制成,并与一个多孔比色指示剂或一个带有微米级孔隙的多孔喙集成在一起,该多孔喙通过注塑成型和浸出技术制造。得益于这种仿生设计和轻质多孔结构,人造草地婆罗门参模仿了天然物种的空气动力学特性和下降速度。通过将喙与芥菜种子(作为模型)集成用于空中播种,以及将其与用于测量雨水pH值和土壤中硝酸盐水平的比色指示剂耦合用于环境监测,证明了其可行性。所提出的飞行器代表了一项重大进展,因为它是首个类似降落伞的可生物降解解决方案,能够无缝融入自然生态系统,从而有助于在零影响的人工解决方案方面向前迈进一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd15/11753481/bcca3af39ee9/SMLL-21-2403582-g003.jpg

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