School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
Adv Mater. 2022 May;34(19):e2109367. doi: 10.1002/adma.202109367. Epub 2022 Apr 5.
Although paperless technologies are becoming ubiquitous, paper and paper-based materials remain one of the most widely used resources, predicted to exceed an annual total of 460 million metric tons by 2030. Given the environmental challenges, deleterious impact on natural resources, and waste associated with conventional wood-based paper manufacturing, developing more sustainable strategies to source, produce, and recycle paper from natural materials is essential. Here, the development and production of reusable and recyclable paper are reported. This approach offers a pathway for easily producing natural pollen grains via ecofriendly, economical, scalable, and low-energy fabrication routes. It is demonstrated that the pollen-based paper exhibits high-quality printability, readability, and erasability, enabling its reuse. Based on the pH-responsive morphological responses of engineered pollen materials, a method for hygro stable printing and on-demand unprinting is presented. The reusability of the pollen paper renders it more advantageous than conventional single-print wood-based paper. This study thus provides possible pathways to utilize non-allergenic pollen, which is renewable and naturally abundant, as a sustainable source of reusable paper. While this work primarily deals with paper, the methods described here can be extended to produce other products such as cartons and containers for the storage and transport of liquid and solid materials.
尽管无纸技术已经无处不在,但纸张和基于纸张的材料仍然是使用最广泛的资源之一,预计到 2030 年将超过每年 4.6 亿吨。鉴于环境挑战、对自然资源的有害影响以及传统木质纸制造所带来的浪费,开发更可持续的策略来从天然材料中获取、生产和回收纸张至关重要。在这里,报告了可重复使用和可回收纸张的开发和生产。这种方法提供了一种通过环保、经济、可扩展和低能耗的制造途径来轻松生产可重复使用的天然花粉颗粒的途径。结果表明,基于花粉的纸张具有高质量的可打印性、可读性和可擦除性,可实现重复使用。基于工程花粉材料对 pH 响应的形态响应,提出了一种用于湿稳定打印和按需不打印的方法。与传统的单印木质纸相比,花粉纸的可重复使用性使其具有更大的优势。因此,本研究为利用非过敏原性花粉作为可重复使用纸张的可持续来源提供了可能的途径,花粉是可再生且天然丰富的。虽然这项工作主要涉及纸张,但这里描述的方法可以扩展到生产其他产品,例如用于液体和固体材料储存和运输的纸箱和容器。