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迈向从被囊动物中可扩展地分离纤维素纳米晶体的方法。

Towards the scalable isolation of cellulose nanocrystals from tunicates.

作者信息

Dunlop Matthew J, Clemons Craig, Reiner Richard, Sabo Ronald, Agarwal Umesh P, Bissessur Rabin, Sojoudiasli Helia, Carreau Pierre J, Acharya Bishnu

机构信息

Faculty of Sustainable Design Engineering, University of Prince Edward Island, Charlottetown, Canada.

Department of Chemistry, University of Prince Edward Island, Charlottetown, Canada.

出版信息

Sci Rep. 2020 Nov 5;10(1):19090. doi: 10.1038/s41598-020-76144-9.

Abstract

In order for sustainable nanomaterials such as cellulose nanocrystals (CNCs) to be utilized in industrial applications, a large-scale production capacity for CNCs must exist. Currently the only CNCs available commercially in kilogram scale are obtained from wood pulp (W-CNCs). Scaling the production capacity of W-CNCs isolation has led to their use in broader applications and captured the interest of researchers, industries and governments alike. Another source of CNCs with potential for commercial scale production are tunicates, a species of marine animal. Tunicate derived CNCs (T-CNCs) are a high aspect ratio CNC, which can complement commercially available W-CNCs in the growing global CNC market. Herein we report the isolation and characterization of T-CNCs from the tunicate Styela clava, an invasive species currently causing significant harm to local aquaculture communities. The reported procedure utilizes scalable CNC processing techniques and is based on our experiences from laboratory scale T-CNC isolation and pilot scale W-CNC isolation. To our best knowledge, this study represents the largest scale where T-CNCs have been isolated from any tunicate species, under any reaction conditions. Demonstrating a significant step towards commercial scale isolation of T-CNCs, and offering a potential solution to the numerous challenges which invasive tunicates pose to global aquaculture communities.

摘要

为了使纤维素纳米晶体(CNC)等可持续纳米材料能够应用于工业领域,必须具备大规模生产CNC的能力。目前,唯一可商购的千克级CNC是从木浆中获得的(W-CNC)。扩大W-CNC的分离生产能力已使其在更广泛的应用中得到使用,并引起了研究人员、行业和政府的关注。另一种具有商业规模生产潜力的CNC来源是被囊动物,一种海洋动物。源自被囊动物的CNC(T-CNC)是一种高长径比的CNC,在不断增长的全球CNC市场中可以补充市售的W-CNC。在此,我们报告了从入侵物种柄海鞘中分离和表征T-CNC的过程,该物种目前正在对当地水产养殖社区造成重大危害。所报道的方法采用了可扩展的CNC加工技术,并基于我们在实验室规模的T-CNC分离和中试规模的W-CNC分离中的经验。据我们所知,这项研究代表了在任何反应条件下从任何被囊动物物种中分离出T-CNC的最大规模。这表明在T-CNC的商业规模分离方面迈出了重要一步,并为入侵被囊动物给全球水产养殖社区带来的众多挑战提供了潜在的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88a8/7645590/76a8d27d4243/41598_2020_76144_Fig1_HTML.jpg

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