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生亚麻纤维和亚麻短纤维的水化与吸附特性

Hydration and Sorption Properties of Raw and Milled Flax Fibers.

作者信息

Karoyo Abdalla H, Dehabadi Leila, Alabi Wahab, Simonson Carey J, Wilson Lee D

机构信息

Department of Chemistry, University of Saskatchewan, 110 Science Place, Saskatoon, Saskatchewan S7N 5C9, Canada.

Dr. Ma's Laboratories, Inc., Unit 4, 8118 North Fraser Way, Burnaby, British Columbia V5J 0E5, Canada.

出版信息

ACS Omega. 2020 Mar 11;5(11):6113-6121. doi: 10.1021/acsomega.0c00100. eCollection 2020 Mar 24.

Abstract

The physicochemical and hydration properties of mechanically modified flax fibers (FFs) were investigated herein. Raw flax fibers (FF-R) were ball-milled and sieved through mesh with various aperture sizes (420, 210, and 125 μm) to achieve modified samples, denoted as FF-420, FF-210, and FF-125, respectively. The physicochemical and hydration properties of FF-R with variable particle sizes were characterized using several complementary techniques: microscopy (SEM), spectroscopy (FT-IR, XRD, and XPS), thermoanalytical methods (DSC and TGA), adsorption isotherms using gas/dye probes, and solvent swelling studies in liquid HO. The hydration of FF biomass is governed by the micropore structure and availability of active surface sites, as revealed by the adsorption isotherm results and the TGA/DSC profiles of the hydrated samples. Gravimetric water swelling, water retention values, and vapor adsorption results provide further support that particle size reduction of FF-R upon milling parallels the changes in surface chemical and physicochemical properties relevant to adsorption/hydration in the modified FF materials. This study outlines a facile strategy for the valorization and tuning of the physicochemical properties of agricultural FF biomass via mechanical treatment for diverse applications in biomedicine, energy recovery, food, and biosorbents for environmental remediation.

摘要

本文研究了机械改性亚麻纤维(FFs)的物理化学和水化性质。将原始亚麻纤维(FF-R)进行球磨,并通过不同孔径尺寸(420、210和125μm)的筛网进行筛分,以获得改性样品,分别记为FF-420、FF-210和FF-125。使用多种互补技术对不同粒径的FF-R的物理化学和水化性质进行了表征:显微镜技术(扫描电子显微镜)、光谱技术(傅里叶变换红外光谱、X射线衍射和X射线光电子能谱)、热分析方法(差示扫描量热法和热重分析法)、使用气体/染料探针的吸附等温线以及在液态水中的溶剂溶胀研究。吸附等温线结果以及水合样品的热重分析/差示扫描量热曲线表明,FF生物质的水化受微孔结构和活性表面位点可用性的控制。重量法水膨胀、保水值和蒸汽吸附结果进一步证明,FF-R研磨后粒径的减小与改性FF材料中与吸附/水化相关的表面化学和物理化学性质的变化相似。本研究概述了一种简便的策略,通过机械处理对农业FF生物质的物理化学性质进行增值和调控,以用于生物医学、能量回收、食品以及环境修复用生物吸附剂等多种应用。

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