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Identifying Juncus plant as viable source for the production of micro- and nano-cellulose fibers: Application for PVA composite materials development

机译:鉴定Juncus植物作为生产微型和纳米纤维素纤维的可行来源:用于PVA复合材料的应用

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摘要

With the aim of identifying new, renewable and sustainable sources for the production of bio-nano-materials, cellulose microfibers (CMF) and cellulose nanofibrils (CNF) were successfully produced from the widely available Juncus plant. CMF with average microfibers diameter of 3.5 mu m were produced by conventional alkaline and bleaching treatments with a yield of around 36 %. CNF with average nanofibrils diameter of 2.5 nm were isolated from CMF by a combination of TEMPO-oxidation and mechanical disintegration processes. The morphology and physico-chemical properties of raw Juncus plant stems, CMF, TEMPO-oxidized CMF (T-CMF) and CNF were evaluated using several characterization techniques. It was found that the applied chemical treatments were effective in producing pure CMF and CNF materials having typical cellulose I structure, high crystallinity and good thermal stability. The as-extracted CNF were utilized to develop CNF-reinforced PVA nanocomposite films, and their transparency, thermal stability and mechanical properties were investigated and compared with the CMF and T-CMF reinforced PVA composite materials. It was found that the PVA nanocomposite material containing 5 wt% CNF exhibited a tensile modulus and strength of 3.3 GPa and 110 MPa, respectively, which are higher than those observed for neat PVA and PVA composites reinforced with 5 wt% CMF or T-CMF (modulus of 1.9 and 3.1 GPa and strength of 52 and 97 MPa, respectively). In contrast to CMF and T-CMF reinforced PVA composites, that displayed a reduced optical transmittance (ca. 57-70 % at 600 nm), the CNF-reinforced PVA nanocomposite material maintained the same transmittance of the neat PVA film (ca. 90 % at 600 nm), suggesting the good dispersion of CNF at the nanometric scale. These newly developed CNF could be considered as a potential nanofiller candidate for the preparation of PVA-based nanocomposite materials of high transparency and good mechanical properties.
机译:目的是识别用于生产生物纳米材料的新的,可再生和可持续的来源,从广泛可用的Juncus植物中成功地生产纤维素微纤维(CMF)和纤维素纳米纤维(CNF)。平均微纤维直径为3.5μm的CMF通过常规碱性和漂白处理产生,产率约为36%。通过凝固氧化和机械崩解方法的组合从CMF中分离平均纳米纤维直径为2.5nm的CNF。利用多种表征技术评估了原料juncus植物茎,CMF,凝固CMF(T-CMF)和CNF的形态和物理化学性质。结果发现,所应用的化学处理在生产具有典型纤维素I结构的纯CMF和CNF材料方面是有效的,具有高结晶度和良好的热稳定性。利用AS提取的CNF来显影CNF增强的PVA纳米复合膜,并研究其透明度,热稳定性和机械性能,并与CMF和T-CMF增强PVA复合材料进行比较。发现含有5wt%CNF的PVA纳米复合材料,分别表现出3.3GPa和110MPa的拉伸模量和强度,其高于用5wt%CMF或T-CMF加固的纯PVA和PVA复合材料的拉伸模量和110MPa的强度(分别为1.9和3.1GPa的模量,分别为52和97MPa的强度)。与CMF和T-CMF增强PVA复合材料相比,显着的光学透射率(约57-70%在600nm处),CNF增强的PVA纳米复合材料保持了整洁PVA膜的相同透射率(CA.90 %在600nm),表明CNF在纳米级的良好分散。这些新开发的CNF可以被认为是制备高透明度和良好机械性能的PVA基纳米复合材料的潜在纳米填充候选者。

著录项

  • 来源
    《Industrial Crops and Products》 |2020年第2020期|共11页
  • 作者单位

    Mohammed VI Polytech Univ UM6P Mat Sci &

    Nanoengn MSN Dept Lot 660 Benguerir 43150 Morocco;

    Univ Hassan II Casablanca Fac Sci Ben Msik Lab Ingn &

    Mat LIMAT BP 7955 Casablanca Morocco;

    Mohammed VI Polytech Univ UM6P Mat Sci &

    Nanoengn MSN Dept Lot 660 Benguerir 43150 Morocco;

    Mohammed VI Polytech Univ UM6P Mat Sci &

    Nanoengn MSN Dept Lot 660 Benguerir 43150 Morocco;

    Mohammed VI Polytech Univ UM6P Mat Sci &

    Nanoengn MSN Dept Lot 660 Benguerir 43150 Morocco;

    Moroccan Fdn Adv Sci Innovat &

    Res MAScIR Composites &

    Nanocomposites Ctr CNC Rabat Design Rue Mohamed El Jazouli Rabat 10100 Morocco;

    Mohammed VI Polytech Univ UM6P Mat Sci &

    Nanoengn MSN Dept Lot 660 Benguerir 43150 Morocco;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农作物;
  • 关键词

    Juncus plant; Cellulose; Cellulose nanofibrils; Polymer composites;

    机译:Juncus植物;纤维素;纤维素纳米纤维;聚合物复合材料;

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