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用于生产绿色复合材料的香蕉树干纤维化学改性

Chemical Modification of Banana Trunk Fibers for the Production of Green Composites.

作者信息

Sathasivam Kathiresan V, Haris Mas Rosemal Hakim Mas, Fuloria Shivkanya, Fuloria Neeraj Kumar, Malviya Rishabha, Subramaniyan Vetriselvan

机构信息

Faculty of Applied Science, AIMST University, Kedah 08100, Malaysia.

School of Chemical Sciences, Universiti Sains Malaysia, Minden, Penang, George Town 11800, Malaysia.

出版信息

Polymers (Basel). 2021 Jun 11;13(12):1943. doi: 10.3390/polym13121943.

Abstract

Natural fibers have proven to be excellent reinforcing agents in composite materials. However, a critical disadvantage of natural fibers is their hydrophilic nature. In this study, banana trunk fibers were mechanically damaged using a high-speed blender, and the resulting fibers (MDBTF) were treated with (i) stearic acid (SAMDBTF) and (ii) calcium carbonate coated with 5% (wt/wt) stearic acid (SACCMDBTF). The moisture sorption, oil sorption and thermal properties of the fibers were determined. The morphology, roughness and the functional groups present were also investigated. Study data of the present study indicate that SACCMDBTF exhibited a faster oil sorption capacity than SAMDBTF. Fast uptake of the oil occurred during the first 5 min, whereby the quantity of oil sorbed in SAMDBTF and SACCMDBTF was 5.5 and 15.0 g oil g fiber, respectively. The results of a used engine oil uptake study revealed that SAMDBTF and SACCMDBTF sorbed 9.5 and 18.3 g/g-1 fiber, respectively, at equilibrium. The obtained results suggest that the mechanically damaged process improved the thermal stability of the fibers. This work reveals that the inclusion of stearic-acid-coated calcium carbonate into the interstices of MDBTF yields is environmentally safe for green hydrophobic composites. SACCMDBTF are used as efficient adsorbents for the removal of spilled oil on aqueous media.

摘要

天然纤维已被证明是复合材料中优异的增强剂。然而,天然纤维的一个关键缺点是其亲水性。在本研究中,使用高速搅拌机对香蕉树干纤维进行机械损伤,然后将所得纤维(MDBTF)分别用(i)硬脂酸(SAMDBTF)和(ii)涂覆有5%(重量/重量)硬脂酸的碳酸钙(SACCMDBTF)进行处理。测定了纤维的吸湿、吸油和热性能。还研究了纤维的形态、粗糙度和存在的官能团。本研究的数据表明,SACCMDBTF的吸油能力比SAMDBTF更快。在最初5分钟内快速吸收油,其中SAMDBTF和SACCMDBTF吸附的油量分别为5.5和15.0克油/克纤维。用过的发动机油吸收研究结果表明,在平衡时,SAMDBTF和SACCMDBTF分别吸附9.5和18.3克/克-1纤维。所得结果表明,机械损伤过程提高了纤维的热稳定性。这项工作表明,将硬脂酸包覆的碳酸钙纳入MDBTF的孔隙中对绿色疏水复合材料在环境方面是安全的。SACCMDBTF用作去除水介质上溢油的有效吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0628/8230676/6f6a83820cdf/polymers-13-01943-g001.jpg

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