Preparation and Characterization of Cellulose Nanoparticles from Agricultural Wastes and Their Application in Polymer Composites

Uddin, M. H, Haque, M. M
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Abstract

, Page no - | ABSTRACT | PDF | FULL TEXT | e-PUB Background: The development of innovative eco-sustainable bio-nano-composites materials based on cellulose nanomaterials obtained from agricultural waste such as rapeseed plant straw and polymeric materials with improved properties. At first, cellulose was extracted from rapeseed plant straw and cellulosic and no cellulosic materials were estimated. It was found that the rapeseed plant straw contained about 43.48 wt.% cellulosic materials and 56.52 wt.% no cellulosic materials. It was also found that the rapeseed plant straw content about 34.84 wt.% α- cellulose. Then, nano-cellulose was prepared by acid hydrolysis of α -cellulose obtained from rapeseed plant straw. Poly vinyl acetate (PVAc) was prepared by soap free emulsion polymerization of vinyl monomer. Natural rubber (NR) collected as latex was oxidized by KMnO4. Blends of NR and oxidized NR with PVAc of different compositions such as NR60/PVAc40, NR40/PVAc60, ONR60/PVAc40, ONR40/PVAc60 were prepared by mixing NR latex and PVAc emulsion and followed by drying in an oven at 60°C. Composites of NR60/PVAc40 and ONR60/PVAc40 reinforced nano-cellulose (NC) were also prepared in similar way. The blends and composites were then characterized by FTIR, SEM, and Tensile test (TS). FTIR analysis confirmed the oxidation of NR and shown the variation of the functional groups in the blends and composites compared with the FTIR spectrum of NR, ONR and PVAc. SEM study exhibited that the nano-cellulose were dispersed within NR/PVAc and ONR/PVAc blends matrices with a little agglomeration. The tensile test results showed that the strength in composites was increased due to the reinforcing effect of nano-cellulose (NC). Objectives: The aim of this study is to assess the Preparation and characterization of binary blends of NR and oxidized NR with PVAc. Methods: This is an observational study. The study used to be carried out in the admitted patient’s Department of Applied Chemistry and Chemical Engineering, Islamic University, Kushtia-7003, Bangladesh. The duration of the period from Data was entered in MS Excel and Statistical analysis was done using SPSS trial version. Results: This study shows that the according to Constituent, Cellulose was 43.4822%, Alpha-Cellulose were 34.8427% and Cellulose were 8.6395%. And according to Source, Rice Straw were 32.15% %, Sugarcane were 41-43%, Rye Straw were 31.8-42.64%, Corn Stalks were 29.80% and Wheat Straw were 34-40%. Conclusion: Novel eco-friendly bio-nano-composites substances primarily based on renewable and sustainable assets namely natural rubber (NR) and nano-cellulose received from rapeseed plant straw as properly as poly vinyl acetate (PVAc) have been developed. In order to enhance the interfacial interactions amongst the composite factors such as NR, PVAc and NC, oxidation of the NR latex was once carried out by way of KMnO4 before blending mixing with PVAc emulsion and NC suspension.
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农业废弃物纤维素纳米颗粒的制备、表征及其在高分子复合材料中的应用
摘要| PDF |全文| e-PUB背景:基于从油菜籽植物秸秆等农业废弃物中提取的纤维素纳米材料和性能改进的高分子材料,开发创新的生态可持续生物纳米复合材料。首先,从油菜籽植物秸秆和纤维素中提取纤维素,没有对纤维素材料进行估计。结果表明,油菜籽植物秸秆中纤维素含量为43.48 wt.%,无纤维素含量为56.52 wt.%。同时还发现,油菜植株秸秆中α-纤维素的含量约为34.84 wt.%。然后,以油菜籽秸秆为原料,对α -纤维素进行酸水解制备纳米纤维素。以乙烯基单体为原料,采用无皂乳液聚合法制备了聚醋酸乙烯酯(PVAc)。用KMnO4氧化天然橡胶(NR)作为乳胶。通过将NR乳胶与PVAc乳液混合,在60℃的烘箱中干燥,制备了NR和氧化NR与不同组成的PVAc (NR60/PVAc40、NR40/PVAc60、ONR60/PVAc40、ONR40/PVAc60)共混物。采用相同的方法制备了NR60/PVAc40和ONR60/PVAc40增强纳米纤维素(NC)复合材料。然后通过FTIR, SEM和拉伸测试(TS)对共混物和复合材料进行表征。FTIR分析证实了NR的氧化作用,并显示了与NR、ONR和PVAc的FTIR光谱相比,共混物和复合材料中官能团的变化。SEM研究表明,纳米纤维素分散在NR/PVAc和ONR/PVAc共混基质中,并有少量团聚现象。拉伸试验结果表明,纳米纤维素(NC)的增强作用提高了复合材料的强度。目的:本研究的目的是评估NR和氧化NR与PVAc二元共混物的制备和表征。方法:观察性研究。该研究过去是在孟加拉国库什蒂亚-7003伊斯兰大学应用化学与化学工程系进行的。在MS Excel中输入数据的期间持续时间,使用SPSS试用版进行统计分析。结果:纤维素含量为43.4822%,α -纤维素含量为34.8427%,纤维素含量为8.6395%。其中,稻秆占32.15%,甘蔗占41 ~ 43%,黑麦秸秆占318 ~ 42.64%,玉米秸秆占29.80%,小麦秸秆占34 ~ 40%。结论:新型的生态友好型生物纳米复合材料主要基于可再生和可持续的资产,即天然橡胶(NR)和从油菜籽植物秸秆中提取的纳米纤维素以及聚醋酸乙烯酯(PVAc)。为了增强NR、PVAc和NC等复合因子之间的界面相互作用,在与PVAc乳液和NC悬浮液共混前,用KMnO4对NR胶乳进行了氧化。
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