首页> 外文期刊>American Journal of Polymer Science and Technology >Production of Chitosan from Crab Shells Using an Aqueous Extract of Wood Ash for the Deacetylation of Chitin: An Innovative, Eco-friendly, and Low-cost Method
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Production of Chitosan from Crab Shells Using an Aqueous Extract of Wood Ash for the Deacetylation of Chitin: An Innovative, Eco-friendly, and Low-cost Method

机译:使用木灰水灰水提取物生产壳聚糖的生产,用于甲壳素的脱乙酰化:一种创新,环保和低成本的方法

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The importance of chitosan has grown significantly over the last years due to its medicinal, agricultural, and industrial applications, as well as the biodegradability properties. The present study aimed to describe for the first time, the preparation of chitosan from chitin using wood ash aqueous extract as an alkaline medium. Chitin was obtained from crab shells in a microbial fermentation process using fish viscera for protease. Pilled and milled sweet potatoes and cassava water extracts were used separately in the deproteinization and demineralization steps as sources of carbon. The obtained chitin samples were then converted into the respective chitosan samples (B-C2 and M-B2) by an innovative, low-cost, and eco-friendly method using an aqueous extract (pH=12.4) prepared from wood ash, instead of the chemical process using sodium hydroxide solution in the deacetylation of chitin. The yield of the obtained chitosan was found to be 11.5% for B-C2 and 9.4% for M-C2. The presence of chitosan was determined by the analysis of the FTIR spectrum of both samples. The degree of acetylation was found to be 77.3% and 83.2% for B-C2 and M-B2, respectively, based on the IR analysis of absorption bands at 3456 and 1636 cm~(-1), and 75.4% and 84.1% based on the potentiometric titration. The average molecular weight (192.1 kDa for B-C2 and 194.3 kDa for M-B2) was determined using the viscometer method. The solubility of B-C2 and M-B2 in 1% acetic acid was found to be 77.8% and 63.9%, respectively. The analysis of SEM photographs of B-C2 showed an amorphous morphology while M-B2 showed a crystalline morphology. The TGA and DSC curves obtained in a dynamic air atmosphere showed three degradation stages. In the main event (the second stage), an exothermic peak was observed at 355°C for B-C2 coupled with the weigh-loss of 7%, while for M-C2 was observed at 365°C coupled with weight-loss of 10%. Due to their high degree of deacetylation, low molecular weight, and viscosity, both chitosan samples could be utilized unambiguously in the agri-food field as a biofertilizer or as a bio-adsorbent in the wastewater treatment.
机译:由于其药用,农业和工业应用以及生物降解性特性,壳聚糖的重要性在过去几年中显着增长。目前的研究旨在首次描述,使用木灰水性提取物作为碱性介质,制备壳聚糖的壳聚糖。用鱼片用于蛋白酶从微生物发酵过程中从螃蟹壳中获得甲壳素。在脱蛋白化和脱矿化步骤中分别使用丸和碾碎的甘薯和木薯水提取物作为碳源。然后通过使用木灰制备的水性提取物(pH = 12.4)代替用氢氧化钠溶液在甲壳素的脱乙酰化中使用氢氧化钠溶液的化学方法。发现所得壳聚糖的产率为B-C2的11.5%和9.4%的M-C2。通过分析两个样品的FTIR光谱来确定壳聚糖的存在。对于B-C2和M-B2,发现乙酰化程度为77.3%和83.2%,基于3456和1636cm〜(-1)的吸收带分析,75.4%和84.1%关于电位滴定。使用粘度计方法测定平均分子量(192.1kDa的B-C2和M-B2的KDA)。 B-C2和M-B2在1%乙酸中的溶解度分别为77.8%和63.9%。 B-C2的SEM照片的分析显示了无定形形态,而M-B2显示出结晶形态。在动态空气气氛中获得的TGA和DSC曲线显示出三个降解阶段。在主事件(第二阶段)中,在355℃下观察到放热峰,对于B-C2,加入7%的重量损失,而在365℃下观察到M-C2,耦合重量损失10%。由于它们高的脱乙酰化,低分子量和粘度,壳聚糖样品可以在农业食品领域中明确地利用,作为生物插座或作为废水处理中的生物吸附剂。

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