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Use of Silk Industry Waste - Silkworm Pupa: A Remediation of Environmental Pollution

机译:使用丝绸工业废物 - 蚕蛹:整治环境污染

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The main concern of every industry is the clean and green production. In spite of all the efforts to achieve this goal the byproducts which are sometimes considered as waste are always a problem. In silk industry the pupa which is a protein rich material in many places is considered as waste. In this work silkworm pupa has been used as a natural adsorbent for the removal of cationic and acid dyes from textile industry waste water. The amino acid nature of the pupa provided a reasonable capability for dye removal. Equilibrium adsorption isotherms were investigated. The adsorption equilibrium data were analyzed by using various adsorption isotherm models and the results showed that the adsorption behavior of the dye could be described reasonably well by either Langmuir or Freundlich models. The characteristic parameters for each isotherm have been determined. The adsorption was dependent on the pH of the solution because of the ionization of amino and acid groups existing on the surface of the adsorbent. Results showed that silkworm pupa not only can be used as an effective natural source for adsorbent but also has a desirable adsorption capability for the removal of dyes from colored wastewater. Chitin and chitosan has been extracted from silk pupa and their properties have been investigated. The silk worm pupa has been treated with HC1 and NaOH to extract chitin and then treated with 50% NaOH under nitrogen atmosphere to convert it in to chitosan. Results show that it contains up to 6% chitin. The degree of deacetylation of chitosan obtained determined by FTIR was 82%.
机译:每个行业的主要关注点是清洁绿色的生产。尽管所有努力实现这一目标,但有时被认为是废物的副产品总是一个问题。在丝绸产业中,在许多地方是富含蛋白质的蛹被认为是浪费。在这项工作中,蚕蛹被用作从纺织工业废水中去除阳离子和酸性染料的天然吸附剂。蛹的氨基酸性质为染料除去提供合理的能力。研究了平衡吸附等温线。通过使用各种吸附等温线模型分析吸附平衡数据,结果表明,染料的吸附行为可以通过Langmuir或Freundlich模型合理地描述。已经确定了每个等温物的特征参数。由于存在于吸附剂表面上的氨基和酸基团,吸附依赖于溶液的pH。结果表明,家蚕蛹不仅可以用作吸附剂的有效天然源,而且还具有所需的吸附能力,用于从着色废水中除去染料。从丝蛹中提取了甲壳素和壳聚糖,并研究了它们的性质。丝虫蛹已被HC1和NaOH治疗,以提取丁蛋白,然后用50%NaOH在氮气氛下处理,以将其转化为壳聚糖。结果表明它含有高达6%的依托粉。通过FTIR测定的壳聚糖的脱乙酰乙酰化程度为82%。

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