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Adsorption Characteristics of Direct Violet Dye by Natural Rubber Chips

机译:天然橡胶芯片直接紫色染料的吸附特性

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The study examined the adsorption behaviour of Direct Violet 51 (DV 51) dye from aqueous solution onto natural rubber chips. The effects of various operational parameters such as adsorbent dose, contact time, pH and dye concentration were investigated using the batch adsorption technique. The natural rubber sheet (thickness 2mm) was prepared by compression moulding and cut into 5 mm square pieces. The point of zero charge (pH_(pzc)) of the rubber chips was determined using the pH drift method. Equilibrium adsorption data were analysed by means of Langmuir and Freundlich isotherms, and adsorption data by spectrophotometer. It was found that the optimum adsorbent dose was 3.0 g and optimum contact time was 120 min. The highest removal efficiency was found at pH 7. The explanation may be understood in terms of the pH_(pzc) of the rubber chip (pH_(pzc)=7.45), at which point the rubber surface is neutral. The surface charge of the rubber chip is therefore positive when the solution pH is below pH_(pzc)- Because of its basicity, Direct Violet therefore tends to be adsorbed onto the surface of natural rubber chips. In addition, at pH 7 common salt (NaCl) was also found, which is believed to reduce the repulsion between the rubber chips and the dye, allowing the dye to diffuse more easily onto the surface of the rubber chip fibres, thereby improving their dyeability. The adsorption data correlated well with the Langmuir isotherm model, suggesting the monolayer adsorption behaviour.
机译:该研究将直接紫51(DV 51)染料从水溶液中的吸附行为检测到天然橡胶芯片上。使用批量吸附技术研究了各种操作参数如吸附剂量,接触时间,pH和染料浓度的影响。通过压缩成型和切成5mm平方块,制备天然橡胶板(厚度2mm)。使用pH漂移法测定橡胶屑的零电荷(pH_(pzc))。通过Langmuir和Freundlich等温线分析平衡吸附数据,并通过分光光度计吸附数据。发现最佳吸附剂剂量为3.0g,最佳接触时间为120分钟。在pH7中发现了最高的去除效率。在橡胶芯片的pH_(pzc)(pH_(pzc)= 7.45)方面可以理解说明,此时橡胶表面是中性的。因此,当溶液pH低于pH_(PZC)时,橡胶芯片的表面电荷是阳性的 - 由于其碱度,因此倾向于被吸附到天然橡胶芯片的表面上。另外,在pH7的pH 7中,还发现常见的盐(NaCl),认为橡胶屑和染料之间的排斥力允许更容易地扩散到橡胶芯片纤维的表面上,从而提高其可造算的染料。吸附数据与Langmuir等温模型相关,暗示单层吸附行为。

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