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Preparation and Application of Phosphorylated Xylan as a Flocculant for Cationic Ethyl Violet Dye

机译:磷酸化木聚糖作为阳离子乙基紫染料的絮凝剂的制备及应用

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摘要

In this study, phosphorylated birchwood xylan was produced under alkali conditions using trisodium trimetaphosphate. Three single-factor experiments were used to explore the influences of time, temperature, and the molar ratio of trisodium trimetaphosphate to xylan on the degree of substitution (DS) and charge density of xylan. The response surface methodology was used to explore the interaction of these three factors. Phosphorylated xylan with a maximum DS of 0.79 and a charge density of −3.40 mmol/g was produced under the optimal conditions of 80 °C, 4 h, and a molar ratio of xylan/sodium trimetaphosphate (STMP) of 1/3. Fourier transform infrared (FTIR), ascorbic acid method analyses, and inductively coupled plasma–atomic emission spectrometer (ICP-AES) analyses confirmed that the phosphate groups were successfully attached to xylan. Thermogravimetric analysis confirmed that phosphorylated xylan was less stable than birchwood xylan. Furthermore, the phosphorylated xylan was applied as a flocculant for removing ethyl violet dye from a simulated dye solution. The results indicated that more than 95% of the dye was removed from the solution. The theoretical and experimental values of charge neutralization for the dye removal were close to one another, confirming that charge neutralization was the main mechanism for the interaction of dye and phosphorylated xylan. The impacts of salts on the flocculation efficiency of phosphorylated xylan were also analyzed.
机译:在这项研究中,磷酸化的桦木木聚糖是在碱性条件下使用偏磷酸三钠生产的。使用三个单因素实验来研究时间,温度以及三偏磷酸三钠与木聚糖的摩尔比对木聚糖的取代度(DS)和电荷密度的影响。响应面方法用于探讨这三个因素的相互作用。在80°C,4 h的最佳条件下生成的磷酸化木聚糖最大DS为0.79,电荷密度为-3.40 mmol / g,木聚糖/三偏磷酸钠(STMP)的摩尔比为1/3。傅立叶变换红外(FTIR),抗坏血酸方法分析和电感耦合等离子体-原子发射光谱仪(ICP-AES)分析证实磷酸根已成功连接到木聚糖上。热重分析证实磷酸化的木聚糖不如桦木木聚糖稳定。此外,将磷酸化的木聚糖用作絮凝剂以从模拟染料溶液中去除乙基紫染料。结果表明从溶液中除去了超过95%的染料。电荷中和去除染料的理论和实验值彼此接近,证实电荷中和是染料与磷酸化的木聚糖相互作用的主要机理。还分析了盐对磷酸化木聚糖絮凝效率的影响。

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