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Optimization of Prodigiosin-type Biochrome Production and Effect of Mordants on Textile Dyeing to Improve Dye Fastness

机译:Prodigiosin型生物色素生产的优化以及媒染剂对纺织品染色的影响,以提高染料牢度

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The environmental toxicity concerns raised by the synthetic origin pigments have lead to escalating interest towards natural pigments. In the present study, prodigiosin type biochrome- a member of prodiginine dye family was obtained from indegenously isolated bacterial strain Serratia sp. KH-1. Cultural and physiological parameters for production of pigment along with its application on dyeing fabrics have been studied. The identity of prodigiosin type biochrome was confirmed by fourier transform infrared (FT-IR) spectroscopy, mass spectroscopy and nuclear magnetic resonance (NMR). The detailed dyeing ability of this biochrome was evaluated using cotton and wool fabrics. The fabric showed the maximum dye uptake (K'S) at of 50 degrees C for 50 min duration, and 4.3 g/l dye concentration. Pre-mordanting by sodium chloride proved to be effective on increasing K/S values of the dyed fabrics under the optimum dyeing conditions. Fastness ratings to washing and light showed acceptable fastness for both cotton and wool fabrics. Hence, the present study represents the application and detailed investigation of prodigiosin type biochrome for textile dyeing using mordants. This study will thus, be helpful for designing the dyeing protocol for cotton and wool fabrics using eco-friendly pigment.
机译:合成来源颜料引起的环境毒性问题已导致人们对天然颜料的兴趣逐渐增加。在本研究中,prodigiosin型生物色素是prodiginine染料家族的一员,是从非固有分离的细菌菌株Serratia sp。获得的。 KH-1。已经研究了用于生产颜料的文化和生理参数以及其在染色织物上的应用。通过傅立叶变换红外(FT-IR)光谱,质谱和核磁共振(NMR)确认了prodigiosin型生物色素的身份。使用棉和羊毛织物评估了该生物色素的详细染色能力。织物在50摄氏度下持续50分钟显示最大染料吸收(K'S),染料浓度为4.3 g / l。事实证明,在最佳染色条件下,用氯化钠进行的预染色对提高染色织物的K / S值有效。耐洗牢度和耐光性表明棉和羊毛织物的牢度都可以接受。因此,本研究代表了prodigiosin型生物色素在使用媒染剂进行纺织品染色中的应用和详细研究。因此,这项研究将有助于设计使用环保颜料的棉和羊毛织物的染色方案。

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