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Tinctorial behavior of curaua and banana fibers and dyeing wastewater treatment by porous alumina membranes

机译:姜黄和香蕉纤维的着色行为及多孔氧化铝膜处理印染废水

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Physicochemical and dyeing properties using reactive dyes of curaua and banana fibers were studied by means of color strength (K/S), differential scanning calorimetry (DSC), scanning electron microscopy (SEM), and Fourier transform infrared (FTIR) spectroscopy analyses. SEM analysis of alkali-treated fibers showed an increase in roughness due to surface lignin and hemicellulose defibrillation. DSC analysis showed for all the samples an endothermic and an exothermic peak at 70-80 and 340-360 degrees C due to the loss of adsorbed/absorbed water and to decomposition of -cellulose, respectively. Alkali-treated fibers displayed a second peak around 290 degrees C attributed to the degradation of hemicellulose. FTIR spectra of the studied fibers show similar bands with different intensities attributed to the main components of cellulose-based materials. Alkali-pretreated fibers demonstrated excellent dyeing ability for all the tested dyes. Dye absorption depends on the chemical fiber, dye structure, and concentration. The results of washing fastness are very good for all the tested fibers. The dyeing effluent treated with an advanced microfiltration method using an improved alumina ceramic membrane shows an average efficiency of 98% in turbidity and color reduction. Low-cost ceramic alumina microfiltration membranes are a very promising advanced treatment for textile industrial effluents allowing water reuse.
机译:通过色强度(K / S),差示扫描量热法(DSC),扫描电子显微镜(SEM)和傅里叶变换红外(FTIR)光谱分析研究了姜黄和香蕉纤维的活性染料的理化和染色性能。碱处理纤维的SEM分析表明,由于表面木质素和半纤维素除纤颤,粗糙度增加。 DSC分析显示,对于所有样品,由于吸附/吸收的水的损失和-纤维素的分解,分别在70-80和340-360℃下有吸热峰和放热峰。碱处理的纤维在290摄氏度左右出现第二个峰,这归因于半纤维素的降解。所研究纤维的FTIR光谱显示出具有相似强度的相似谱带,这归因于纤维素基材料的主要成分。碱预处理的纤维对所有测试的染料均表现出出色的染色能力。染料吸收取决于化学纤维,染料结构和浓度。耐洗牢度的结果对于所有测试的纤维都非常好。用改进的氧化铝陶瓷膜用先进的微滤方法处理的染色废水显示出浊度和颜色降低的平均效率为98%。低成本陶瓷氧化铝微滤膜是纺织工业废水的一种非常有前途的先进处理方法,可重复利用水。

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