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Coupled Oxides/LLDPE Composites for Textile Effluent Treatment: Effect of Neem and PVA Stabilization

机译:耦合氧化物/ LLDPE复合材料用于纺织品废水处理:印em和PVA稳定化的影响

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摘要

The polyvinyl alcohol (PVA) and neem extract were grafted onto coupled oxides (3ZT-CO) via reflux process to stabilize the particles to form 3ZT-CO/PVA and 3ZT-CO/Neem. These were then incorporated into LLDPE by melt blending process to give LLDPE/3ZT-CO/PVA and LLDPE/3ZT-CO/Neem composites. The Neem and PVA stabilized particles showed high zeta potential and dispersed homogeneously in water. The stabilization process altered the shape of the particles due to plane growth along the (002) polar direction. The stabilizers acted as capping agents and initiated the one-dimensional growth. The alkyl chain groups from PVA increased the polarity of the LLDPE/3ZT-CO/PVA and played a dominant role in the water adsorption process to activate the photocatalytic activity. This was further enhanced by the homogeneous distribution of the particles and low degree of crystallinity (20.87%) of the LLDPE composites. LLDPE/3ZT-CO/PVA exhibited the highest photodegradation (93.95%), which was better than the non-stabilized particles. Therefore, the photocatalytic activity of a polymer composite can be enhanced by grafting PVA and neem onto couple oxides. The LLDPE/3ZT-CO/PVA composite was further used to treat textile effluent. The results showed the composite was able to remove dye color by 93.95% and to reduce biochemical oxygen demand (BOD) and chemical oxygen demand (COD) by 99.99%.
机译:通过回流工艺将聚乙烯醇(PVA)和印em提取物接枝到偶联的氧化物(3ZT-CO)上,以稳定颗粒,形成3ZT-CO / PVA和3ZT-CO / Neem。然后将它们通过熔融共混工艺掺入LLDPE中,得到LLDPE / 3ZT-CO / PVA和LLDPE / 3ZT-CO / Neem复合材料。 Neem和PVA稳定的颗粒显示出较高的Zeta电位,并均匀地分散在水中。稳定过程由于沿(002)极性方向的平面生长而改变了颗粒的形状。稳定剂充当封端剂并引发一维生长。 PVA的烷基链基团增加了LLDPE / 3ZT-CO / PVA的极性,并在水吸附过程中起着主导作用,以激活光催化活性。 LLDPE复合材料的颗粒均匀分布和低结晶度(20.87%)进一步增强了这种性能。 LLDPE / 3ZT-CO / PVA表现出最高的光降解(93.95%),比未稳定化的颗粒要好。因此,可以通过将PVA和印em接枝到偶合氧化物上来增强聚合物复合材料的光催化活性。 LLDPE / 3ZT-CO / PVA复合材料进一步用于处理纺织品废水。结果表明,该复合材料能够去除93.95%的染料色泽,并减少99.99%的生化需氧量(BOD)和化学需氧量(COD)。

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