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Use of Nanocellulose extracted from grass for adsorption abatement of Ciprofloxacin and Diclofenac removal with phyto, and fish toxicity studies

机译:用纳米纤维素从草层中提取的使用,用于用Phyto和鱼类毒性研究去除Ciprofloxacin和双氯芬酸的吸附

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The present study deals with the adsorption of antibiotic Ciprofloxacin (CPXO) and anti-inflammatory agent Diclofenac (DCF) on Grass nanocellulose (GNC) extracted from Cyprus rotundas grass. The adsorbent GNC was characterised using various microscopic, elemental and spectroscopic analysis to monitor the physicochemical alterations of the surface before and after adsorption. The size of the converted nanocellulose was found to be 40-50 nm. The experimental measures influencing the adsorption of CPXO and DCF that were optimised are initial solution pH, GNC dosage, temperature and initial concentration of the adsorbate. Halsey isotherm model and pseudo-second order kinetic model agreed best with the experimental outcome for both the adsorbate. The maximum adsorption capacity of GNC were 227.223 and 192.307 mg/g for CPXO and DCF respectively. Phytotoxicity studies were performed using 6 different types of seeds to evaluate the effect of GNC treated effluent on plants. Similarly, acute fish toxicity on zebra fish analysis showed to have lesser mortality rate of the effluent after adsorption of CPXO and DCF on GNC. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究涉及从塞浦路斯罗德斯草萃取的草纳米细纤维素(GNC)上的抗生素环丙沙星(CPXO)和抗炎剂DICLOFENAC(DCF)的吸附。使用各种微观,元素和光谱分析的吸附剂GNC在吸附前后监测表面的物理化学改变。将转化的纳米纤维素的尺寸被发现为40-50nm。影响被优化的CPXO和DCF吸附的实验措施是吸附物的初始溶液pH,GNC剂量,温度和初始浓度。 Halsey等温线模型和伪二阶动力学模型与吸附物的实验结果相同。 GNC的最大吸附容量分别为CPXO和DCF的227.223和192.307mg / g。使用6种不同类型的种子进行植物毒性研究以评估GNC处理的流出物对植物的影响。同样,在斑马鱼分析上急性鱼类毒性显示在GNC上吸附CPXO和DCF后的流出物的死亡率较小。 (c)2020 elestvier有限公司保留所有权利。

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