首页> 外文期刊>Journal of nanoscience and nanotechnology >Preparation and Characterization of Palmitoyl Grafted Cellulose Nano Absorbent for the Efficient Adsorption of Pyrene from Aqueous Solution
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Preparation and Characterization of Palmitoyl Grafted Cellulose Nano Absorbent for the Efficient Adsorption of Pyrene from Aqueous Solution

机译:棕榈酰接枝纤维素纳米吸收剂的制备及其对水溶液中sorption的吸附性能

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摘要

Palmitoyl grafted modified cellulose were prepared by simple chemical grafting method and applied as nano adsorbent for removal of pyrene from aqueous solution. The chemical properties and morphology of prepared nano-adsorbent were characterized by FT-IR, XRD, SEM, EDX, TGA, and contact angle. Results showed that palmitoyl successfully grafted on the surface of cellulose and possess effective organic functional groups for the adsorption of pyrene from aqueous solution. The adsorption performance of modified cellulose was significantly improved toward pyrene in aqueous solution. It is worthy to note that 0.25 g of palmitoyl grafted cellulose (PMC) removed 92% pyrene compared to unmodified cellulose which adsorbed 36% pyrene from 1.65 ppm aqueous solution of pyrene in very short contact time at room temperature. Results showed that, presence of various organic functional groups from palmitoyl chains grafted on cellulose backbone affected to pyrene removal. After completion of adsorption phenomenon nano-adsorbent can be removed by simply filtration process and reused several times. The adsorption capacity was studied under different experimental conditions and their effects on adsorption such as temperature, pH, and contact time were also studied. The kinetics and isotherms of material were also determined.
机译:通过简单的化学接枝方法制备了棕榈酰接枝的改性纤维素,并作为纳米吸附剂用于从水溶液中去除pyr。通过FT-IR,XRD,SEM,EDX,TGA和接触角对制备的纳米吸附剂的化学性质和形貌进行了表征。结果表明棕榈酰成功地接枝在纤维素表面,并具有有效的有机官能团,可从水溶液中吸附of。改性纤维素在水溶液中对pyr的吸附性能明显提高。值得注意的是,与未改性的纤维素相比,0.25 g的棕榈酰接枝纤维素(PMC)在室温下以非常短的接触时间从1.65 ppm的aqueous水溶液中吸附了36%的compared,而未改性的纤维素则去除了92%的pyr。结果表明,从接枝到纤维素主链上的棕榈酰基链中存在的各种有机官能团会影响pyr的去除。吸附现象完成后,可以通过简单的过滤过程除去纳米吸附剂,然后重复使用几次。研究了在不同实验条件下的吸附容量,并研究了它们对吸附的影响,如温度,pH和接触时间。还确定了材料的动力学和等温线。

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