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Facile functionalization of cellulose from discarded cigarette butts for the removal of diclofenac from water

机译:从废烟烟灰纤维素中的纤维素官能化,从水中除去双氯芬酸

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In this study, cellulose nanocrystals (CNCs), and cellulose nanofibers (CNFs) were extracted from discarded cigarette butts (DCBs), and investigated for their efficiency for diclofenac (Dfc) removal from water. CNFs extraction process involved cleaving of acetyl group by alkali treatment and etched with phosphate ions (HPO) from phosphoric acid to obtain the variably charged HPO-CNFs. To obtain CNCs, sulfuric acid was used to cleave phenol moieties from CNFs under high temperature and agitation. SEM, FT-IR, SEM-EDS, Raman spectroscopy were used to analyze the physico-chemical properties of synthesized cellulose materials. The SEM images revealed the exfoliated fiber strands of CNFs after extraction procedure, and the difference in the crystal structure of CNCs30 and CNCs60. The EDS analyses revealed the presence of higher amount of carbon in DCBs compared to other forms of synthesized celluloses. The FT-IR analyses revealed functional group shifts and bond reductions after various treatment steps, while the HPO attachment on the CNFs surfaces was confirmed by the presence of P-O bonds. Raman analyses revealed clear crystals in the CNCs60 compared to the other celluloses. The adsorption capacity of HPO-CNFs for diclofenac removal was found to be 107.90 mg g(-1) and Langmuir model fitted well to the adsorption data.
机译:在该研究中,从废弃的香烟(DCBS)中提取纤维素纳米晶体(CNC)和纤维素纳米纤维(CNFS),并研究了它们对水的二氯芬克(DFC)的效率。 CNFS提取过程涉及通过碱处理切割乙酰基,并用磷酸离子(HPO)蚀刻,得到可变电荷的HPO-CNF。为了获得CNC,使用硫酸在高温和搅拌下从CNF中切割酚部分。 SEM,FT-IR,SEMEDS,拉曼光谱用于分析合成纤维素材料的物理化学性质。 SEM图像揭示了提取过程后CNFS的剥落纤维链,以及CNCS30和CNCS60的晶体结构的差异。 EDS分析显示,与其他形式的合成纤维素相比,DCBS中存在较高量的碳。 FT-IR分析显示出各种处理步骤后的官能团变换和键减少,而通过存在p-O键确认CNFS表面上的HPO附着。拉曼分析显示与其他纤维素相比CNCS60中的透明晶体。发现双氯芬酸去除的HPO-CNFS的吸附能力为107.90mg g(-1),朗米尔模型适合于吸附数据。

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