半纤维素
检出限
吸附
气凝胶
化学
响应面法
核化学
色谱法
材料科学
纳米技术
有机化学
水解
作者
Kavita Sharma,Manpreet Kaur,Preeti Tewatia,Vijay Kumar,Christian Paulik,Hideaki Yoshitake,Mukta Sharma,Gaurav Rattan,Sonal Singhal,Anupama Kaushik
标识
DOI:10.1016/j.biortech.2023.129825
摘要
Trace level detection and efficient removal of arsenite ions (As (III)) and ciprofloxacin (CPR) antibiotic was achieved using hemicellulose based ratiometric fluorescent aerogel. Hemicellulose derived from rice straw was oxidised to dialdehyde hemicellulose followed by crosslinking using chitosan via a Schiff base reaction (C = N) yielding a highly porous 3D fluorescent aerogel (CS@DAHCA). Various factors governing adsorption were analyzed by applying response surface methodology (RSM) approach. CS@DAHCA exhibited ultra-trace level monitoring with the limit of detection of 3.529 pM and 55.2 nM for As (III) and CPR, respectively. The CS@DAHCA showed maximum adsorption capacity of 185 μg g−1 and 454 mg g−1 for As (III) and CPR, respectively. Finally, the feasibility of CS@DAHCA was ascertained for real water samples confirming it as promising candidate for remediation of As (III) and CPR.
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