首页> 外文期刊>Journal of Polymers and the Environment >Multi-functionalized Cellulosic Biomass by Plasma-Assisted Bonding of a-Amino Carboxylic Acid to Enhance the Removal of Ibuprofen in Aqueous Solution
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Multi-functionalized Cellulosic Biomass by Plasma-Assisted Bonding of a-Amino Carboxylic Acid to Enhance the Removal of Ibuprofen in Aqueous Solution

机译:通过α-氨基羧酸的等离子体辅助粘合多功能纤维素生物质,增强水溶液中的布洛芬的除去

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The present study concerns the removal of ibuprofen (IBP) from aqueous medium using glycine grafted plasma-modified cocoa shell as an effective and promising sorbent. The plasma pretreatment prior to the grafting process creates hydroxyl (-OH), carbonyl (-CO) and carboxyl (-COOH) groups, which were used as binder sites for glycine graft immobilization. The grafting technique was successful as an IR spectra of grafted biosorbent exhibited specific functional groups (N-H, C-N, -OH, C=O, COOH), which were characteristics of newly formed atomic bonds. The attachment to biomass was made through a single glycine and a glycine dipeptide esterified. The results of the removal tests demonstrated that the amounts of IBP uptake at equilibrium were higher with glycine grafted biomass (BG) than un-grafted, so going from 15.24 to 19.88 mg/g for initial 20 mg/L IBP and from 23.18 to 26.98 mg/g for 30 mg/L IBP. Amongst the tested kinetics model to predict adsorption behavior of the experimental results, the Avrami fractional-order model was the most suitable. The values of Delta H degrees and Delta G degrees suggested a spontaneous and exothermic process, which is typical for physical interaction in accordance with the Liu best-fitted isotherm model.
机译:本研究涉及使用甘氨酸接枝血浆改性可可壳从水性培养基中除去布洛芬(IBP),作为有效且有前途的吸附剂。在接枝过程之前的血浆预处理产生羟基(-OH),羰基(-CO)和羧基(-COOH)基团,其用作甘氨酸移植物固定的粘合剂位点。接枝技术成功,因为接枝的生物吸收性的IR光谱表现出特定的官能团(N-H,C-N,-OH,C = O,COOH),其是新形成的原子键的特征。通过单个甘氨酸和甘氨酸二肽酯化对生物质的附着。去除试验的结果表明,甘氨酸接枝生物质(BG)均比未接枝的IBP摄取量高,因此初始20mg / L IBP的15.24至19.88mg / g,23.18至26.98 mg / g 30 mg / l IBP。在测试的动力学模型中预测实验结果的吸附行为中,Avrami分数阶模型最适合。 Delta H度和Delta G度的值表明了一种自发性和放热过程,这是根据Liu最佳的等温模型的物理相互作用的典型。

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