首页> 美国卫生研究院文献>Molecules >Application of Pineapple Leaves as Adsorbents for Removal of Rose Bengal from Wastewater: Process Optimization Operating Face-Centered Central Composite Design (FCCCD)
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Application of Pineapple Leaves as Adsorbents for Removal of Rose Bengal from Wastewater: Process Optimization Operating Face-Centered Central Composite Design (FCCCD)

机译:菠萝叶作为吸附剂去除废水中玫瑰孟加拉的应用:过程优化工作面向中心中央复合设计(FCCCD)

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摘要

Adsorptive removal of rose bengal (RB) from contaminated water samples was approached using pineapple leaves (PAL). Three adsorbents were utilized for that purpose; raw pineapple leaves (RPAL) and the thermally activated bio-waste leaves at 250 and 500 °C. Two measures were executed to evaluate the functionality of exploited biomasses; percentage removal (%R) and adsorption capacity ( ). Face-centered central composite design (FCCCD) was conducted to experiment the influence of variables on the %R. Dose of PAL as adsorbent (AD), concentration of RB (DC), pH and contact time (CT), were the inspected factors. Existence of functional groups and formation of activated carbon was instigated employing Fourier-transform infrared (FT-IR) and Raman spectroscopies. Scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDX) analyses were used to explore surface features. Thermal behavior of adsorbents was studied using thermogravimetric analysis (TGA). The surface area and other surface structural properties were established using the Brunauer Emmett-Teller (BET) analysis. An amount of 92.53% of RB could be removed with an adsorption capacity of 58.8 mg/g using a combination of pH 5.00 ± 0.20, RPAL dose of 0.05 mg/50 mL, and 10-ppm RB for 180 min. Equilibrium studies divulge a favorable adsorption that follows the Freundlich isotherm. Pseudo-second-order model explains the observed adsorption kinetics.
机译:使用菠萝叶(PAL)接近来自受污染水样的玫瑰孟加拉(RB)的吸附去除。用于该目的的三种吸附剂;生菠萝叶(rpal)和热活化的生物废物叶250和500℃。执行两项措施以评估利用生物量的功能;百分比去除(%R)和吸附容量()。进行面对中心复合设计(FCCCD)以试验变量对%r的影响。适用于吸附剂(Ad),Rb(DC),pH和接触时间(CT)的浓度是检查的因素。采用傅里叶变换红外(FT-IR)和拉曼光谱,施加官能团的存在和形成活性炭的形成。扫描电子显微镜(SEM)和能量分散X射线光谱(EDX)分析用于探索表面特征。使用热重分析(TGA)研究吸附剂的热行为。使用Brunauer Emmett-Teller(BET)分析建立了表面积和其他表面结构性能。使用0.05mg / 50mL的rpA1剂量的组合,10.00mg / 50ml,10-ppm rb,可将92.53%的Rb除去58.8mg / g的吸附容量为58.8mg / g。均衡研究泄露了伴随着Freundlich等温线的良好吸附。伪二阶模型解释了观察到的吸附动力学。

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