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首页> 外文期刊>Chemical Science International Journal >Insight into the Sorption and Activation Energy Phenomenon of Kenaf Shive Sorbents in Crude Oil/Water Mixture
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Insight into the Sorption and Activation Energy Phenomenon of Kenaf Shive Sorbents in Crude Oil/Water Mixture

机译:洞察南南方嗅觉中原油/水混合物的吸附能量现象

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The secondary effect discovery of synthetic sorbents opened another research direction for many field of studies. However, the sorption parameters of lignocellulosic sorbents are rarely reported most importantly, kenaf shive. This paper centered at the sorption behavior of optimized kenaf shive sorbents using Response Surface Methodology (RSM) via surface deposit technique. Five-level Central Composite Design (CCD) experimental matrix was used to analyze the effect of particle sizes (125-1000 μm), stirring time (5-30min) and methyltrimethoxysilane (MTMS) concentration (5-20% v/v) as individual and combined variables process in the developed sorbents. The unmodified shive was compared with the modified, and it reveals a positive shift in the sorption capability. Instrumental analysis such as FTIR (Fourier Transform Infra-Red), DT-TGA (Differential Thermal-Thermogravimetric analysis) and BET (Brunaure-Emmett-Teller) were carried out on the optimized sorbent and the results were in conformity with the sorption results. The sorption behavior deployed fits the pseudo-first-order and Langmuir isotherm with regression coefficient R~(2)=0.9496 and R~(2)=0.9400. The sorption property was found to be spontaneous and exothermic, however, the activation energy studies shows physic-sorption phenomenon with 25.3 kJmol~(-1) and R~(2)=0.9360.
机译:合成吸附剂的二次效果发现为许多研究领域开辟了另一种研究方向。然而,木质纤维素吸附剂的吸附参数很少报道,最重要的是,康地区龙头。本文采用响应面法(RSM)通过表面沉积技术为中心的优化Kenaf左吸附剂的吸附行为。五级中央复合设计(CCD)实验基质用于分析粒径(125-1000μm),搅拌时间(5-30min)和甲基三甲氧基硅烷(MTMS)浓度(5-20​​%v / v)的影响。在发达的吸附剂中的个体和组合变量过程。将未修改的吞咽与改性相比,它揭示了吸附能力的正偏移。仪器分析如FTIR(傅里叶变换红外线),DT-TGA(差动热热射击分析)和BET(Brunaure-Emmett-Teller)在优化的吸附剂上进行,结果符合吸附结果。部署的吸附行为适合伪一阶和朗米尔等温线,回归系数R〜(2)= 0.9496和R〜(2)= 0.9400。发现吸附性能是自发性和放热的,然而,活化能量研究显示出与25.3kJmol〜(-1)和R〜(2)= 0.9360的物理吸附现象。

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