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首页> 外文期刊>Iranian Journal of Chemistry and Chemical Engineering >Adsorption and Desorption of Sulfur Compounds by Improved Nano Adsorbent: Optimization Using Response Surface Methodology
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Adsorption and Desorption of Sulfur Compounds by Improved Nano Adsorbent: Optimization Using Response Surface Methodology

机译:改进的纳米吸附剂对硫化合物的吸附和解吸:使用响应面方法的优化

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摘要

Today, sulfur removal from fuels has improved by new adsorbents such as zeolites that needs extensive studies. This study investigates the feasibility of sulfur compounds adsorption on improved nano zeolite existing in organic fuels and desorption of them from nano-adsorbent. Some properties of improved nano zeolite were analyzed to receive better sulfur compounds adsorption. Zeolite surface structure was analyzed by TEM (tunneling electron microscopy). Batch experiments were chosen for adsorption/desorption study of sulfur compounds and adsorption and desorption conditions were optimized by BBD methodology. The influence of variables in the process, consists of adsorbent metal percent (0.05-10 wt%), adsorbent calcination temperature (200-500 degrees C) and adsorption process temperature (30-120 degrees C) in adsorption stage and gas flow rate (1.5-3.5 mL/Min), regeneration temperature (150-300 degrees C) and desorption time (30-90 Min) which were investigated using experimental design procedure.
机译:如今,需要进行大量研究的新型吸附剂(例如沸石)已经改善了从燃料中脱硫的方法。这项研究调查了硫化合物吸附在有机燃料中存在的改良纳米沸石上以及从纳米吸附剂中脱附的可行性。分析了改进的纳米沸石的一些性能,以更好地吸附硫化合物。通过TEM(隧道电子显微镜)分析沸石的表面结构。选择分批实验进行硫化合物的吸附/解吸研究,并通过BBD方法优化了吸附和解吸条件。过程中变量的影响,包括吸附阶段的吸附金属百分比(0.05-10 wt%),煅烧温度(200-500摄氏度)和吸附过程温度(30-120摄氏度)以及气体流量( 1.5-3.5 mL / Min),再生温度(150-300°C)和脱附时间(30-90 Min)使用实验设计程序进行了研究。

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