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首页> 外文期刊>Ultrasonics sonochemistry >Ultrasonic and hydrothermal mediated synthesis routes for functionalized Mg-Al LDH: Comparison study on surface morphology, basic site strength, cyclic sorption efficiency and effectiveness
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Ultrasonic and hydrothermal mediated synthesis routes for functionalized Mg-Al LDH: Comparison study on surface morphology, basic site strength, cyclic sorption efficiency and effectiveness

机译:超声波和水热介导的合成途径用于官能化Mg-Al LDH:对表面形态,基本部位强度,循环吸附效率和有效性的比较研究

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摘要

Amine functionalized layered double hydroxide (LDHs) adsorbents prepared using three different routes: co-precipitation, sono-chemical and ultrasonic-assisted high pressure hydrothermal. The prepared adsorbent samples were characterized using X-ray diffraction (XRD), X-ray Photoelectron Spectroscopy (XPS), Scanning electron microscope-Energy dispersive X-ray spectroscopy (SEM-EDX), Temperature Programmed Desorption (TPD), Brunauer-Emmett-Teller (BET), and Thermogravimetric analysis (TGA), respectively. The performance of the prepared adsorbents was tested in a controlled thermal-swing adsorption process to measure its adsorption capacity, regeneration and cyclic efficiencies subsequently. The characterisation results were compared with those obtained using the conventional preparation routes but taking into account of the impact of sonochemical and hydrothermal pre-treatment on textural properties, adsorption capacity, regeneration and cyclic efficiencies. Textural results depicts a surge in surface area of the adsorbent synthesised by hydrothermal route (311 m(2)/g) from 25 to 171 m(2)/g for conventional and ultrasonic routes respectively. Additionally, it has been revealed from the present study that adsorbents prepared using ultrasonic-assisted hydrothermal route exhibit a better CO2 uptake capacity than that prepared using sonochemical and conventional routes. Thus, the ultrasonic-assisted hydrothermal treatment can effectively promote the adsorption capacity of the adsorbent. This is probably due to the decrease of moderate (M-O) and weak (OH- groups) basic sites with subsequent surge in the number of strong basic sites (O2-) resulting from the hydrothermal process. Moreover, the cyclic adsorption efficiency of the ultrasonic mediated process was found to be 76% compared with 60% for conventional and 53% for hydrothermal routes, respectively. According to the kinetic model analysis, adsorption mechanism is mostly dominated by physisorption before amine modifica
机译:胺官能化层状双氢氧化物(LDHS)吸附剂使用三种不同的途径制备:共沉淀,超声化学和超声波辅助高压水热。使用X射线衍射(XRD),X射线光电子能谱(XPS),扫描电子显微镜 - 能量分散X射线光谱(SEM-EDX),温度编程解吸(TPD),Brunauer-Emmett进行了制备的吸附剂样品。 - 分别是托尔(BET)和热重分析(TGA)。在受控的热挥杆吸附过程中测试制备的吸附剂的性能,以测量其吸附能力,再生和随后的环状效率。将表征结果与使用常规制备途径获得的那些进行比较,但考虑到Sonochemical和水热预处理对纹理性质,吸附能力,再生和循环效率的影响。纹理结果描绘了通过分别由25至171μm(2)/ g的水热路径(311m(2)/ g)合成的吸附剂的表面积浪涌分别用于常规和超声路线。另外,目前的研究揭示了使用超声辅助水热路线制备的吸附剂表现出比使用超色和常规途径制备的更好的CO 2吸收能力。因此,超声波辅助水热处理可以有效地促进吸附剂的吸附能力。这可能是由于中等(M-O)和弱(OH-基团)基本位点的减少,随后在水热过程产生的强基本位点(O2-)的数量中的浪涌。此外,发现超声介导方法的循环吸附效率为76%,而常规和53%的水热路线分别为60%。根据动力学模型分析,吸附机制主要由胺修饰前的物理吸附占主导地位

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