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Characterization of Nanosilica of Tapioca Peel as Adsorbent For Biomethane Storage System

机译:木薯果皮纳米菌纳米菌作为吸附剂的母甲烷储存系统的表征

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Biomethane is an alternative and renewable source that occurred naturally which produced from the anaerobic digestion of organic matter. It can be used as the electricity power generation, water heating and also vehicle fuel. In this study, the characteristics of the nanosilica of the tapioca peel as an adsorbent on the structural and physical properties to store the biomethane were investigated. To enhance the adsorption and desorption performance as well as the structural and physical properties, the nanosilica was modified with the metal oxides. The metal oxides that have been used to modify the nanosilica adsorbent are zinc (II) oxide (ZnO) and nickel (II) oxide (NiO). Both of the modified and unmodified nanosilica structural properties were characterized by using X-Ray Diffraction (XRD) and Scanning Electron Microscope (SEM). While, the physical properties of both of the modified and unmodified nanosilica were characterized by using Brunauer, Emmet, Teller (BET) surface area measurement. The effects of both types of metal oxides with different concentration were investigated. Based on the results obtained, the structural and physical characteristics of the nanosilica were affected by the different metal oxides loading. It have been identified that 1% ZnO modified nanosilica has highest BET surface area (8.32 m~2/g) with pore volume (19.23 cc/g) and pore size (82.8 nm). Thus, it concluded that 1% ZnO modified nanosilica improved the structural and physical structure. Hence, it enhances the capacity of methane adsorption and desorption prior to storage system.
机译:生物甲烷是一种替代和可再生的来源,其自然发生,其由有机物质的厌氧消化产生。它可以用作发电,水加热和车辆燃料。在该研究中,研究了木薯果皮纳米菌的特性作为吸附剂上的吸附剂,用于存放生物甲烷的结构和物理性质。为了增强吸附和解吸性能以及结构和物理性质,用金属氧化物改性纳米硅藻。已用于改性纳米硅吸附剂的金属氧化物是锌(II)氧化物(ZnO)和氧化镍(NIO)。通过使用X射线衍射(XRD)和扫描电子显微镜(SEM)来表征两种改性和未改性的纳米硅结构性能。虽然,通过使用Brunauer,Emmet,柜员(BET)表面积测量来表征两种改性和未改性纳米硅的物理性质。研究了两种类型的金属氧化物具有不同浓度的效果。基于所得的结果,纳米硅的结构和物理特性受到不同金属氧化物负载的影响。已经确定1%ZnO改性纳米硅藻具有最高的BET表面积(8.32m〜2 / g),具有孔体积(19.23cc / g)和孔径(82.8nm)。因此,它得出结论,1%ZnO改性纳米硅改善了结构和物理结构。因此,它增强了储存系统之前甲烷吸附和解吸的能力。

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