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首页> 外文期刊>Applied Surface Science >Surface restructuring of lignite by bio-char of Cuminum cyminum-Exploring the prospects in defluoridation followed by fuel applications
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Surface restructuring of lignite by bio-char of Cuminum cyminum-Exploring the prospects in defluoridation followed by fuel applications

机译:孜然生物炭对褐煤的表面重整-探索脱氟化氢及燃料应用的前景

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摘要

Recently, there has been an interest in the areas of developing new carbon materials for fluoride removal applications. The development of new carbon materials is of recent choice which involves the synthesis of hybrid carbon from various sources. In this context, the present contribution is made to focus on the study the restructured surface of lignite using a bio-material called Cuminum cyminum. The restructured lignite (RSL) was synthesized with an improved carbon content of 13% and its BET surface area was found to be 3.12 times greater than lignite (L). The amorphous nature of lignite and RSL was quite explicable from XRD studies. SEM studies exhibited a fibrous and finer surface of lignite which was well restructured into a semi-melt (5 μm) surface for RSL Defluoridation potential of Restructured Lignite (15.8 mg g~(-1) ) was greater than the lignite (13.8 mg g~(-1)) at pH 7.93±0.03. Kinetic and isotherm parameters derived from various models helped in comprehending the nature and dynamics of fluoride sorption. Both the normal and the restructured lignite were found to be consistent with its fluoride uptake of 57% and 60% respectively even after fifth cycle of regeneration. High heating values of 22.01 MJ kg~(-1) and 26.90 MJ kg~(-1) respectively for lignite and RSL deemed their additional application as fuel materials.
机译:最近,在开发用于除氟应用的新型碳材料领域中引起了人们的兴趣。新的碳材料的开发是最近的选择,其涉及从各种来源合成杂化碳。在这种情况下,本研究致力于使用一种名为Cuminum cyminum的生物材料研究褐煤的重组表面。合成了具有改善的碳含量13%的重组褐煤(RSL),发现其BET表面积是褐煤(L)的3.12倍。 XRD研究表明,褐煤和RSL具有无定形性质。扫描电镜研究显示,褐煤的纤维更细,可以很好地重组为半熔融表面(5μm),因为重组褐煤(15.8 mg g((-1))的RSL脱氟潜力大于褐煤(13.8 mg g) 〜(-1))在pH 7.93±0.03下。从各种模型得出的动力学和等温线参数有助于理解氟化物吸附的性质和动力学。即使在第五次再生之后,正常褐煤和重组褐煤的氟吸收率也分别达到57%和60%。褐煤和RSL的高发热量分别为22.01 MJ kg〜(-1)和26.90 MJ kg〜(-1),被认为是它们的额外应用。

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