Lignocellulosic-Based Sorbents: A Review

K. Asemave, L. Thaddeus, Philip T. Tarhemba
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引用次数: 13

Abstract

The combustion of fossil fuels is intensifying global warming and destructing the ecosystem with negative human health impacts as well. Even so, other anthropogenic activities have unfortunately constituted pollution also to our environment, say, in the form of waste waters. Beside these, the existing technologies for waste water treatment have problems such as high costs, sludge disposal challenges, etc. Thus, it is now important to find economically viable and safe alternatives to decontaminate waste waters. Hence, low cost, renewable, easily accessible, and readily prepared biosorbents have become favourable alternatives to traditional counterpart for the elimination of pollutants from aqueous systems. Fortunately, these biosorbents also have requisite and comparable properties necessary for adsorption of pollutants. Many studies have been reported on the application of biosorbents for pollutants removal. However, this paper provides an overview of biosorbents preparation, properties, their applications in pollutants removal and related use. Biosorbents are usually used in raw or processed forms such as activated carbon (AC), biobar (BC), and charcoal (CC) for removal of pharmaceuticals, pesticides, organics, inorganics, mycotoxins, etc. from aqueous systems. Besides classical sorption of the pollutants, biosorbents have prospect of applications as electrodes in the microbial fuel cells, green packaging materials, energy storage devices, catalysts, soil remediation agent, carbon sequestration, etc. Hence, further concerted investigations should be exercised to develop feasibly best conditions for the preparations and modifications of biosorbents. In addition, mean pore size, pore size distribution, porosity, surface functionality, and zeta potential studies are necessary to be had about biosorbents, especially novel types. There is need for development of biosorbents for specific tasks. Another essential thing is to determine desorption studies of these novel biosorbents. Focus should also be directed on more economically viable and sustainable biosorbents to enhance their use. Again, it is suggested that more suitable biomasses be identified to enable successful preparation of efficient biosorbents. More so, biosorbents can be recycled after use to avoid littering and possible pollution.
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木质纤维素基吸附剂:综述
化石燃料的燃烧加剧了全球变暖,破坏了生态系统,也对人类健康产生了负面影响。尽管如此,不幸的是,其他人为活动也对我们的环境构成了污染,例如,以废水的形式。除此之外,现有的废水处理技术还存在成本高、污泥处理困难等问题。因此,现在重要的是找到经济上可行和安全的方法来净化废水。因此,低成本、可再生、易于获取和易于制备的生物吸附剂已成为消除水系统污染物的传统对应物的有利替代品。幸运的是,这些生物吸附剂也具有吸附污染物所必需的和可比的特性。生物吸附剂在污染物去除中的应用研究已经有很多报道。本文综述了生物吸附剂的制备、性能、在污染物去除中的应用及相关用途。生物吸附剂通常以原料或加工形式使用,如活性炭(AC)、生物棒(BC)和木炭(CC),用于从水系统中去除药物、农药、有机物、无机物、真菌毒素等。除传统的污染物吸附外,生物吸附剂在微生物燃料电池电极、绿色包装材料、储能装置、催化剂、土壤修复剂、固碳等方面具有广阔的应用前景。因此,应该进行进一步的协同研究,以制定可行的最佳条件来制备和改性生物吸附剂。此外,平均孔径、孔径分布、孔隙率、表面功能和zeta电位的研究是生物吸附剂,特别是新型生物吸附剂的必要研究。有必要开发用于特定任务的生物吸附剂。另一个重要的事情是确定这些新型生物吸附剂的解吸研究。还应把重点放在经济上更可行和可持续的生物吸附剂上,以加强其使用。再次,建议确定更合适的生物质,以便成功制备高效的生物吸附剂。更重要的是,生物吸附剂在使用后可以回收,以避免垃圾和可能的污染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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