4.7 Article

Valorisation of post-sorption materials: Opportunities, strategies, and challenges

期刊

ADVANCES IN COLLOID AND INTERFACE SCIENCE
卷 242, 期 -, 页码 35-58

出版社

ELSEVIER
DOI: 10.1016/j.cis.2016.12.002

关键词

Post-adsorption; Post-sorbent; Exhausted sorbent; Spent sorbent; Adsorption; Biosorption; Fertilizers; Feed-additives; Catalysis; Carbothermal synthesis; Nanoparticles; Water treatment; Aqueous medium

资金

  1. Korean Government through NRF [2014R1A2A1A09007378]
  2. BK21 plus Postdoctoral Fellowship

向作者/读者索取更多资源

Adsorption is a facile, economic, eco-friendly and low-energy requiring technology that aims to separate diverse compounds (ions and molecules) from one phase to another using a wide variety of adsorbent materials. To date, this technology has been used most often for removal/recovery of pollutants from aqueous solutions; however, emerging post-sorption technologies are now enabling the manufacture of value-added key adsorption products that can subsequently be used for (i) fertilizers, (ii) catalysis, (iii) carbonaceous metal nanoparticle synthesis, (iv) feed additives, and (v) biologically active compounds. These new strategies ensure the sustainable valorisation of post-sorption materials as an economically viable alternative to the engineering of other green chemical products because of the ecological affability, biocompatibility, and widespread accessibility of post-sorption materials. Fertilizers and feed additives manufactured using sorption technology contain elements such as N, P, Cu, Mn, and Zn, which improve soil fertility and provide essential nutrients to animals and humans. This green and effective approach to managing post-sorption materials is an important step in reaching the global goals of sustainability and healthy human nutrition. Post-sorbents have also been utilized for the harvesting of metal nanoparticles via modern catalytic pyrolysis techniques. The resulting materials exhibited a high surface area (>1000 m(2)/g) and are further used as catalysts and adsorbents. Together with the above possibilities, energy production from post-sorbents is under exploration. Many of the vital 3E (energy, environment, and economy) problems can be addressed using post-sorption materials. In this review, we summarize a new generation of applications of post-adsorbents as value-added green chemical products. At the end of each section, scientific challenges, further opportunities, and issues related to toxicity are discussed. We believe this critical evaluation not only delivers essential contextual information to researchers in the field but also stimulates new ideas and applications to further advance post-sorbent applications. (C) 2016 Elsevier B.V. All rights reserved.

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