Dias Joana M, Alvim-Ferraz Maria C M, Almeida Manuel F, Rivera-Utrilla José, Sánchez-Polo Manuel
LEPAE, Faculdade de Engenharia, Universidade do Porto, R. Dr. Roberto Frias, 4200-465 Porto, Portugal.
J Environ Manage. 2007 Dec;85(4):833-46. doi: 10.1016/j.jenvman.2007.07.031. Epub 2007 Sep 19.
Commercial activated carbon is a preferred adsorbent for the removal of micropollutants from the aqueous phase; however, its widespread use is restricted due to high associated costs. To decrease treatment costs, attempts have been made to find inexpensive alternative activated carbon (AC) precursors, such as waste materials. Some reviews report the use of waste materials for the preparation of AC; however, these studies are restricted to either type of wastes, preparation procedures, or specific aqueous-phase applications. The present work reviews and evaluates literature dedicated both to the preparation of AC by recycling different types of waste materials and also to its application in various aqueous-phase treatments. It is clear that conventional (from agriculture and wood industry) and non-conventional (from municipal and industrial activities) wastes can be used to prepare AC, that can be applied in various aqueous treatment processes, namely to remove organic pollutants, dyes, volatile organic compounds, and heavy metals. Moreover, high surface areas can be obtained using either physical or chemical activation; however, combined treatments might enhance the surface properties of the adsorbent, therefore increasing its adsorption capacity. It is evident from the revision made that AC prepared from both conventional and non-conventional wastes might effectively compete with the commercial ones. This happens mostly when the activation procedures are optimized considering both the raw material used to produce the carbons and the contaminants to be removed.
商业活性炭是从水相中去除微污染物的首选吸附剂;然而,由于相关成本高昂,其广泛应用受到限制。为了降低处理成本,人们尝试寻找廉价的替代活性炭(AC)前驱体,如废料。一些综述报道了利用废料制备活性炭;然而,这些研究仅限于废料类型、制备程序或特定的水相应用。本工作综述并评估了致力于通过回收不同类型废料制备活性炭及其在各种水相处理中的应用的文献。显然,传统(来自农业和木材工业)和非传统(来自市政和工业活动)废料均可用于制备活性炭,这些活性炭可应用于各种水处理工艺,即去除有机污染物、染料、挥发性有机化合物和重金属。此外,通过物理或化学活化均可获得高比表面积;然而,联合处理可能会增强吸附剂的表面性能,从而提高其吸附能力。从所做的综述可以明显看出,由传统和非传统废料制备的活性炭可能有效地与商业活性炭竞争。当考虑到用于生产碳的原材料和待去除的污染物对活化程序进行优化时,这种情况最为常见。