Department of Geological Sciences, Ohio University, Athens, OH 45701, USA.
School of Earth Sciences, The Ohio State University, Columbus, OH 43210, USA.
Chemosphere. 2014 Feb;97:140-5. doi: 10.1016/j.chemosphere.2013.11.008. Epub 2013 Dec 11.
Permanganate (MnO4(-)) is a strong oxidant that is widely used for treating chlorinated ethylenes in groundwater. This study aims to develop hyper-saline MnO4(-) solution (MnO4(-) gel; PG) that can be injected into aquifers via wells, slowly gelates over time, and slowly release MnO4(-) to flowing water. In this study, compatibility and miscibility of gels, such as chitosan, aluminosilicate, silicate, and colloidal silica gels, with MnO4(-) were tested. Of these gels, chitosan was reactive with MnO4(-). Aluminosilicates were compatible but not readily miscible with MnO4(-). Silicates and colloidal silica were both compatible and miscible with MnO4(-), and gelated with addition of KMnO4 granules. Colloidal silica has low initial viscosity (<15cP), exhibited delayed gelation characteristics with the lag times ranging from 0 to 200min. Release of MnO4(-) from the colloidal silica-based PG gel occurred in a delayed fashion, with maximum duration of 24h. These results suggested that colloidal silica can be used to create PG or delayed-gelling forms containing other oxidants which can be used for groundwater remediation.
过锰酸盐(MnO4(-))是一种强氧化剂,广泛用于处理地下水中的氯化乙烯。本研究旨在开发高盐度过锰酸盐溶液(MnO4(-)凝胶;PG),可通过井注入含水层,随着时间的推移缓慢胶凝,并将过锰酸盐缓慢释放到流动水中。在这项研究中,测试了凝胶(如壳聚糖、铝硅酸盐、硅酸盐和胶体硅凝胶)与过锰酸盐的相容性和混溶性。其中,壳聚糖与过锰酸盐发生反应。铝硅酸盐与过锰酸盐相容但不易混溶。硅酸盐和胶体硅都与过锰酸盐相容且混溶,并在添加高锰酸钾颗粒时胶凝。胶体硅的初始粘度低(<15cP),表现出延迟胶凝特性,滞后时间从 0 到 200 分钟不等。胶体硅基 PG 凝胶中过锰酸盐的释放呈延迟释放,最大持续时间为 24 小时。这些结果表明,胶体硅可用于创建 PG 或含有其他氧化剂的延迟胶凝形式,可用于地下水修复。