State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
J Hazard Mater. 2010 Apr 15;176(1-3):926-31. doi: 10.1016/j.jhazmat.2009.11.128. Epub 2009 Dec 1.
This study investigated the process of potassium permanganate (KMnO(4)) oxidation and in situ formed hydrous manganese dioxides (deltaMnO(2)) (i.e., KMnO(4) oxidation and deltaMnO(2) adsorption) for the treatment of dye wastewater. The effectiveness of decolorization, removing dissolved organic carbon (DOC), and increasing biodegradable oxygen demand (BOD) were compared among these processes of KMnO(4) oxidation, deltaMnO(2) adsorption, and KMnO(4) oxidation and deltaMnO(2) adsorption. DeltaMnO(2) adsorption contributed to the maximum DOC removal of 65.0%, but exhibited limited capabilities of decolorizing and increasing biodegradability. KMnO(4) oxidation alone at pH 0.5 showed satisfactory decrease of UV-vis absorption peaks, and the maximum BOD(5)/DOC value of 1.67 was achieved. Unfortunately, the DOC removal was as low as 27.4%. Additionally, the great amount of acid for pH adjustment and the much too low pH levels limited its application in practice. KMnO(4) oxidation and deltaMnO(2) adsorption at pH 2.0 was the best strategy prior to biological process, in balancing the objectives of decolorization, DOC removal, and BOD increase. The optimum ratio of KMnO(4) dosage to X-GRL concentration (R(KMnO(4)/X-GRL)) was determined to be 2.5, at which KMnO(4) oxidation and deltaMnO(2) adsorption contributed to the maximal DOC removal of 53.4%. Additionally, the optimum pH for X-GRL treatment was observed to be near 3.0.
本研究考察了高锰酸钾(KMnO4)氧化和原位形成的水合二氧化锰(δMnO2)(即 KMnO4 氧化和 δMnO2 吸附)处理染料废水的过程。比较了 KMnO4 氧化、δMnO2 吸附和 KMnO4 氧化与 δMnO2 吸附这三种过程的脱色、去除溶解有机碳(DOC)和提高可生物降解需氧量(BOD)的效果。δMnO2 吸附有助于去除最大的 DOC(65.0%),但在脱色和提高生物降解性方面的能力有限。单独的 KMnO4 氧化在 pH 0.5 下表现出令人满意的紫外-可见吸收峰下降,最大 BOD5/DOC 值达到 1.67。然而,DOC 的去除率仅为 27.4%。此外,大量的酸用于 pH 调节以及过低的 pH 值限制了其在实际中的应用。在生物处理之前,KMnO4 氧化和 δMnO2 吸附在 pH 2.0 是最佳策略,平衡了脱色、DOC 去除和 BOD 增加的目标。确定了 KMnO4 用量与 X-GRL 浓度(R(KMnO4/X-GRL))的最佳比值为 2.5,此时 KMnO4 氧化和 δMnO2 吸附有助于去除最大的 DOC(53.4%)。此外,还观察到 X-GRL 处理的最佳 pH 值接近 3.0。