Ojstršek Alenka, Vouk Primož, Fakin Darinka
Faculty of Mechanical Engineering, University of Maribor, Smetanova 17, 2000 Maribor, Slovenia.
Materials (Basel). 2022 Feb 16;15(4):1488. doi: 10.3390/ma15041488.
The presented study assesses the efficiency of selected adsorbents, zeolite 4A in two particle sizes and pelletized activated carbon (AC), for the potential removal of color, chemical oxygen demand (COD), total organic carbon (TOC) and metals from wastewaters after natural wool dyeing. Firstly, the natural coloring compounds were extracted from dried common walnut () leaves and used further for exhaustion dyeing of wool fibers, together with three different metallic salts in two concentrations (meta-mordanting). Effluents with higher mordant concentration were additionally treated according to a shake-flask adsorption experiment. The obtained results revealed efficient removal of exceeded metallic ions by zeolite (up to 94.7%), on account of their superior ion exchange capability as compared to AC. The zeolites also reduced turbidity and electrical conductivity significantly. On the other hand, AC was more efficient for the reduction in organic pollution, COD up to 96% and TOC up to 95%, due to its higher specific surface area and total pore volume, and, thus, higher potential for adsorption of different compounds in comparison to 4A. All three proposed adsorbents lowered wastewaters' coloration remarkably, up to 78% (AC) and up to 71% (4A), depending on the type of effluent/mordant and inspected wavelength; although, the spectral absorbance coefficient (SAC) values remained highly above the limit values for discharge of wastewaters into watercourses.
本研究评估了两种粒径的4A沸石和颗粒状活性炭(AC)等选定吸附剂对天然羊毛染色后废水中颜色、化学需氧量(COD)、总有机碳(TOC)和金属的潜在去除效率。首先,从干燥的普通核桃()叶中提取天然着色化合物,并与两种浓度的三种不同金属盐一起用于羊毛纤维的竭染(间媒染)。根据摇瓶吸附实验,对媒染剂浓度较高的废水进行了额外处理。所得结果表明,由于沸石与AC相比具有卓越的离子交换能力,其对超标金属离子的去除效率很高(高达94.7%)。沸石还显著降低了浊度和电导率。另一方面,由于AC具有更高的比表面积和总孔体积,因此与4A相比,其对不同化合物的吸附潜力更高,在降低有机污染方面更有效,COD去除率高达96%,TOC去除率高达95%。根据废水/媒染剂类型和检测波长的不同,所有三种建议的吸附剂都能显著降低废水的色度,AC高达78%,4A高达71%;尽管如此,光谱吸收系数(SAC)值仍远高于废水排入水道的限值。