Department of Industrial Products and Packaging Quality, Institute of Quality Science, Poznań University of Economics and Business, Niepodległości 10, 61-875, Poznań, Poland.
Department of Industrial Products and Packaging Quality, Institute of Quality Science, Poznań University of Economics and Business, Niepodległości 10, 61-875, Poznań, Poland.
Chemosphere. 2020 May;246:125744. doi: 10.1016/j.chemosphere.2019.125744. Epub 2020 Jan 2.
Elderberry (Sambucus nigra) pomace obtained as a result of processing in the food industry was examined for the bioremoval of Fe(III) ions from aqueous solutions in batch experiments. Several physicochemical properties of the biomass were analyzed using a variety of analytical methods, such as particle size distribution, elemental composition (SEM-EDS), X-ray diffraction analysis (XRD), thermogravimetry (TGA, DTG), specific surface area and average pore diameter (BET adsorption isotherms), volume of pores and pore volume distribution (BJH), morphology (SEM), mid-infrared analysis FT-IR. The impact of adsorbent dosage, initial concentration, pH and contact time on the process efficiency was studied. The calculated maximum adsorption efficiency and capacity was estimated at 99.5% and 33.25 mg/g, respectively. The biosorption kinetic analysis indicated that the removal process fits better to the pseudo-second order equation and the Langmuir model. Summing up, the biosorbent is a promising low-cost material for the highly effective iron recovery from effluents and improvement of water quality.
本研究采用食品工业加工得到的接骨木果渣,通过间歇实验考察其从水溶液中去除 Fe(III)离子的生物吸附性能。采用多种分析方法,如粒径分布、元素组成(SEM-EDS)、X 射线衍射分析(XRD)、热重分析(TGA、DTG)、比表面积和平均孔径(BET 吸附等温线)、孔体积和孔体积分布(BJH)、形貌(SEM)、中红外分析(FT-IR)等,对生物质的多种物理化学性质进行了分析。研究了吸附剂用量、初始浓度、pH 值和接触时间对吸附过程效率的影响。计算得出的最大吸附效率和容量分别为 99.5%和 33.25mg/g。生物吸附动力学分析表明,去除过程更符合拟二级方程和 Langmuir 模型。综上所述,该生物吸附剂是一种很有前途的低成本材料,可用于从废水中高效回收铁并改善水质。