Faculty of Engineering, Chemistry Department, Istanbul University, Avcilar, 34320 Istanbul, Turkey.
Environ Sci Pollut Res Int. 2012 Sep;19(8):3118-25. doi: 10.1007/s11356-012-0807-2. Epub 2012 Aug 8.
The objectives of this research are to identify the functional groups and determine corresponding pK (a) values of the acidic sites on dried brown algae Cystoseira barbata using FTIR and potentiometric titrations, and to investigate the biosorption ability of biomass towards divalent nickel, cadmium, and lead ions. Adsorption was studied as a function of solution pH and contact time, and experimental data were evaluated by the Langmuir isotherm model.
CaCl(2) pretreatment was applied to the sorbent for enhancing the metal uptake capacity. The effect of solution pH on biosorption equilibrium was investigated in the pH range of 1.5-5.0. Individual as well as competitive adsorption capacity of the sorbent were studied for metal cations and mixtures.
The retention of the tested metal ions was mostly influenced from pH in the range of 1.5-2.5, then stayed almost constant up to 5.0, while Ni(II) uptake showed the highest variation with pH. Potentiometric titrations were performed to find the number of strong and weak acidic groups and their acidity constants. The density of strong and weak acidic functional groups in the biomass were found to be 0.9 and 2.26 mmol/g, respectively. The FTIR spectra of the sorbent samples indicated various functionalities on the biomass surface including carboxyl, hydroxyl, and amino and sulphonate groups which are responsible for the binding of metal ions.
The capacity of the biomass for single metal ions (around 1 mmol/g) was increased to 1.3 mmol/g in competitive adsorption, Pb(II) showing the highest Langmuir intensity constant. Considering its extremely high abundance and low cost, C. barbata may be potentially important in metal ion removal from contaminated water and industrial effluents.
本研究的目的是使用傅里叶变换红外光谱(FTIR)和电位滴定法确定干褐藻 Cystoseira barbata 上酸性位的功能基团,并确定相应的 pK(a) 值,以及研究生物质对二价镍、镉和铅离子的生物吸附能力。吸附作为溶液 pH 和接触时间的函数进行研究,并通过 Langmuir 等温线模型评估实验数据。
采用 CaCl2 预处理对吸附剂进行处理,以提高金属的摄取能力。研究了溶液 pH 对吸附平衡的影响,实验 pH 范围为 1.5-5.0。研究了吸附剂对金属阳离子和混合物的单一和竞争吸附能力。
测试金属离子的保留率主要受 1.5-2.5 范围内 pH 的影响,然后在 5.0 左右基本保持不变,而 Ni(II)的摄取量随 pH 的变化最大。进行了电位滴定以确定强和弱酸性基团的数量及其酸度常数。在生物质中发现强和弱酸性官能团的密度分别为 0.9 和 2.26mmol/g。吸附剂样品的 FTIR 光谱表明,生物质表面存在各种官能团,包括羧基、羟基、氨基和磺酸盐基团,这些基团负责金属离子的结合。
生物质对单一金属离子(约 1mmol/g)的容量在竞争吸附中增加到 1.3mmol/g,其中 Pb(II)的 Langmuir 强度常数最高。考虑到其极高的丰度和低成本,C.barbata 可能在从受污染的水和工业废水中去除金属离子方面具有潜在的重要性。