Department of Earth Sciences, National Cheng Kung University, Tainan, Taiwan.
J Colloid Interface Sci. 2010 Jul 15;347(2):277-81. doi: 10.1016/j.jcis.2010.03.050. Epub 2010 Mar 27.
Goethite and hematite nanomaterials (nano-goethite and nano-hematite) can be synthesized using a coprecipitation method. Nano-hematite is synthesized via the reaction of HCl and FeCl(3) solution at 100 degrees C for 2 days, while nano-goethite is prepared by adding Fe(2)(SO(4))(3) into the 2.5 M NaOH solution for 4h, and then heated at 40 degrees C for 2 days. Afterward the photocatalytic decomposition of methylene blue solution is performed by UV-light irradiation, and the adsorption procedure is carried out by batch experiments. It is observed that both nano-hematite and nano-goethite exhibit some photocatalytic activity and possess a high adsorption capacity for copper ions. The maximum Cu(II) adsorption capacity is 149.25 and 84.46 mg/g for nano-goethite and nano-hematite, respectively. Further, the experimental data are well fitted to the pseudo-second-order equation. It also suggests that the Langmuir isotherm is more adequate than the Freundlich isotherm in simulating the adsorption isotherm of Cu(2+), and the Cu(2+) adsorption onto nanomaterials is a spontaneous process. Therefore, these findings indicate that nano-goethite and nano-hematite are effective materials for Cu(2+) removal and, together with its photocatalytic activity, may be applied in the removal of heavy metal ions from aqueous streams.
针铁矿和赤铁矿纳米材料(纳米针铁矿和纳米赤铁矿)可以通过共沉淀法合成。纳米赤铁矿是通过在 100°C 下将 HCl 和 FeCl(3)溶液反应 2 天合成的,而纳米针铁矿是通过将 Fe(2)(SO(4))(3)加入 2.5 M NaOH 溶液中 4 小时,然后在 40°C 下加热 2 天制备的。然后通过紫外光照射进行亚甲基蓝溶液的光催化分解,并通过分批实验进行吸附程序。观察到纳米赤铁矿和纳米针铁矿都表现出一些光催化活性,并对铜离子具有高吸附能力。纳米针铁矿和纳米赤铁矿对 Cu(II)的最大吸附容量分别为 149.25 和 84.46 mg/g。此外,实验数据很好地符合伪二级方程。它还表明,Langmuir 等温线比 Freundlich 等温线更适合模拟 Cu(2+)的吸附等温线,并且 Cu(2+)在纳米材料上的吸附是一个自发的过程。因此,这些发现表明纳米针铁矿和纳米赤铁矿是去除 Cu(2+)的有效材料,并且结合其光催化活性,可能应用于从水相中去除重金属离子。