Luo Dongxia, Geng Rongyue, Wang Wei, Ding Zhe, Qiang Shirong, Liang Jianjun, Li Ping, Zhang Youxian, Fan Qiaohui
College of Earth and Environmental Sciences, Lanzhou University, Lanzhou 730000, China; Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China; Key Laboratory of Petroleum Resources, Gansu Province, Lanzhou 730000, China.
Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China; Key Laboratory of Petroleum Resources, Gansu Province, Lanzhou 730000, China.
J Hazard Mater. 2021 Jan 5;401:123249. doi: 10.1016/j.jhazmat.2020.123249. Epub 2020 Jun 20.
In this study, batch and spectroscopic approaches were used to explore the sorption of Pb(II) on micas (i.e., muscovite, biotite and phlogopite) in the presence of Trichoderma viride (T. viride). Batch sorption showed that ion exchange, outer-sphere complexes (OSCs) and inner-sphere complexes (ISCs) contributed to Pb(II) sorption on biotite and phlogopite in the pH range of 2.0-7.4, whereas the ISCs were predominant for Pb(II) sorption on muscovite. X-ray diffraction and Fourier transform infrared (FT-IR) analyses have confirmed the changes of structure and surface properties of micas after co-culturing with T. viride, which could improve the sorption capacity of micas to Pb(II). Scanning electron microscopy revealed the bio-mineralization of Pb(II) on T. viride and mica-T. viride composites forming lead phosphates. Furthermore, FT-IR analysis showed that the groups of Si-OH, Al-OH from micas, and carboxyl, phosphate and amino groups from T. viride were synergistically contributing to Pb(II) sorption on mica-T. viride composite. X-ray photoelectron spectroscopy further confirmed that both OSCs and ISCs formed for Pb(II) sorption on micas; however, in the case of mica-T. viride composites, the synergistic effects of T. viride and micas were contributing to Pb(II) sorption through forming the ISCs and biomineralization.
在本研究中,采用批次法和光谱法探讨了在绿色木霉存在下,铅(II)在云母(即白云母、黑云母和金云母)上的吸附情况。批次吸附表明,在2.0 - 7.4的pH范围内,离子交换、外层络合物(OSCs)和内层络合物(ISCs)促进了铅(II)在黑云母和金云母上的吸附,而内层络合物是铅(II)在白云母上吸附的主要形式。X射线衍射和傅里叶变换红外(FT - IR)分析证实了与绿色木霉共培养后云母结构和表面性质的变化,这可以提高云母对铅(II)的吸附能力。扫描电子显微镜揭示了铅(II)在绿色木霉和云母 - 绿色木霉复合材料上形成磷酸铅的生物矿化作用。此外,FT - IR分析表明,云母中的Si - OH、Al - OH基团以及绿色木霉中的羧基、磷酸基团和氨基协同促进了铅(II)在云母 - 绿色木霉复合材料上的吸附。X射线光电子能谱进一步证实,在云母上铅(II)吸附形成了外层络合物和内层络合物;然而,在云母 - 绿色木霉复合材料的情况下,绿色木霉和云母的协同作用通过形成内层络合物和生物矿化作用促进了铅(II)的吸附。