Li Xingjie, Xiao Qiusheng, Shao Qin, Li Xiaopeng, Kong Jiejie, Liu Liyan, Zhao Zhigang, Li Rungen
College of Life Science and Environmental Resources, Yichun University, Yichun, 336000, China.
Engineering Technology Research Center of Jiangxi Universities and Colleges for Selenium Agriculture, Yichun, 336000, China.
BMC Chem. 2023 Jun 14;17(1):54. doi: 10.1186/s13065-023-00977-4.
Biosorbents have been extensively studied for heavy metal adsorption due to their advantages of low cost and high efficiency. In the study, the living and non-living biomass of Cupriavidus necator GX_5 previously isolated were evaluated for their adsorption capacity and/or removal efficiency for Cd (II) through batch experiments, SEM and FT-IR investigations. The maximum removal efficiency rates for the live and dead biomass were 60.51% and 78.53%, respectively, at an optimum pH of 6, a dosage of 1 g/L and an initial Cd (II) concentration of 5 mg/L. The pseudo-second-order kinetic model was more suitable for fitting the experimental data, indicating that the rate-limiting step might be chemisorption. The Freundlich isotherm model fit better than the Langmuir isotherm model, implying that the adsorption process of both biosorbents was heterogeneous. FT-IR observation reflected that various functional groups were involved in Cd (II) adsorption: -OH, -NH, C=O, C-O and C-C groups for the living biomass and -OH, -NH, C-H, C = O, C-N and N-H groups for the dead biomass. Our results imply that non-living biosorbents have a higher capacity and stronger strength for absorbing Cd (II) than living biomass. Therefore, we suggest that dead GX_5 is a promising adsorbent and can be used in Cd (II)-contaminated environments.
由于生物吸附剂具有低成本和高效率的优点,因此已被广泛研究用于重金属吸附。在本研究中,通过批量实验、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)研究,对先前分离出的食酸丛毛单胞菌GX_5的活生物质和非活生物质对Cd(II)的吸附容量和/或去除效率进行了评估。在最佳pH值为6、剂量为1 g/L和初始Cd(II)浓度为5 mg/L的条件下,活生物质和死生物质的最大去除效率分别为60.51%和78.53%。准二级动力学模型更适合拟合实验数据,表明限速步骤可能是化学吸附。Freundlich等温线模型比Langmuir等温线模型拟合得更好,这意味着两种生物吸附剂的吸附过程都是非均相的。FT-IR观察结果表明,各种官能团参与了Cd(II)的吸附:活生物质中的-OH、-NH、C=O、C-O和C-C基团,以及死生物质中的-OH、-NH、C-H、C = O、C-N和N-H基团。我们的结果表明,非活生物吸附剂对Cd(II)的吸附能力和强度高于活生物质。因此,我们认为死的GX_5是一种有前景的吸附剂,可用于受Cd(II)污染的环境。