a Department of Chemical Engineering , National Institute of Technology Karnataka , Mangaluru , Karnataka , India.
b Paneer Campus , Nitte University Center for Science Education and Research (NUCSER) , Mangaluru , Karnataka , India.
Int J Phytoremediation. 2019;21(4):380-390. doi: 10.1080/15226514.2018.1524845. Epub 2019 Feb 11.
Heavy metal pollution is a prevalent and critical environmental concern. Its rampancy is attributed to indiscriminate anthropogenic activities. Several technologies including biosorption have been continuously researched upon to overcome the limitations of the conventional method of treatments in removal of heavy metals. Biosorption technology involves the application of a biomass in its nonliving form. Pteris vittata L., a pteridophyte, considered as an invasive weed was investigated in the present study as a potential decontaminant of toxic metals, Cr(VI) and Cd(II). The adsorption capacity of the biosorbent for Cr(VI) and Cd(II) under equilibrium conditions was investigated. The morphology, elemental composition, functional groups, and thermal stability of the biosorbent before and after metal loading were evaluated. At 303 K and an equilibrium time of 120 min, the maximum loading of Cr(VI) on the biosorbent was estimated to be 166.7 mg/g at pH 2 and Cd(II) to be 31.3 mg/g at pH 6. Isotherm models, kinetic studies, and thermodynamic studies indicated the mechanisms, chemisorption, ion exchange and intraparticle diffusion, controlling the Cr(VI) and Cd(II) uptake, respectively. The interactive effect of multi-metal ions in binary component systems was synergistic for Cd(II) uptake. The results validate the toxic metal removal potency of the biosorbent.
重金属污染是一个普遍而严重的环境问题。其猖獗的原因是人类活动的无差别。包括生物吸附在内的几种技术一直在被不断研究,以克服传统处理方法在去除重金属方面的局限性。生物吸附技术涉及到非生命形式的生物质的应用。凤尾蕨,一种蕨类植物,被认为是一种入侵性杂草,在本研究中被用作有毒金属(Cr(VI) 和 Cd(II))的潜在净化剂。在平衡条件下,研究了生物吸附剂对 Cr(VI) 和 Cd(II)的吸附能力。评估了生物吸附剂在金属负载前后的形态、元素组成、官能团和热稳定性。在 303 K 和 120 分钟的平衡时间下,在 pH 2 时,生物吸附剂对 Cr(VI)的最大负载量估计为 166.7 mg/g,在 pH 6 时,Cd(II)的最大负载量为 31.3 mg/g。等温线模型、动力学研究和热力学研究表明,吸附 Cr(VI)和 Cd(II)的机制分别为化学吸附、离子交换和颗粒内扩散。二元组分体系中多金属离子的相互作用对 Cd(II)的吸收具有协同作用。这些结果验证了生物吸附剂去除有毒金属的能力。