Ramos-Guivar Juan A, Checca-Huaman Noemi-Raquel, Litterst F Jochen, Passamani Edson C
Grupo de Investigación de Nanotecnología Aplicada Para la Biorremediación Ambiental, Energía, Biomedicina y Agricultura (NANOTECH), Facultad de Ciencias Físicas, Universidad Nacional Mayor de San Marcos, Av. Venezuela Cdra 34 S/N, Ciudad Universitaria, Lima 01, Peru.
Centro Brasileiro de Pesquisas Físicas, Rio de Janeiro 22290-180, RJ, Brazil.
Nanomaterials (Basel). 2023 May 20;13(10):1684. doi: 10.3390/nano13101684.
Real water remediation is an important issue that requires the development of novel adsorbents with remarkable adsorption properties, permitting reusability. In this work, the surface and adsorption properties of bare magnetic iron oxide nanoparticles were systematically studied, before and after the application of a maghemite nanoadsorbent in two real Peruvian effluents severely contaminated with Pb(II), Pb(IV), Fe(III), and others. We were able to describe the Fe and Pb adsorption mechanisms that occurred at the particle surface. Fe Mössbauer and X-ray photoelectron spectroscopy results together with kinetic adsorption analyses gave evidence for two involved surface mechanisms: (i) surface deprotonation of maghemite nanoparticles (isoelectric point of pH = 2.3), forming Lewis sites bonding Pb complexes; and (ii) the formation of a thin inhomogeneous secondary layer of iron oxyhydroxide and adsorbed Pb compounds, as favored by surface physicochemical conditions. The magnetic nanoadsorbent enhanced the removal efficiency to values of ca. 96% and provided adsorptive properties with reusability due to the conserved morphological, structural, and magnetic properties. This makes it favorable for large-scale industrial applications.
真正的水修复是一个重要问题,需要开发具有卓越吸附性能且可重复使用的新型吸附剂。在这项工作中,我们系统地研究了裸露的磁性氧化铁纳米颗粒在应用磁赤铁矿纳米吸附剂处理两种严重受Pb(II)、Pb(IV)、Fe(III)等污染的秘鲁实际废水之前和之后的表面及吸附特性。我们能够描述在颗粒表面发生的铁和铅的吸附机制。Fe穆斯堡尔谱和X射线光电子能谱结果以及动力学吸附分析为两种相关的表面机制提供了证据:(i) 磁赤铁矿纳米颗粒的表面去质子化(等电点pH = 2.3),形成与铅络合物结合的路易斯位点;(ii) 由于表面物理化学条件的影响,形成了一层薄的不均匀的羟基氧化铁和吸附的铅化合物的次生层。磁性纳米吸附剂将去除效率提高到约96%,并且由于形态、结构和磁性性能得以保留,因而具有可重复使用的吸附特性。这使其有利于大规模工业应用。