Choque-Quispe David, Ligarda-Samanez Carlos A, Ramos-Pacheco Betsy S, Solano-Reynoso Aydeé M, Quispe-Marcatoma Justiniano, Choque-Quispe Yudith, Peralta-Guevara Diego E, Martínez-Huamán Edgar L, Correa-Cuba Odilon, Masco-Arriola Mery Luz, Lechuga-Canal Washington Julio, Montalvo Amanca Fred
Water Analysis and Control Research Laboratory, Universidad Nacional José María Arguedas, Andahuaylas 03701, Peru.
Department of Agroindustrial Engineering, Universidad Nacional José María Arguedas, Andahuaylas 03701, Peru.
Polymers (Basel). 2022 Jul 9;14(14):2803. doi: 10.3390/polym14142803.
The removal of heavy metals from wastewater is an environmental challenge which demands the use of environmentally friendly materials that promote a circular economy. This study aimed to apply a novel composite of an activated nanoclay/hydrocolloid in the removal of heavy metals from wastewater. A composite blended under pressure was prepared with spray-dried hydrocolloid derived from Nostoc sphaericum algae and activated nanoclay in an acid medium and 1M NaCl. The composite and components were analyzed through infrared (IR), X-ray (XR), ζ potential, cation exchange capacity (CEC), particle size, and SEM images. The composite was subjected to the adsorption of heavy metals (Pb, As, Zn, and Cd) at pH 4.5 and the removal percentage, kinetics, and adsorption isotherms were evaluated. It was observed that the activated nanoclay and the composite that presented a particle size of around 400 nm significantly increased (p-value < 0.05) the CEC, ζ potential, the functional groups, and chelating components, removing heavy metals above 99% for Pb, As 33%, Cd 15%, and Zn 10%. Adsorption kinetics was adjusted to the pseudo second-order model (R2 > 0.98), and the Langmuir and Freundlich models better represented the sorption isotherm at 20 °C. The formulated composite presents a good ability to remove heavy metals in wastewater.
从废水中去除重金属是一项环境挑战,需要使用促进循环经济的环保材料。本研究旨在应用一种新型的活性纳米粘土/水胶体复合材料来去除废水中的重金属。在酸性介质和1M氯化钠中,将源自球形念珠藻的喷雾干燥水胶体与活性纳米粘土在压力下混合制备复合材料。通过红外(IR)、X射线(XR)、ζ电位、阳离子交换容量(CEC)、粒径和扫描电子显微镜(SEM)图像对复合材料及其组分进行分析。在pH值为4.5的条件下,对复合材料进行重金属(铅、砷、锌和镉)吸附试验,并评估去除率、动力学和吸附等温线。结果表明,粒径约为400nm的活性纳米粘土和复合材料显著提高了(p值<0.05)阳离子交换容量、ζ电位、官能团和螯合成分,对铅的去除率超过99%,对砷的去除率为33%,对镉的去除率为15%,对锌的去除率为10%。吸附动力学符合准二级模型(R2>0.98),Langmuir和Freundlich模型能更好地描述20℃下的吸附等温线。所制备的复合材料具有良好的去除废水中重金属的能力。