State Key Laboratory of Food Science and Technology, Engineering Research Center for Biomass Conversion, Nanchang University, Ministry of Education, Nanchang 330047, China.
State Environmental Protection Key Laboratory of Food Chain Pollution Control, Beijing Technology and Business University, Beijing 100048, China.
Int J Environ Res Public Health. 2022 Apr 27;19(9):5344. doi: 10.3390/ijerph19095344.
Constructed wetlands are an environmentally friendly and economically efficient sewage treatment technology. Heavy metals (HMs) removal is always regarded as one of the most important tasks in constructed wetlands, which have aroused increasing concern in the field of contamination control in recent times. The fillers of constructed wetlands play an important role in HMs removal. However, traditional wetland fillers (e.g., zeolite, sand, and gravel) are known to be imperfect because of their low adsorption capacity. Regarding HMs removal, our work involved the selection of prominent absorbents, the evaluation of adsorption stability for various treatments, and then the possibility of applying this HM removal technology to constructed wetlands. For this purpose, several phosphate materials were tested to remove the heavy metals Cu and Zn. Three good phosphates including hydroxyapatite (HAP), calcium phosphate (CP), and physic acid sodium salt hydrate (PAS) demonstrated fast removal efficiency of HMs (Cu, Zn) from aqueous solution. The maximum removal rates of Cu and Zn by HAP, CP, and PAS reached 81.6% and 95.8%; 66.9% and 70.4%; 98.8% and 1.99%, respectively. In addition, better adsorption stability of these heavy metals was found to occur with a wide variation of desorption time and pH range. The most remarkable efficiency for heavy metal removal among tested phosphates was PAS, followed by HAP and CP. This study can provide a basis for the application of HMs removal in manmade wetland systems.
人工湿地是一种环保且经济高效的污水处理技术。去除重金属(HM)一直被认为是人工湿地最重要的任务之一,近年来在污染控制领域引起了越来越多的关注。人工湿地的填充物在去除重金属方面起着重要作用。然而,由于吸附容量低,传统的湿地填充物(如沸石、沙子和砾石)被认为并不完美。关于去除重金属,我们的工作涉及到选择突出的吸附剂、评估各种处理方法的吸附稳定性,然后探讨将这种重金属去除技术应用于人工湿地的可能性。为此,我们测试了几种磷酸盐材料来去除重金属 Cu 和 Zn。三种良好的磷酸盐,包括羟基磷灰石(HAP)、磷酸钙(CP)和磷酸氢二钠盐水合物(PAS),表现出对水溶液中重金属(Cu、Zn)的快速去除效率。HAP、CP 和 PAS 对 Cu 和 Zn 的最大去除率分别达到 81.6%和 95.8%、66.9%和 70.4%、98.8%和 1.99%。此外,还发现这些重金属具有更好的吸附稳定性,解吸时间和 pH 范围变化较大。在测试的磷酸盐中,去除重金属的效率最高的是 PAS,其次是 HAP 和 CP。本研究可为人工湿地系统中重金属去除的应用提供依据。