School of Water Resources and Environment, and Beijing Key Laboratory of Water Resources and Environment Engineering, China University of Geosciences (Beijing), 29 Xueyuan Road, Beijing, 100083, P. R. China.
Environ Technol. 2012 Oct-Nov;33(19-21):2395-403. doi: 10.1080/09593330.2012.670268.
In the in-situ remediation of ammonium (NH4+) in groundwater by a sequential reactive barrier filled with zeolite, it is of great importance to understand the mechanisms of NH4+ sorption to zeolite. In this study, the effect of dissolved natural organic matter on NH4+ sorption to natural Chinese clinoptilolite was studied by batch experiments taking humic acid (HA) as a model substance. The surface of clinoptilolite was characterized by scanning electronic microscopy (SEM). A needle cluster of sorbed HA could be observed on the surface of the clinoptilolite. The negative effect of HA on NH4+ sorption is thought to be their competition for sorption sites, the surface coverage and blockage of the pores of clinoptilolite by HA. The fitting results of kinetic sorption data indicated that the rate-controlling step for NH4+ sorption by clinoptilolite in both NH4+ and NH4+ + HA systems is the heterogeneous chemisorption. The existence of HA (10 mg/L) significantly reduced the initial sorption rate of NH4+, but the effect of a further concentration increase of HA was slight. The effect of HA on maximum sorption capacity was found to be insignificant in the experiments. A high aqueous Ca2+ concentration can decrease the negative effect of HA on NH4+ sorption by precipitation of calcium humate.
在采用沸石作为填充材料的顺序反应性屏障原位修复地下水铵(NH4+)的过程中,了解 NH4+ 沸石吸附机制非常重要。本研究采用批量实验,以腐殖酸(HA)作为模型物质,研究了溶解天然有机物对天然斜发沸石吸附 NH4+的影响。采用扫描电子显微镜(SEM)对沸石表面进行了特征描述。在沸石表面可以观察到吸附 HA 的针簇。HA 对 NH4+吸附的负面影响被认为是其对吸附位点的竞争、HA 对沸石孔的表面覆盖和堵塞。动力学吸附数据的拟合结果表明,NH4+和 NH4+ + HA 体系中沸石对 NH4+吸附的速率控制步骤是多相化学吸附。HA(10mg/L)的存在显著降低了 NH4+的初始吸附速率,但进一步增加 HA 浓度的影响很小。实验发现,HA 对最大吸附容量的影响并不显著。高浓度的水溶液 Ca2+可通过钙腐殖酸的沉淀来降低 HA 对 NH4+吸附的负面影响。