Wang Zhe, Lin Yan, Wu Deyi, Kong Hainan
School of Environmental Science and Engineering, Shanghai Jiao Tong University, No. 800 Dongchuan Rd., Shanghai 200240, China.
Chemosphere. 2016 Feb;144:1290-8. doi: 10.1016/j.chemosphere.2015.10.015. Epub 2015 Oct 23.
A simple method to functionalize diatomite with hydrous iron oxide was attempted and its performance as a new active filtration material to remove and recover phosphate from water was investigated under varying solution conditions. The Langmuir phosphate adsorption capacity increased from 0.6 mgP/g for raw diatomite to 4.89, 14.71, 25.02 mgP/g for hydrous iron oxide modified diatomite (HIOMD), depending on the amount of iron loaded. Loading of hydrous iron oxide caused the increase in true and bulk density and a decline in filtration rate, but to a lesser extent. It was shown that the HIOMD product with suitable iron content could retain a good filtration performance with a greatly increased adsorption capacity for phosphate. The phosphate adsorption increased by decreasing pH and by increasing ionic strength at high pH levels. The adsorption process was interpreted by ligand exchange. Coexisting oxyanions of sulfate, nitrate, citrate, carbonate, silicate and humic acid showed different effects on phosphate fixation but it was presumed that their influence at their concentrations and pH levels commonly encountered in effluent or natural waters was limited, i.e., HIOMD had a reasonably good selectivity. Results in repeated adsorption, desorption and regeneration experiment showed that the adsorbed phosphate could be recovered and the material could be reused after regeneration. The column test showed that HIOMD could be potentially utilized as an adsorption filtration medium for phosphate removal and recovery from water.
尝试了一种用含水氧化铁对硅藻土进行功能化的简单方法,并研究了其作为一种新型活性过滤材料在不同溶液条件下去除和回收水中磷酸盐的性能。根据铁负载量的不同,Langmuir磷酸盐吸附容量从原生硅藻土的0.6 mgP/g增加到含水氧化铁改性硅藻土(HIOMD)的4.89、14.71、25.02 mgP/g。负载含水氧化铁导致真密度和堆积密度增加,过滤速率下降,但程度较小。结果表明,具有合适铁含量的HIOMD产品在对磷酸盐的吸附容量大大增加的情况下仍能保持良好的过滤性能。在高pH值下,通过降低pH值和增加离子强度可提高磷酸盐的吸附量。吸附过程通过配体交换来解释。共存的硫酸根、硝酸根、柠檬酸根、碳酸根、硅酸根和腐殖酸氧阴离子对磷酸盐固定表现出不同的影响,但据推测,它们在废水或天然水中常见的浓度和pH值水平下的影响是有限的,即HIOMD具有相当好的选择性。重复吸附、解吸和再生实验结果表明,吸附的磷酸盐可以回收,材料再生后可以重复使用。柱试验表明,HIOMD有可能用作从水中去除和回收磷酸盐的吸附过滤介质。