College of Environmental Sciences, Sichuan Agricultural University, Chengdu, 611130, PR China.
College of Environmental Sciences, Sichuan Agricultural University, Chengdu, 611130, PR China; Key Laboratory of Soil Environment Protection of Sichuan Province, Chengdu, 611130, PR China.
Chemosphere. 2024 Jan;348:140704. doi: 10.1016/j.chemosphere.2023.140704. Epub 2023 Nov 16.
In order to mitigate the harmful effects of eutrophication in water bodies, the applications of lanthanum-modified materials for phosphate removal from wastewater have attracted much attention. Unlike conventional adsorbents, plant wastes usually have poor adsorption abilities and are difficult to be reused for desorption of phosphate due to their small pore sizes and ununiform loading of modified ions. In this paper, a composite adsorbent (LC-MM) was synthesized by hydrothermal treatment of waste traditional Chinese medical materials (MMs) with load of lanthanum carbonate and co-heating treatment with coal fly ash (CFA), which was applied to remove phosphate from water. The results showed that maximum adsorption capacity of LC-MM was 52 mg g, and the LC-MM showed appreciable adsorption capacity of phosphate for agricultural wastewater in the presence of complex interfering ions and for urban surface waters with low phosphate concentrations. Five adsorption-desorption cycles showed good reusability. The mechanism study showed that the La ions were more uniformly distributed on the surface of the absorbents with the introduction of Fe, Al, Mg and Ca ions in CFA. The ligand exchange between phosphate and carbonate, the internal spherical complexation formed by lanthanum ion and phosphate, and surface chemical precipitation attachment are the main reasons why the adsorption capacity of LC-MM approached or even surpassed that of conventional lanthanum-modified adsorbents. In conclusions, this work proposed an effective method for the modification of plant materials.
为了减轻水体富营养化的有害影响,人们对镧改性材料在废水中除磷的应用产生了浓厚的兴趣。与传统吸附剂不同,由于植物废料的孔径较小且改性离子的负载不均匀,其吸附能力通常较差,且难以进行解吸磷酸盐的再利用。本文通过碳酸镧负载的中药材废料(MMs)的水热处理和粉煤灰(CFA)的共热处理,合成了一种复合吸附剂(LC-MM),并将其应用于水中的磷酸盐去除。结果表明,LC-MM 的最大吸附容量为 52mg/g,LC-MM 在存在复杂干扰离子的农业废水中和在磷酸盐浓度较低的城市地表水具有可观的磷酸盐吸附能力。五次吸附-解吸循环显示出良好的可重复使用性。机理研究表明,CFA 中引入的 Fe、Al、Mg 和 Ca 离子使 La 离子更均匀地分布在吸附剂表面。磷与碳酸盐之间的配体交换、镧离子与磷酸盐形成的内球形络合以及表面化学沉淀附着是 LC-MM 吸附容量接近甚至超过传统镧改性吸附剂的主要原因。总之,这项工作提出了一种有效改性植物材料的方法。