Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China.
Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China.
Int J Biol Macromol. 2023 Jan 1;224:984-997. doi: 10.1016/j.ijbiomac.2022.10.183. Epub 2022 Oct 25.
A novel lanthanum-modified-chitosan-attapulgite (La-CTS-ATP) composite with efficient adsorption of phosphate in water was prepared and characterized. The adsorption properties were investigated by adsorption kinetics, adsorption isotherms and thermodynamics. An orthogonal design test was used to explore the optimal preparation conditions of La-CTS-ATP. Various characterizations exhibited the successful modification of lanthanum and the effective adsorption of phosphate. The batch experiments showed that La-CTS-ATP exhibited excellent stability within pH range of 4-10 and the disturbance of co-existing substances (Cl, NO, HCO, SO). Chemisorption played the main role in phosphate adsorption from kinetic studies. Isotherm studies illustrated monolayer uptake of adsorbents onto the adsorbent, and the maximum adsorption capacity was 102.90 mg/g, much higher than other La-based adsorbents. The reaction process was spontaneous (ΔG < 0), exothermic (ΔH < 0) and disordered (ΔS > 0) from thermodynamic analysis. The excellent reusability of La-CTS-ATP was investigated, after five cycles, the phosphate removal rate and desorption rates were 72.93 % and 77.44 %, respectively. The dynamic adsorption experiments showed that the faster the flow rate, the shorter the time for La-CTS-ATP to get saturation, and the maximum adsorption capacity was slightly reduced. The surface precipitation, electrostatic attraction, and ligand exchange were the main mechanisms affecting its adsorption behavior. The adsorbent exhibited excellent effectiveness in real wastewater (breeding wastewater and domestic wastewater). In this study, a novel and effective adsorbent for phosphorus removal was produced in contaminated water, and the analysis of the adsorption process of the system provides new insights for related research.
一种新型镧改性壳聚糖-凹凸棒土(La-CTS-ATP)复合材料,具有高效吸附水中磷酸盐的性能。通过吸附动力学、吸附等温线和热力学对其吸附性能进行了研究。采用正交设计试验对 La-CTS-ATP 的最佳制备条件进行了探索。各种表征结果表明镧的成功改性和磷酸盐的有效吸附。批实验表明,La-CTS-ATP 在 pH 值为 4-10 范围内和共存物质(Cl、NO、HCO、SO)的干扰下具有良好的稳定性。动力学研究表明,化学吸附在磷酸盐吸附中起主要作用。等温线研究表明,吸附剂对吸附剂的单层吸附,最大吸附容量为 102.90mg/g,远高于其他基于镧的吸附剂。热力学分析表明,反应过程是自发的(ΔG<0)、放热的(ΔH<0)和无序的(ΔS>0)。对 La-CTS-ATP 的优异可重复使用性进行了研究,经过五次循环后,磷酸盐去除率和脱附率分别为 72.93%和 77.44%。动态吸附实验表明,流速越快,La-CTS-ATP 达到饱和的时间越短,最大吸附容量略有降低。表面沉淀、静电吸引和配体交换是影响其吸附行为的主要机制。该吸附剂在实际废水(养殖废水和生活污水)中表现出优异的效果。本研究为受污染水中磷的去除提供了一种新型、有效的吸附剂,对系统吸附过程的分析为相关研究提供了新的思路。