Dipartimento di Scienze del Suolo, della Pianta, dell'Ambiente e delle Produzioni Animali, Università di Napoli Federico II, Portici, Italy.
J Agric Food Chem. 2010 May 12;58(9):5523-30. doi: 10.1021/jf904092n.
Mg-Al layered double hydroxides (LDHs) containing chloride (LDH-Cl) or carbonate (LDH-CO(3)) in the interlayer were obtained at room temperature and after calcitation at 450 degrees C (LDH-Cl-450 and LDH-CO(3)-450) and were characterized by X-ray diffraction and Fourier transform infrared analyses. Sorption isotherms of a humic acidlike fraction naturally occurring in olive oil mill waste waters, named polymerin, on these LDH minerals were carried out. Because LDH-CO(3) showed the highest capacity to sorb polymerin among the four LDH minerals synthesized, two organo-mineral complexes named LDH-CO(3)-LP (low polymerin) and LDH-CO(3)-HP (high polymerin) were prepared by coprecipitation (LDH-CO(3)-LP) and sorption onto a preformed LDH-CO(3) mineral (LDH-CO(3)-HP). These complexes were characterized chemically and physicochemically, and their stability to pH and after thermal treatment at 80 degrees C were evaluated. The diffuse reflectance infrared Fourier transform and X-ray analysis of the complexes indicated that polymerin was sorbed only on the external surfaces of LDH-CO(3) and no intercalation occurred. The LDH-polymerin complexes appeared to be more stable than LDH-CO(3) at pH 4.0 and showed that they were able to sorb both As(V) and Zn. Because the waste waters are usually contaminated with mixtures of pollutants in cationic and anionic forms, the LDH-polymerin complexes appear more suitable than the sorbents in a potential water remediation process.
室温下合成了含氯(LDH-Cl)或碳酸根(LDH-CO(3))的镁铝层状双氢氧化物(LDHs),并在 450°C 下煅烧(LDH-Cl-450 和 LDH-CO(3)-450),通过 X 射线衍射和傅里叶变换红外分析对其进行了表征。对橄榄油厂废水中天然存在的腐殖酸样物质聚合物进行了吸附等温线研究。由于 LDH-CO(3) 在合成的四种 LDH 矿物中对聚合物的吸附容量最大,因此通过共沉淀(LDH-CO(3)-LP)和吸附到预先形成的 LDH-CO(3)矿物上(LDH-CO(3)-HP)制备了两种有机-矿物复合物,分别命名为 LDH-CO(3)-LP(低聚合物)和 LDH-CO(3)-HP(高聚合物)。对这些复合物进行了化学和物理化学表征,并评估了它们对 pH 和 80°C 热处理的稳定性。复合物的漫反射红外傅里叶变换和 X 射线分析表明,聚合物仅吸附在 LDH-CO(3)的外表面,没有发生插层。在 pH 值为 4.0 时,LDH-聚合物复合物比 LDH-CO(3)更稳定,并且表明它们能够同时吸附 As(V)和 Zn。由于废水中通常含有阳离子和阴离子形式的污染物混合物,因此 LDH-聚合物复合物在潜在的水修复过程中似乎比吸附剂更适用。