Alaysuy Omaymah, Aljohani Meshari M, Alkhamis Kholood, Alatawi Nada M, Almotairy Awatif R Z, Abu Al-Ola Khulood A, Khder Abdelrahman S, El-Metwaly Nashwa M
Department of Chemistry, College of Science, University of Tabuk, 71474, Tabuk, Saudi Arabia.
Department of Chemistry, Faculty of Science, Taibah University, Yanbu, 30799, Saudi Arabia.
Heliyon. 2024 Mar 26;10(7):e28622. doi: 10.1016/j.heliyon.2024.e28622. eCollection 2024 Apr 15.
To eliminate the hazardous pesticide 2,4-dichlorophenylacetic acid (2,4-D) through aqueous solutions, stacked nanorods known as hetero bimetallic organic frameworks (MOFs) of 2-methyl imidazole based on lanthanum and zinc are created. The research's convincing discoveries displayed that La/Zn-MOF is an actual adsorbent for the removal of 2,4-D through aqueous solutions. The La/Zn-MOF was investigated using a variability of techniques, with scanning electron microscope (SEM), powered X-ray diffraction (PXRD), and Brunauer-Emmett-Teller (BET) investigation. La/Zn-MOF has a significant pore capacity of 1.04 cm³/g and a comparatively large surface area of 897.69 m/g. Our findings, which are quite intriguing, demonstrate that adsorption behavior is pointedly wedged by variations in pH. A pH 6 dose of 0.02 g was shown to be the optimal setting for the greatest capacity for adsorption. Because adsorption is an endothermic process, temperature variations affect its capability. The adsorption method was fit both isothermally and kinetically using the Langmuir isotherm classical. It was created that the entire process made use of a chemisorption mechanism. Solution pH, temperature, adsorbent dosage, and time were all improved using the Box-Behnken design (BBD) and Response Surface Methodology (RSM). We were able to accurately calculate the values of ΔH, ΔS and ΔG for 2,4-D by following the guidelines. These results demonstrated the spontaneous and endothermic character of the adsorption procedure employing La/Zn-MOF as an adsorbent. Adsorption-desorption cycles can be carried out up to five times. With the synthesized La/Zn-MOF adsorbent due to its exceptional reusability. Many processes, such π-π interaction, pore filling, H-bonding, or electrostatic contact, were postulated to explain the connection between La/Zn-MOF and 2,4-D after extra research to appreciate well the link was conducted. This is the first study to demonstrate the effectiveness of utilizing La/Zn-MOF as an adsorbent to eliminate 2,4-D from wastewater models. The results display that a pH of 6 is required to achieve the maximal 2,4-D adsorption capability on La/Zn-MOF, which is 307.5 mg/g.
为了通过水溶液去除有害农药2,4-二氯苯乙酸(2,4-D),制备了基于镧和锌的2-甲基咪唑的堆叠纳米棒,即异质双金属有机框架(MOF)。该研究令人信服的发现表明,La/Zn-MOF是一种通过水溶液去除2,4-D的实际吸附剂。使用多种技术对La/Zn-MOF进行了研究,包括扫描电子显微镜(SEM)、粉末X射线衍射(PXRD)和布鲁诺尔-埃米特-泰勒(BET)研究。La/Zn-MOF具有1.04 cm³/g的显著孔隙容量和897.69 m²/g的相对较大表面积。我们非常有趣的发现表明,吸附行为明显受到pH值变化的影响。结果表明,pH值为6、剂量为0.02 g是实现最大吸附容量的最佳设置。由于吸附是一个吸热过程,温度变化会影响其吸附能力。使用朗缪尔等温线经典模型对吸附方法进行了等温线和动力学拟合。结果表明,整个过程采用了化学吸附机制。使用Box-Behnken设计(BBD)和响应面方法(RSM)对溶液pH值、温度、吸附剂用量和时间进行了优化。按照指导方针,我们能够准确计算出2,4-D的ΔH、ΔS和ΔG值。这些结果证明了以La/Zn-MOF作为吸附剂的吸附过程具有自发性和吸热性。由于合成的La/Zn-MOF吸附剂具有出色的可重复使用性,吸附-解吸循环最多可进行五次。在进行了额外研究以更好地理解两者之间的联系后,推测了许多过程,如π-π相互作用、孔隙填充、氢键或静电接触,以解释La/Zn-MOF与2,4-D之间的关系。这是第一项证明利用La/Zn-MOF作为吸附剂从废水模型中去除2,4-D有效性的研究。结果显示,要在La/Zn-MOF上实现最大的2,4-D吸附能力,需要pH值为6,最大吸附能力为307.5 mg/g。