Department of Chemical and Biological Engineering, The University of Alabama, Tuscaloosa, AL 35487, United States.
Department of Chemical and Biological Engineering, The University of Alabama, Tuscaloosa, AL 35487, United States.
Chemosphere. 2024 Jan;347:140566. doi: 10.1016/j.chemosphere.2023.140566. Epub 2023 Nov 6.
Urea is widely used in fertilizer production for agricultural purposes which risks runoff into soil and water sources. An excess of urea can result in algal or toxic blooms which can poison wildlife or even humans by accumulation in food sources. The removal of urea from water is challenging due to the small size (0.254 nm) and uncharged surface of urea. Intensive research has been conducted on a variety of methods to remove environmental concentrations of urea using adsorbents, but most of them lack effective removal, require long (>2 h) process time, and lack re-generability. Metal-organic frameworks (MOFs) are the new generation of adsorbents with excellent structural and functional group tunability. In this study, we synthesized MIL-100 (Fe), an iron-based MOF, as an efficient adsorbent for the removal of uncharged urea from water. The urea adsorption capacity of MIL-100 (Fe) was tested under varying experimental conditions such as pH (2-10), temperature (25-65 °C), MOF concentration (25-400 ppm), and urea concentration (25-1000 ppm). The results showed the superfast adsorption (more than 85% removal within 2 min) of neutrally charged urea molecules on MIL-100 (Fe). The MOF was able to reach a maximum adsorption efficiency of around 85% with a maximum uptake capacity of 3321 mg/g. The MIL-100 (Fe) showed acceptable re-generability by retaining up to 90% removal efficiency after four regeneration cycles. The urea adsorption followed pseudo 2nd-order adsorption kinetics and dipole-dipole interactions and π-NH bonding were the primary adsorption mechanism.
尿素广泛应用于农业肥料生产,但其有流入土壤和水源的风险。过量的尿素可能导致藻类或有毒水华,通过在食物源中积累,从而毒害野生动物甚至人类。由于尿素的尺寸小(0.254nm)且表面不带电荷,因此从水中去除尿素具有挑战性。人们已经对各种使用吸附剂去除环境浓度尿素的方法进行了深入研究,但大多数方法去除效果不佳,需要较长的(>2 小时)处理时间,且缺乏可重复使用性。金属-有机骨架(MOFs)是新一代具有优异结构和官能团可调性的吸附剂。在这项研究中,我们合成了 MIL-100(Fe),一种基于铁的 MOF,作为一种从水中去除不带电荷的尿素的有效吸附剂。在不同的实验条件下,如 pH(2-10)、温度(25-65°C)、MOF 浓度(25-400ppm)和尿素浓度(25-1000ppm)下,测试了 MIL-100(Fe)对尿素的吸附能力。结果表明,不带电荷的尿素分子在 MIL-100(Fe)上的超快吸附(2 分钟内超过 85%的去除率)。MOF 的最大吸附效率约为 85%,最大吸附量为 3321mg/g。MIL-100(Fe)经过四个再生循环后,仍能保持高达 90%的去除效率,具有可接受的可重复使用性。尿素吸附遵循准 2 级吸附动力学和偶极-偶极相互作用以及π-NH 键合是主要的吸附机制。