Pacchione Michela, Urbano José Lucas, Nielsen Ulla Gro, McGrath John W, Manesiotis Panagiotis
School of Chemistry and Chemical Engineering, Queen's University, David Keir Building, Stranmillis Road, BT9 5AG Belfast, Northern Ireland, U.K.
Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, 5230 Odense, Denmark.
ACS Appl Polym Mater. 2024 Dec 6;6(24):15304-15312. doi: 10.1021/acsapm.4c03237. eCollection 2024 Dec 27.
Phosphorus (P) fertilizer is an essential component of our food system with the majority of all mined P rock processed to make mineral fertilizers. Globally however P rock stocks are declining-both in quality and quantity-with poor P management creating a linear economic system where P is mined, globally redistributed into products and eventually discharged into the environment leading to eutrophication. To enable establishment of a circular P economy, whereby P can be recovered from waste for its industrial reuse, requires the development of effective P recovery technologies. Adsorption via anion exchange is a promising technology for P recovery from waste streams; however, in many cases, the regeneration of the sorbent used (to allow for its subsequent reuse) has not been extensively investigated. We now describe a gel-type anion exchange polymer composed of vinyl benzyl chloride, hydroxypropyl methacrylate, and ethylene glycol dimethacrylate synthesized via suspension polymerization. The obtained material was modified to introduce a quaternary ammonium functionality, characterized, and tested for phosphate capture, in the presence of competing anions and from wastewater samples. Fixed-bed experiments were conducted using monobasic phosphate as adsorbate to test polymer performance, and its stability upon repeated adsorption/desorption cycles was investigated by solid-state NMR, revealing that no degradation or loss of P binding performance across 50 regeneration cycles. Excellent polymer performance in the recovery of P from wastewater was also demonstrated.
磷肥是我们食物系统的重要组成部分,大部分开采的磷矿石都被加工制成矿物肥料。然而在全球范围内,磷矿石储量正在下降——质量和数量都在下降——磷管理不善导致了一种线性经济系统,在这个系统中,磷被开采出来,在全球范围内重新分配到产品中,最终排放到环境中,导致富营养化。为了建立循环磷经济,使磷能够从废物中回收用于工业再利用,需要开发有效的磷回收技术。通过阴离子交换进行吸附是一种从废物流中回收磷的有前景的技术;然而,在许多情况下,所用吸附剂的再生(以便随后再利用)尚未得到广泛研究。我们现在描述一种通过悬浮聚合合成的由乙烯基苄基氯、甲基丙烯酸羟丙酯和乙二醇二甲基丙烯酸酯组成的凝胶型阴离子交换聚合物。对所得材料进行改性以引入季铵官能团,进行表征,并在存在竞争阴离子的情况下以及从废水样品中测试其对磷酸盐的捕获能力。使用磷酸二氢盐作为吸附质进行固定床实验以测试聚合物性能,并通过固态核磁共振研究其在重复吸附/解吸循环后的稳定性,结果表明在50个再生循环中没有降解或磷结合性能的损失。还证明了该聚合物在从废水中回收磷方面具有优异的性能。