Lamanna Leonardo, Giacoia Gabriele, Friuli Marco, Leone Gabriella, Carlucci Nicola, Russo Fabrizio, Sannino Alessandro, Demitri Christian
Department of Engineering for Innovation, Campus Ecotekne, University of Salento, Via per Monteroni, 73100 Lecce, Italy.
T.ECO.M. s.r.l., Viale Europa 16/C, 70132 Bari, Italy.
ACS Omega. 2023 May 30;8(23):20708-20713. doi: 10.1021/acsomega.3c01257. eCollection 2023 Jun 13.
Water pollution is a major concern in our modern age. The contamination of water, as a valuable and often limited resource, affects both the environment and human health. Industrial processes such as food, cosmetics, and pharmaceutical production also contribute to this problem. Vegetable oil production, for example, generates a stable oil/water emulsion containing 0.5-5% oil, which presents a difficult waste disposal issue. Conventional treatment methods based on aluminum salts generate hazardous waste, highlighting the need for green and biodegradable coagulant agents. In this study, the efficacy of commercial chitosan, a natural polysaccharide derived from chitin deacetylation, has been evaluated as a coagulation agent for vegetable oil emulsions. The effect of commercial chitosan was assessed in relation to different surfactants (anionic, cationic, and nonpolar) and pH levels. The results demonstrate that chitosan is effective at concentrations as low as 300 ppm and can be reused, providing a cost-effective and sustainable solution for oil removal. The flocculation mechanism relies on the desolubilization of the polymer, which acts as a net to entrap the emulsion, rather than solely relying on electrostatic interactions with the particles. This study highlights the potential of chitosan as a natural and ecofriendly alternative to conventional coagulants for the remediation of oil-contaminated water.
水污染是我们这个现代社会的一个主要问题。水作为一种宝贵且往往有限的资源,其污染会影响环境和人类健康。食品、化妆品和药品生产等工业过程也加剧了这一问题。例如,植物油生产会产生一种含油量为0.5%至5%的稳定油/水乳液,这带来了棘手的废物处理问题。基于铝盐的传统处理方法会产生有害废物,这凸显了对绿色且可生物降解的混凝剂的需求。在本研究中,已对商业壳聚糖(一种由甲壳素脱乙酰化得到的天然多糖)作为植物油乳液混凝剂的功效进行了评估。针对不同的表面活性剂(阴离子型、阳离子型和非极性)以及pH值水平,评估了商业壳聚糖的效果。结果表明,壳聚糖在低至300 ppm的浓度下即可有效发挥作用,并且可以重复使用,为除油提供了一种经济高效且可持续的解决方案。絮凝机制依赖于聚合物的去溶解作用(聚合物起到一个网的作用来捕获乳液),而不是仅仅依靠与颗粒的静电相互作用。本研究凸显了壳聚糖作为一种天然且环保的传统混凝剂替代品,在修复含油污水方面的潜力。