Mahawong Sirinad, Onsri Parichart, Thaveemas Piyatida, Kaowphong Sulawan, Nijpanich Supinya, Rattanachueskul Natthanan, Techasakul Supanna, Chuenchom Laemthong, Dechtrirat Decha
Division of Physical Science, Faculty of Science, Prince of Songkla University, Songkhla, 90112, Thailand.
Laboratory of Organic Synthesis, Chulabhorn Research Institute, Bangkok, 10210, Thailand.
Sci Rep. 2025 May 8;15(1):16098. doi: 10.1038/s41598-025-00610-5.
The demand for sustainability is driving research into new ways to make use of waste products. Porous adsorbents with magnetic properties are reusable and do not require a significant external energy source. They are well-suited to the task of decontaminating water on a large scale and, if benignly synthesized from waste products, they would meet the demand for sustainability. In this research, an in situ single-step synthesis is developed that generates a magnetic porous carbon composite from iron scrap and sugarcane bagasse, both of which are abundant waste products. This procedure combines the processes of carbonization, magnetization, and activation in one step. Iron scrap serves as both a magnetic precursor and a self-activating agent, so no additional chemical activators are required. The large surface area (505 m/g) of the synthesized magnetic porous carbon composite adsorbent and its large capacity for tetracycline adsorption (687.6 mg/g) are suitable properties for the treatment of contaminated wastewater. The synthesis process is straightforward, and the use of waste materials to fabricate an adsorbent that retains its performance even after five cycles of adsorption and desorption ensures both cost-effectiveness and sustainability to support the concept of the circular economy.
对可持续性的需求推动了对利用废品新方法的研究。具有磁性的多孔吸附剂可重复使用,且不需要大量外部能源。它们非常适合大规模净化水的任务,如果由废品良性合成,将满足对可持续性的需求。在本研究中,开发了一种原位一步合成法,该方法由废铁和甘蔗渣生成磁性多孔碳复合材料,这两种都是丰富的废品。此过程将碳化、磁化和活化过程一步结合。废铁既是磁性前驱体又是自活化剂,因此不需要额外的化学活化剂。合成的磁性多孔碳复合吸附剂的大表面积(505 m/g)及其对四环素的高吸附容量(687.6 mg/g)是处理受污染废水的合适特性。合成过程简单,使用废料制造的吸附剂即使在五个吸附和解吸循环后仍能保持其性能,确保了成本效益和可持续性,以支持循环经济的理念。