Centre for Applied Research, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Thandalam, Chennai - 602105, Tamil Nadu, India.
Department of Biotechnology, M. S. Ramaiah Institute of Technology, Bangalore 560054, Karnataka, India.
Int J Biol Macromol. 2024 Oct;277(Pt 2):133990. doi: 10.1016/j.ijbiomac.2024.133990. Epub 2024 Aug 3.
This study investigated the effectiveness of a pectin-nano zero-valent iron-based nanocomposite in adsorbing heavy metals in bimetallic form (chromium‑lead mixture), along with assessing its antibacterial properties. The nanocomposite was synthesized using a straightforward dispersion method, employing eco-friendly components like biocompatible pectin sourced from banana peels and nano-scale zero-valent iron. Analytical characterization confirmed the formation of stable, nano-crystalline particles with active interactions between the functional groups of pectin and nano iron. Batch adsorption experiments optimized various parameters such as pH, adsorbent dosage, contact time, metal ion concentration, and temperature to enhance bimetal removal from water. The optimal conditions were determined as pH 8.0, a temperature of 40 °C, 1.0 g/L adsorbent dosage, 75 mg/l initial bimetal concentration, and a contact time of 30 min. Further assessments revealed that the nanocomposite did not induce phytotoxic or ecotoxic effects, confirming its non-toxicity and environmental safety. Biocompatibility studies conducted using zebrafish models showed no adverse effects on hatching, survival, or heart rate. These findings underscore the potential of the nanocomposite as a sustainable and efficient solution for heavy metal remediation in water treatment process.
本研究旨在探讨一种果胶-纳米零价铁基纳米复合材料在吸附重金属(铬-铅混合物)方面的有效性,并评估其抗菌性能。该纳米复合材料采用简便的分散法合成,使用了环保的成分,如来源于香蕉皮的生物相容性果胶和纳米级零价铁。分析特性确认了稳定的纳米晶颗粒的形成,果胶和纳米铁之间的功能基团之间存在着积极的相互作用。批处理吸附实验优化了各种参数,如 pH 值、吸附剂用量、接触时间、金属离子浓度和温度,以增强水中双金属的去除效果。最佳条件确定为 pH 值 8.0、温度 40°C、吸附剂用量 1.0g/L、初始双金属浓度 75mg/L 和接触时间 30 分钟。进一步的评估表明,该纳米复合材料不会引起植物毒性或生态毒性效应,证实了其非毒性和环境安全性。使用斑马鱼模型进行的生物相容性研究表明,纳米复合材料对孵化、生存或心率没有不良影响。这些发现强调了纳米复合材料作为水处理过程中重金属修复的可持续和高效解决方案的潜力。