Al-Shemy Mona T, Gamoń Filip, Al-Sayed Aly, Hellal Mohamed S, Ziembińska-Buczyńska Aleksandra, Hassan Gamal K
Cellulose and Paper Department, National Research Centre, 33El-Bohouth St. (Former El-Tahrir St.), Dokki, P.O. 12622, Giza, Egypt.
Department of Sanitary Engineering, Faculty of Civil and Environmental Engineering, Gdansk University of Technology, 11/12 Narutowicza St, Gdansk, 80-233, Poland.
J Environ Manage. 2024 Aug;365:121715. doi: 10.1016/j.jenvman.2024.121715. Epub 2024 Jul 4.
Treating hazardous landfill leachate poses significant environmental challenges due to its complex nature. In this study, we propose a novel approach for enhancing the anaerobic digestion of landfill leachate using silver nanoparticles (Ag NPs) conjugated with eco-friendly green silica nanoparticles (Si NPs). The synthesized Si NPs and Ag@Si NPs were characterized using various analytical techniques, including transmission electron microscopy, X-ray diffraction, and Fourier-transform infrared spectroscopy. The anaerobic digestion performance of Si NPs and Ag@Si NPs was tested by treating landfill leachate samples with 50 mg/L of each NP. The results demonstrated an enhancement in the biogas production rate compared to the control phase without the nanocomposite, as the biogas production increased by 14% and 37% using Si NPs and Ag@Si NPs. Ag@Si NPs effectively promoted the degradation of organic pollutants in the leachate, regarding chemical oxygen demand (COD) and volatile solids (VS) by 58% and 65%. Furthermore, microbial analysis revealed that Ag@Si NPs enhanced the activity of microbial species responsible for the methanogenic process. Overall, incorporating AgNPs conjugated with eco-friendly green Si NPs represents a sustainable and efficient approach for enhancing the anaerobic digestion of landfill leachate.
由于危险垃圾渗滤液性质复杂,对其进行处理面临重大环境挑战。在本研究中,我们提出了一种新方法,即使用与环保型绿色二氧化硅纳米颗粒(Si NPs)共轭的银纳米颗粒(Ag NPs)来增强垃圾渗滤液的厌氧消化。采用包括透射电子显微镜、X射线衍射和傅里叶变换红外光谱等多种分析技术对合成的Si NPs和Ag@Si NPs进行了表征。通过用50 mg/L的每种纳米颗粒处理垃圾渗滤液样品来测试Si NPs和Ag@Si NPs的厌氧消化性能。结果表明,与不使用纳米复合材料的对照阶段相比,沼气产率有所提高,使用Si NPs和Ag@Si NPs时沼气产量分别提高了14%和37%。Ag@Si NPs有效促进了渗滤液中有机污染物的降解,化学需氧量(COD)和挥发性固体(VS)分别降低了58%和65%。此外,微生物分析表明,Ag@Si NPs增强了负责产甲烷过程的微生物物种的活性。总体而言,结合与环保型绿色Si NPs共轭的Ag NPs是一种增强垃圾渗滤液厌氧消化的可持续且高效的方法。