Vera-Baquero Fernando L, Gañán Judith, Casado Natalia, Pérez-Quintanilla Damián, Morante-Zarcero Sonia, Sierra Isabel
Departamento de Tecnología Química y Ambiental, E.S.C.E.T, Universidad Rey Juan Carlos, C/Tulipán s/n, 28933 Móstoles, Spain.
Instituto de Investigación de Tecnologías para la Sostenibilidad, Universidad Rey Juan Carlos, 28933 Móstoles, Spain.
Foods. 2025 Mar 26;14(7):1156. doi: 10.3390/foods14071156.
Rice husk (RH), a globally abundant agri-food waste, presents a promising renewable silicon source for producing SBA-15 mesoporous silica-based materials. This study aimed to synthesize and bifunctionalize SBA-15 using RH as a silica precursor, incorporating sulfonic and octadecyl groups to create a mixed-mode sorbent, RH-SBA-15-SOH-C18, with reversed-phase and cation exchange properties. The material's structure and properties were characterized using advanced techniques, including X-ray diffraction, infrared spectroscopy, N adsorption-desorption isotherms, nuclear magnetic resonance, and electron microscopy. These analyses confirmed an ordered mesoporous structure with a high specific surface area of 238 m/g, pore volume of 0.45 cm/g, pore diameter of 32 Å, and uniform pore distribution, highlighting its exceptional textural qualities. This sorbent was effectively utilized in solid-phase extraction to purify 29 alkaloids from three families-tropane, pyrrolizidine, and opium-followed by an analysis using ultra-high performance liquid chromatography coupled to ion-trap tandem mass spectrometry. The developed analytical method was validated and applied to gluten-free bread samples, revealing tropane and opium alkaloids, some at concentrations exceeding regulatory limits. These findings demonstrate that RH-derived RH-SBA-15-SOH-C18 is a viable, efficient alternative to commercial sorbents for monitoring natural toxins in food, offering a sustainable solution for repurposing agri-food waste while addressing food safety challenges.
稻壳(RH)是一种全球储量丰富的农业食品废弃物,是生产基于SBA - 15介孔二氧化硅材料的一种很有前景的可再生硅源。本研究旨在以RH为硅源前驱体合成并进行双功能化SBA - 15,引入磺酸基和十八烷基以制备具有反相和阳离子交换性能的混合模式吸附剂RH - SBA - 15 - SOH - C18。使用包括X射线衍射、红外光谱、N吸附 - 解吸等温线、核磁共振和电子显微镜等先进技术对该材料的结构和性能进行了表征。这些分析证实了其具有有序的介孔结构,比表面积高达238 m²/g,孔容为0.45 cm³/g,孔径为32 Å,且孔径分布均匀,突出了其优异的结构性质。该吸附剂有效地用于固相萃取,从三个家族(托烷类、吡咯里西啶类和鸦片类)中纯化29种生物碱,随后使用超高效液相色谱 - 离子阱串联质谱进行分析。所开发的分析方法经过验证并应用于无麸质面包样品,检测出了托烷类和鸦片类生物碱,其中一些浓度超过了监管限值。这些发现表明,源自稻壳的RH - SBA - 15 - SOH - C18是用于监测食品中天然毒素的商业吸附剂的一种可行、高效的替代品,为农业食品废弃物的再利用提供了可持续的解决方案,同时应对食品安全挑战。