School of Quality and Technical Supervision, Hebei University, Baoding 071002, China; National&Local Joint Engineering Research Center of Metrology Instrument and System, Hebei University, Baoding 071002, China; Hebei Key Laboratory of Energy Metering and Safety Testing Technology, Hebei University, Baoding 071002, China.
College of Traditional Chinese Medicine, Hebei University, Baoding 071002, China.
Int J Biol Macromol. 2024 Jul;273(Pt 1):133051. doi: 10.1016/j.ijbiomac.2024.133051. Epub 2024 Jun 9.
Pollen is a promising material for water treatment owing to its renewable nature, abundant sources, and vast reserves. The natural polymer sporopollenin, found within pollen exine, possesses a distinctive layered porous structure, mechanical strength, and stable chemical properties, which can be utilized to prepare sporopollenin exine capsules (SECs). Leveraging these attributes, pollen or SECs can be used to develop water pollution remediation materials. In this review, the structure of pollen is first introduced, followed by the categorization of various methods for extracting SECs. Then, the functional expansion of pollen adsorbents, with an emphasis on their recyclability, reusability, and visual sensing capabilities, as opposed to mere functional group modification, is discussed. Furthermore, the progress made in utilizing pollen as a biological template for synthesizing catalysts is summarized. Intriguingly, pollen can also be engineered into self-propelled micromotors, enhancing its potential application in adsorption and catalysis. Finally, the challenges associated with the application of pollen in water pollution treatment are discussed. These challenges include the selection of environmentally friendly, non-toxic reagents in synthesizing pollen water remediation products and the large-scale application after synthesis. Moreover, the multifunctional synthesis and application of different water remediation products are prospected.
花粉由于其可再生性、丰富的来源和巨大的储量,是一种很有前途的水处理材料。花粉外壁内的天然聚合物孢粉素具有独特的层状多孔结构、机械强度和稳定的化学性质,可用于制备孢粉素外壁胶囊(SECs)。利用这些特性,花粉或 SEC 可用于开发水污染修复材料。在本综述中,首先介绍了花粉的结构,然后对各种提取 SEC 的方法进行了分类。接着,讨论了花粉吸附剂的功能扩展,重点是其可回收性、可重复使用性和可视化传感能力,而不仅仅是功能基团修饰。此外,还总结了利用花粉作为合成催化剂的生物模板的进展。有趣的是,花粉还可以被设计成自推进的微马达,增强了其在吸附和催化方面的潜在应用。最后,讨论了花粉在水污染处理中的应用所面临的挑战。这些挑战包括在合成花粉水修复产品时选择环保、无毒的试剂,以及合成后的大规模应用。此外,还对不同水修复产品的多功能合成和应用进行了展望。