Hurtado Liliana B, Jiménez-Rosado Mercedes, Nejati Maryam, Rasheed Faiza, Prade Thomas, Jiménez-Quero Amparo, Sabino Marcos A, Capezza Antonio J
Department of Chemistry, B5IDA research group, Simon Bolivar University, Caracas 89000, Venezuela.
Fibre and Polymer Technology Department, KTH Royal Institute of Technology, Teknikringen 56, Stockholm SE-10044, Sweden.
Biomacromolecules. 2024 Dec 9;25(12):7642-7659. doi: 10.1021/acs.biomac.4c00883. Epub 2024 Oct 25.
Proteins derived from agroindustrial coproducts and a natural cross-linking agent (genipap oil containing genipin) were used to develop porous materials by reactive extrusion for replacing fossil-based absorbents. Incorporating genipap oil allowed the production of lightweight structures with high saline uptake (above 1000%) and competing retention capacity despite their porous nature. The mechanical response of the genipap-cross-linked materials was superior to that of the noncross-linked ones and comparable to those cross-linked using commercial genipin. The extruded products were hemocompatible and soil-biodegradable in less than 6 weeks. The compounds generated by the degradation process were not found to be toxic to the soil, showing a high bioassimilation capacity by promoting grass growth. The results demonstrate the potential of biopolymers and new green cross-linkers to produce fully renewable-based superabsorbents in hygiene products with low ecotoxicity. The study further promotes the production of these absorbents using low-cost proteins and continuous processing such as reactive extrusion.
源自农用工业副产品的蛋白质和一种天然交联剂(含京尼平的番樱桃油)被用于通过反应挤出法开发多孔材料,以替代化石基吸收剂。加入番樱桃油能够生产出轻质结构,尽管其具有多孔性质,但仍具有高吸盐率(超过1000%)和相当的保留能力。京尼平交联材料的力学响应优于未交联材料,且与使用商业京尼平交联的材料相当。挤出产品具有血液相容性,并且在不到6周的时间内可在土壤中生物降解。降解过程产生的化合物对土壤无毒,通过促进草的生长显示出高生物同化能力。结果证明了生物聚合物和新型绿色交联剂在生产具有低生态毒性的卫生用品中完全基于可再生的高吸水性材料方面的潜力。该研究进一步推动了使用低成本蛋白质和连续加工(如反应挤出)来生产这些吸收剂。