Álvarez-Viñas Milena, González-Ballesteros Noelia, Torres M Dolores, López-Hortas Lucía, Vanini Candida, Domingo Guido, Rodríguez-Argüelles M Carmen, Domínguez Herminia
CINBIO, Facultade de Ciencias (Campus Ourense), Universidade de Vigo, Edificio Politécnico, As Lagoas, 32004 Ourense, Spain.
CINBIO, Universidade de Vigo, Departamento de Química Inorgánica, 36310 Vigo, Spain.
Int J Biol Macromol. 2022 May 1;206:553-566. doi: 10.1016/j.ijbiomac.2022.02.145. Epub 2022 Mar 1.
The integral utilization of sustainable resources with versatile, efficient and cleaner processes is encouraged. Hydrothermal treatment with subcritical water is a chemical free, tunable and rapid technology providing enhanced yield compared to conventional extraction and was explored for the benign by design extraction and depolymerization of carrageenan from Chondrus crispus. Up to 90% of the seaweed was solubilized operating under nonisothermal regime during heating up to 200 °C and 75.5% crude carrageenan yield was attained at 140 °C. Crude carrageenan could not be precipitated by ethanol from the extracts produced at 180 °C and higher temperatures, but ultrafiltration (100 kDa) of the extract obtained at 160 °C provided comparable recovery yields and similar rheological features to those of the ethanol precipitated product. Operation at 140 °C was preferred based on the higher recovery yield of the biopolymer and the whole extract was suitable for the green synthesis of polycrystalline decahedral quasi-spherical gold nanoparticles with a mean size distribution of 8.4 nm and Z potential value of -40.2 mV. Alternatively, the crude carrageen fraction was used for the formulation of printable biopolymer based gels with suitable mechanical properties, including a relevant gel strength enhancement (about 10-fold) when compared with conventional procedures.
鼓励利用可持续资源,采用多功能、高效且更清洁的工艺。亚临界水热液处理是一种无化学试剂、可调节且快速的技术,与传统提取方法相比,能提高产量。本研究探讨了利用该技术从皱波角叉菜中进行设计型良性提取和降解角叉菜胶。在加热至200°C的非等温条件下,高达90%的海藻可溶解,在140°C时可获得75.5%的粗角叉菜胶产量。在180°C及更高温度下产生的提取物中,乙醇无法沉淀粗角叉菜胶,但对160°C获得的提取物进行超滤(100 kDa),其回收率和流变学特性与乙醇沉淀产物相当。基于生物聚合物的较高回收率,优选在140°C下操作,且整个提取物适用于绿色合成平均尺寸分布为8.4 nm、Z电位值为 -40.2 mV的多晶十面体准球形金纳米颗粒。此外,粗角叉菜胶部分用于制备具有合适机械性能的可印刷生物聚合物基凝胶,与传统方法相比,其凝胶强度有显著提高(约10倍)。