Dáger-López David, Chenché Óscar, Ricaurte-Párraga Rayner, Núñez-Rodríguez Pablo, Bajaña Joaquin Morán, Fiallos-Cárdenas Manuel
Facultad de Ciencias e Ingeniería, Universidad Estatal de Milagro, Milagro 091050, Ecuador.
Facultad de Ciencias Agrarias, Campus Milagro, Universidad Agraria del Ecuador, Milagro 091050, Ecuador.
Polymers (Basel). 2024 Apr 20;16(8):1157. doi: 10.3390/polym16081157.
Interest in bacterial nanocellulose (BNC) has grown due to its purity, mechanical properties, and biological compatibility. To address the need for alternative carbon sources in the industrial production of BNC, this study focuses on banana leaves, discarded during harvesting, as a valuable source. Banana midrib juice, rich in nutrients and reducing sugars, is identified as a potential carbon source. An optimal culture medium was designed using a simplex-centroid mixing design and evaluated in a 10 L bioreactor. Techniques such as Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), X-ray diffraction (XRD), and thermogravimetric analysis (TGA) were used to characterize the structural, thermal, and morphological properties of BNC. Banana midrib juice exhibited specific properties, such as pH (5.64), reducing sugars (15.97 g/L), Trolox (45.07 µM), °Brix (4.00), and antioxidant activity (71% DPPH). The model achieved a 99.97% R-adjusted yield of 6.82 g BNC/L. Physicochemical analyses revealed distinctive attributes associated with BNC. This approach optimizes BNC production and emphasizes the banana midrib as a circular solution for BNC production, promoting sustainability in banana farming and contributing to the sustainable development goals.
由于细菌纳米纤维素(BNC)的纯度、机械性能和生物相容性,人们对它的兴趣与日俱增。为满足BNC工业生产中对替代碳源的需求,本研究聚焦于香蕉收获过程中丢弃的香蕉叶,将其视为一种宝贵资源。富含营养物质和还原糖的香蕉中脉汁被确定为一种潜在的碳源。采用单纯形重心混合设计方法设计了一种优化培养基,并在10升生物反应器中进行了评估。利用傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、X射线衍射(XRD)和热重分析(TGA)等技术对BNC的结构、热性能和形态特性进行了表征。香蕉中脉汁具有特定的性质,如pH值(5.64)、还原糖(15.97克/升)、Trolox(45.07微摩尔)、白利糖度(4.00)和抗氧化活性(71% DPPH)。该模型实现了6.82克BNC/升的99.97%调整后R产量。物理化学分析揭示了与BNC相关的独特属性。这种方法优化了BNC的生产,并强调香蕉中脉是BNC生产的循环解决方案,促进了香蕉种植的可持续性,并有助于实现可持续发展目标。