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首页> 外文期刊>Journal of Applied Polymer Science >Encapsulation ofRhodopseudomonas palustrisKTSSR54using beads from alginate/starch blends
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Encapsulation ofRhodopseudomonas palustrisKTSSR54using beads from alginate/starch blends

机译:从海藻酸盐/淀粉混合物中封装HalhodopseudomonasPalustisktssr54珠子

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Alginate beads are a promising carrier for biofertilizer delivery, but still possess drawbacks of low mechanical strength and bead shrinkage that result in poor appearance and inadequate cell protection. Blending alginate with starch was proposed as a solution to these problems, and here alginate hydrogels were prepared using a 2% (w/v) alginate dispersion blended with varying contents of gelatinized starch (0-5% w/v). The interaction produced a viscosity synergism that increased the complexity of the matrix network in the alginate/starch blends, producing a more suitable matrix for cell entrapment. Hydrogen bonding between alginate and starch influenced the viscosity of the various solutions in a way that was consistent with the FTIR spectra. The starch content also helped beads retain their spherical shape after drying. The starch supported the entrapment of bacterial cells (plant growth-promoting bacteriumRhodopseudomonas palustrisKTSSR54 as biofertilizer) in the matrix, which reduced cell loss. The highest entrapment efficiency of 70.83% was obtained at 4% (w/v) starch, while the entrapment efficiency of control beads was 50.56%. Overall, the appropriate content of starch mixed with alginate is conducive to changes in the morphology of microcapsules and increases in the amount of biological encapsulation.
机译:海藻酸盐微珠是一种很有前途的生物肥料载体,但仍存在机械强度低和微珠收缩的缺点,导致外观差和细胞保护不足。将海藻酸钠与淀粉混合是解决这些问题的一种方法,本文采用2%(w/v)海藻酸钠分散液与不同含量的糊化淀粉(0-5%w/v)混合制备海藻酸钠水凝胶。这种相互作用产生了粘度协同效应,增加了海藻酸钠/淀粉混合物中基质网络的复杂性,产生了更适合细胞包埋的基质。海藻酸盐和淀粉之间的氢键以与FTIR光谱一致的方式影响各种溶液的粘度。淀粉含量也有助于干燥后珠子保持球形。淀粉支持将细菌细胞(促进植物生长的芽孢杆菌KTSSR54作为生物肥料)包埋在基质中,从而减少细胞损失。淀粉含量为4%(w/v)时包封率最高,为70.83%,而对照微球的包封率为50.56%。总的来说,适当的淀粉与海藻酸钠混合含量有利于微胶囊形态的改变和生物包封量的增加。

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