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首页> 外文期刊>Journal of Applied Phycology >Some properties of alginate gels derived from algal sodium alginate
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Some properties of alginate gels derived from algal sodium alginate

机译:藻酸盐藻酸钠衍生的藻酸盐凝胶的某些特性

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Alginic acid in soluble sodium alginate turns to insoluble gel after contact with divalent metal ions, such as calcium ions. The sodium alginate character has an effect on the alginate gel properties. In order to prepare a suitable calcium alginate gel for use in seawater, the effects of sodium alginate viscosity and M/G ratio (the ratio of D-mannuronate to L-guluronate) on the gel strength were investigated. The wet tensile strengths of gel fibers derived from high viscosity sodium alginate were higher than those from low viscosity sodium alginate. The tensile strength increased with diminishing sodium alginate M/G ratio. Among the gel fibers tested, the gel fiber obtained from a sodium alginate I-5G (1% aqueous solution viscosity = 520 mPa·s, M/G ratio = 0.6) had the highest wet tensile strength. After 13 days treatment in seawater, the wet tensile strength of the gel fiber retained 36% of the original untreated gel strength. For sodium alginates with similar viscosities, the seawater tolerance of low M/G ratio alginate was greater than that of the high M/G ratio one. This study enables us to determine a suitable calcium alginate gel for use in seawater.
机译:与二价金属离子(例如钙离子)接触后,可溶性海藻酸钠中的海藻酸变成不溶性凝胶。海藻酸钠的特性对海藻酸钠的凝胶性质有影响。为了制备适合用于海水中的海藻酸钙凝胶,研究了海藻酸钠粘度和M / G比(D-甘露糖醛酸酯与L-古洛糖酸酯的比例)对凝胶强度的影响。来自高粘度海藻酸钠的凝胶纤维的湿拉伸强度高于来自低粘度海藻酸钠的凝胶纤维的湿拉伸强度。随着海藻酸钠M / G比的降低,抗拉强度增加。在所测试的凝胶纤维中,由藻酸钠I-5G(1%水溶液粘度= 520mPa·s,M / G比= 0.6)获得的凝胶纤维具有最高的湿拉伸强度。在海水中处理13天后,凝胶纤维的湿拉伸强度保持了原始未处理凝胶强度的36%。对于具有相似粘度的藻酸钠,低M / G比藻酸盐的海水耐受性大于高M / G比藻酸盐的海水耐受性。这项研究使我们能够确定适用于海水的海藻酸钙凝胶。

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