首页> 外文期刊>Journal of Applied Phycology >Alginate from the macroalgae Sargassum sinicola as a novel source for microbial immobilization material in wastewater treatment and plant growth promotion.
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Alginate from the macroalgae Sargassum sinicola as a novel source for microbial immobilization material in wastewater treatment and plant growth promotion.

机译:大型藻类Sargassum sinicola的藻酸盐是微生物固定材料在废水处理和植物生长促进中的新型来源。

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Alginate extracted from the macroalgae Sargassum sinicola was used as the raw material for co-immobilization of the microalgae Chlorella sorokiniana and growth-promoting bacterium Azospirillum brasilense for wastewater treatment and as an inoculant carrier of A. brasilense for plant growth promotion. The composition, structure, viscosity, color, and phenolic compound content of the alginate were analyzed and compared with commercially available alginate produced from the macroalgae Macrocystis pyrifera. From 1H NMR analysis of alginate, S. sinicola was found to have more guluronic acid (FG=0.64) than it had mannuronic acid (FM=0.38) and had a viscosity of 13.5 m Pa s compared to 50 m Pa s for M. pyrifera. The S. sinicola alginate had dark brown color, reducing light penetration, with more phenolic compounds than M. pyrifera alginate. Nonetheless, growth of C. sorokiniana and A. brasilense in S. sinicola alginate was not significantly different than the growth in M. pyrifera alginate beads. Nutrient removal from wastewater by the co-immobilized microorganisms was similar for both types of alginate beads, and so was the growth enhancement of tomato plants inoculated with microbeads containing A. brasilense. This study shows the potential use of S. sinicola alginate as a raw material for cell immobilization for wastewater treatment and plant growth promotion.
机译:从大型藻类Sargassum sinicola提取的藻酸盐用作微藻小球藻和生长促进细菌巴西细螺旋藻共固定化的原料,用于废水处理,并用作巴西拟南芥的孕育载体,用于促进植物生长。分析藻酸盐的组成,结构,粘度,颜色和酚类化合物含量,并将其与从大型藻类Macrocystis pyrifera生产的市售藻酸盐进行比较。从藻酸盐的1H NMR分析中发现,链球菌S.sinicola的古洛糖醛酸(FG = 0.64)比甘露糖醛酸(FM = 0.38)多,并且粘度为13.5 m Pa s,而M的粘度为50 m Pa s。萤火虫。 S. sinicola海藻酸盐具有深褐色,减少了光的穿透,酚醛化合物比海藻毕赤酵母更大。但是,在S.sinicola藻酸盐中的C. sorokiniana和A. brasilense的生长与在藻毕赤酵母中的藻酸盐珠的生长没有显着差异。两种藻酸盐珠粒通过共同固定的微生物从废水中去除营养物的情况相似,接种含巴西盲肠杆菌的微珠的番茄植株的生长促进作用也相似。这项研究表明,海藻链球菌可作为固定化细胞的原料用于废水处理和促进植物生长。

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