首页> 外文期刊>European Journal of Soil Biology >Preparation of calcium-alginate microcapsuled microbial fertilizer coating Klebsiella oxytoca Rs-5 and its performance under salinity stress.
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Preparation of calcium-alginate microcapsuled microbial fertilizer coating Klebsiella oxytoca Rs-5 and its performance under salinity stress.

机译:海藻酸钙微囊化微生物肥料包衣产酸克雷伯菌 Rs-5的制备及其在盐胁迫下的性能。

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Preparation of microcapsules for microbial fertilizer containing Klebsiella oxytoca Rs-5 was performed by the method of pore-coagulation bath in order to enhance the bacterial survival rate under salinity stress. In this study, sodium alginate (SA) and calcium chloride (CC) were used as wall materials for microencapsulation. The results showed that the microcapsules activity was best when the concentrations of SA and CC were 1.5-2.0% and 2.0%, respectively, and the volumetric ratio of SA and Rs-5 culture was 3:1. The particles sizes of microcapsules were concentrated in the range of 0.85-1.10 mm, measured by laser particle size analyzer. While the expansion coefficients of diameter and weight of these microcapsules were 1.35 and 1.80, respectively. The content of Rs-5 in microcapsules reached 1014 cfu/g, the embed rate was almost 100%. The bacteria released from microcapsules reached upto 1010 cfu/g when immersed in physiological saline for three weeks and kinetic release of viable cells was studied and simulated. It was found that some depressions and many small cracks on microcapsules surface observed by scanning electron microscopy contributed to bacteria release from microcapsules. The microcapsuled microbial fertilizers could promote the cotton growth better than the free cells under the same salty conditions in pot experiments.
机译:为了提高盐分胁迫下细菌的存活率,采用孔凝浴的方法制备了含产酸克雷伯菌Rs-5的微生物肥料微胶囊。在这项研究中,海藻酸钠(SA)和氯化钙(CC)被用作微囊化的壁材料。结果表明,当SA和CC的浓度分别为1.5-2.0%和2.0%时,微囊活性最佳,SA和Rs-5培养物的体积比为3:1。通过激光粒度分析仪测量,将微胶囊的粒度浓缩在0.85-1.10mm的范围内。这些微胶囊的直径和重量的膨胀系数分别为1.35和1.80。微胶囊中Rs-5的含量达到10 14 cfu / g,包埋率接近100%。浸入生理盐水中3周后,微胶囊释放的细菌达到10 10 cfu / g,并研究和模拟了活细胞的动力学释放。发现通过扫描电子显微镜观察到的微胶囊表面上的一些凹陷和许多小裂纹有助于细菌从微胶囊中释放。在盆栽试验中,在相同的盐分条件下,微囊化微生物肥料比游离细胞能更好地促进棉花的生长。

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