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Performance and characteristic of a haloalkaliphilic bio-desulfurizing system using Thioalkalivibrio verustus D301 for efficient removal of H2S

机译:使用硫代曲氏菌疣D301进行HALoalkaliphilic生物脱硫系统的性能和特征,用于高效除去H2S

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Haloalkaliphilic biological desulfurization is attracting people's attention due to its remarkable economy and good performance. In this study, a bio-desulfurizing system was developed based on a sulfur-oxidizing bacterium Thioalkalivibrio versutus D301 to treat H2S under haloalkaliphilic conditions. Results showed the optimum performance of the system was obtained under sulfide load of 3.27 g/L/d and oxidization-reduction potential (ORP) value of -395 mV. The selection of elemental sulfur and sulfate reached 86.19 % +/- 3.02 % and 8.6 +/- 0.28 % under these conditions. Then, the obvious linear relationships between sulfide load and ORP as well as aeration rate were revealed. The gradient variations of ORP and sulfurous compounds concentration with bioreactor depth were revealed, which proved the existence of spatial and temporal heterogeneity in the bioreactor. The morphology difference of sulfur particles from bioreactor and shake flask implied the key role of operating conditions in shaping particle morphology, and it was found that 56.3 % of total S degrees particles were harvested within 2 h by gravity settling. This study will provide a valuable reference for the design of bio-desulfurizing equipment and the optimization of operational conditions in the industrial process in the future.
机译:HaloAlkaliphilic生物脱硫是由于其显着的经济性和良好的性能引起了人们的注意。在该研究中,基于硫氧化细菌的硫化杀菌性硫纤维血糖患者D301来开发生物脱硫系统,以在卤偕氏硅条件下处理H2。结果表明,在硫化物载荷下获得的系统最佳性能为3.27g / L / D和氧化还原电位(ORP)值-395 mV。在这些条件下,组织硫和硫酸盐的选择达到86.19%+/- 3.02%和8.6 +/- 0.28%。然后,揭示了硫化物荷载和ORP之间的明显线性关系以及通气率。揭示了具有生物反应器深度的ORP和硫化合物浓度的梯度变化,这证明了生物反应器中的空间和时间异质性的存在。来自生物反应器和摇瓶的硫颗粒的形态学差异暗示操作条件在成型颗粒形态中的关键作用,发现通过重力沉降在2小时内收获56.3%的总粒子。本研究将对生物脱硫设备设计和未来工业过程中的运营状况的优化提供有价值的参考。

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