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Carbon emissions reduction by catalyzing H2 gas harvested from water hyacinth fermentation process using metallic salts

机译:使用金属盐催化从水葫芦发酵过程中收获的H 2气体催化碳排放量

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The aim of this study is decreasing the dependence on fossil fuels through introducing an alternative clean energy source in term of H2 gas.Biomass conversion to H2 carried out through the fermentation process.Valorizing H2 production from water hyacinth(WH)can be accomplished by using metallic salts as biocatalysts.Therefore,different salt concentrations ranged from 1.0 to 10.0 g/L were investigated.It was found that the high salinity could produce inhibition effect for hydrogen production.The highest hydrogen yield(HY)of 56.75 ± 0.4 was detected at 3.0 g/L salinity while the lowest HY of 26.12 ± 0.6 was detected at the highest salinity of 10.0 g/L.The nutrients changing and metabolites composition could also be significantly influenced by the salinity.The releasing of carbohydrate from WH could be easily used for hydrogen production,and protein could be accumulated and assimilated during the hydrogen fermentation.The high salinity was harmful to total metabolites(TVFAs)accumulation.
机译:该研究的目的是通过在H 2气体中引入替代清洁能源来降低对化石燃料的依赖性。通过发酵过程进行的替代清洁能源。通过发酵过程进行的H2。通过使用水葫芦(WH)的H2生产可以通过使用来实现金属盐作为生物催化剂。因此,研究了不同的盐浓度为1.0至10.0g / L.发现高盐度可能会产生氢气产生的抑制作用。检测到56.75±0.4的最高氢产率(HY)。 3.0g / l盐度,在10.0g / l的最高盐度下检测到26.12±0.6的最低盐。营养物质改变和代谢物组合物也可能受到盐度的显着影响。可以很容易地使用来自WH的碳水化合物的释放对于氢气产生,可以在氢发酵过程中积聚和同化蛋白质。高盐度对全代谢物(TVFA)积累有害。

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