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首页> 外文期刊>AMB Express >Biohydrogen production by Chlorella vulgaris and Scenedesmus obliquus immobilized cultivated in artificial wastewater under different light quality
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Biohydrogen production by Chlorella vulgaris and Scenedesmus obliquus immobilized cultivated in artificial wastewater under different light quality

机译:由小球藻的生物氢产物和克森斯姆斯倾斜度固定在不同光质的人造废水中培养

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摘要

The algal biotechnology together with the wastewater treatment can contribute to the production of renewable energies such as bioethanol, biodiesel and biohydrogen and solve many of the challenges currently facing the shortage of fossil fuels and environmental impacts. Hydrogen as the cleanest source of energy is a promising alternative to conventional fossil fuels. Among different technologies for hydrogen production, photosynthetic microorganism, such as microalgae, has a great potential to produce hydrogen, by using only water and sunlight. One of the great opportunities is that microalgae can be cultivated in urban wastewater, which contains sources of carbon and nutrients, helping to reduce the cost of biomass and energy production. Microalgae C. vulgaris and S. obliquus immobilized grown in urban wastewater was proposed for the production of biohydrogen by sulfur deprivation and two light quality prior to anaerobic condition at pH 7.5 and 30?°C and 140 μE/m2/s?of light intensity. The results indicate that blue light induces greater algal growth than under Purple light, while the maximum hydrogen production was for cultures under purple light of 128?mL H2/L?(productivity 204.8?mL H2/L/day) and 60.4?mL H2/L?(productivity 39.18?mL H2/L/day) for S. obliquus and C. vulgaris, respectively. An additional advantage is the high removal of organic carbon by S. obliquus cultures under purple incident light compared to C. vulgaris, being a double benefit; energy production and wastewater treatment.
机译:藻类生物技术与废水处理一起可以有助于生产可再生能量,如生物乙醇,生物柴油和生物氢,并解决目前面临化石燃料短缺和环境影响的许多挑战。氢作为最清洁的能量来源是传统化石燃料的有希望的替代品。在氢生产的不同技术中,通过仅使用水和阳光,光合微生物如微藻,潜力有很大的潜力。其中一个很好的机会是微藻可以在城市废水中栽培,其中包含碳和营养素来源,有助于降低生物质和能源生产的成本。在PH 7.5和30Ω·℃和30℃和140μE/ m2 / m2中,提出了在城市废水中通过硫剥夺和厌氧条件之前产生生物氢化的vulgaris和s。倾斜。 。结果表明,蓝光诱导比紫光下的藻类生长更大,而最大氢气产生是在紫色光下的培养物128?ml H 2 / L的培养物下培养物(生产率204.8?ml H 2 / L /天)和60.4μl / L.(Productivity 39.18?ml H 2 / L /天)分别用于S.斜肌和C.Vulgaris。另外的优点是与紫色入射光的倾斜培养物在紫色入射光下的高度除去有机碳,与C.Vulgaris相比是双重效益;能源生产和废水处理。

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