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Bio-hydrogen production from waste materials: A review

机译:废料生产生物氢的研究进展

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When hydrogen burns in air, it produces nothing but water vapour. It is therefore the cleanest possible, totally non-polluting fuel. This fact has led some people to propose an energy economy based entirely on hydrogen, in which hydrogen would replace gasoline, oil, natural gas, coal, and nuclear power. Hydrogen is a clean energy source. Therefore, in recent years, demand on hydrogen production has increased considerably. Electrolysis of water, steam reforming of hydrocarbons and auto-thermal processes are well-known methods for hydrogen gas production, but not cost-effective due to high energy requirements. As compare to chemical methods, biological production of hydrogen gas has significant advantages such as bio-photolysis of water by algae, dark and photo-fermentation of organic materials, usually carbohydrates by bacteria. New approach for bio-hydrogen production is dark and photo-fermentation process but with some major problems like dark and photo-fermentative hydrogen production is the raw material cost. By using suitable bio-process technologies hydrogen can be produced through carbohydrate rich, nitrogen deficient solid wastes such as cellulose and starch containing agricultural and food industry wastes and some food industry wastewaters such as cheese whey, olive mill and baker's yeast industry wastewaters. Utilization of aforementioned wastes for hydrogen production provides inexpensive energy generation with simultaneous waste treatment. This review article summarizes bio-hydrogen production from some waste materials with recent developments and relative advantages.
机译:氢气在空气中燃烧时,只会产生水蒸气。因此,它是最清洁的,完全无污染的燃料。这一事实导致一些人提出了一种完全基于氢的能源经济,用氢代替汽油,石油,天然气,煤炭和核能。氢是一种清洁能源。因此,近年来,对氢气生产的需求大大增加。水的电解,碳氢化合物的蒸汽重整和自热过程是生产氢气的众所周知的方法,但由于能源需求高,因此成本效益不高。与化学方法相比,氢气的生物生产具有显着的优势,例如藻类对水的生物光解,黑暗和有机物质(通常是细菌的碳水化合物)的光致发酵。用于生产生物氢的新方法是暗发酵和光发酵过程,但是存在一些主要问题,例如暗发酵和光发酵制氢是原材料成本。通过使用合适的生物工艺技术,可以通过富含碳水化合物,氮缺乏的固体废物(例如含有纤维素和淀粉的农业和食品工业废物)和一些食品工业废水(如干酪乳清,橄榄磨和面包酵母行业废水)生产氢气。将上述废物用于制氢可提供廉价的能量产生,同时进行废物处理。这篇综述文章总结了由一些废料生产生物氢的最新进展和相对优势。

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