以农工废弃物为共底物的碳氢化合物生物降解研究

Abdullah M. El Mahdi, H. A. Aziz
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引用次数: 6

摘要

农业工业废物的多样性使它们成为一组有吸引力的有机废物,可广泛用于各种工业和生物技术应用。结合大规模生产技术和生物技术工程,在当前这一领域的研究方法的新刺激发展,农业工业废物将是未来经济上成功的材料。公众对碳氢化合物污染问题认识的提高,强烈地影响了加速清洁有害污染物的技术的发展。生物降解技术的成本和低生物利用度,包括碳氢化合物的传质限制,特别是那些顽固性成分,从各种介质到水相进行有效的酶基微生物生物降解仍然是主要的挑战。用农业工业废物可持续地替代传统微生物培养基作为生物表面活性剂生产的底物具有巨大的潜力;从而减少了许多处理工业废物的管理问题。这些有机富氮营养物(生物刺激)是加强生物修复过程的有效手段,在环境中作为废物广泛存在;因此,它们可以作为“自然废物到环境的清理”。然而,当前章节的重点是结合使用生物表面活性剂和酶产生的可再生资源,如农业工业废物,通过辅助生物刺激和生物增强,碳氢化合物的生物降解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrocarbon Biodegradation Using Agro-Industrial Wastes as Co-Substrates
The diversity of agro industrial wastes makes them an attractive group of organic wastes for potential use in a wide variety of industrial and biotechnological applications. The new stimulating development in this current area of research approaches in combination with the technologies of large-scale production and biotechnology engineering, agro industrial wastes will be economically successful materials of the future. Increased public awareness of issues related to hydrocarbon pollution strongly influences the development of technologies that speed up cleaning hazardous contaminants. The cost of biodegradation technology and the low bioavailability including mass transfer limitations of hydrocarbons, especially those recalcitrant components, from various mediums into the aqueous phase for effective enzyme-based microbial biodegradation still constitute major challenges. Sustainable replacement of traditional microbiological media with agroindustrial wastes as substrates for biosurfactant production holds great potential; thereby decrease numerous management problems of handling industrial waste. These organic nitrogen-rich nutrients (biostimulation) are an effective means to enhance the bioremediation process and widely available as wastes in the environment; hence, they can serve as “natural waste-to-environmental clean-up.” However, current chapter have focused on the combined use of biosurfactants and enzymes produced from renewable resources such as agro-industrial waste, through assisted biostimulation and bioaugmentation, for hydrocarbon biodegradation.
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