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Environmental Comparison of Recycling Phosphorus through Different Urine-Source Treatments

机译:不同尿源处理方式回收磷的环境比较

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Phosphorus is a non-metallic element that is usually found in oxidized mineral form in nature. It is a key component of DNA, RNA, and of the phospholipids that compose all cell membranes. It is essential for plant growth and is a limiting nutrient for crop cultivation. To meet demands for agriculture, phosphorous rich minerals are mined and processed into phosphoric acid for use as fertilizer. Recent studies suggest that, at current consumption rates, the availability of traditionally mined phosphorous will begin to decline by 2030. Given increasing global population and the concomitant need for increased food production, a shortage of this critical fertilizer will have dire consequences. Alternative phosphorous production techniques exist; among these are a number of techniques for reclaiming phosphorous from urine. If these techniques are to be more widely used to ameliorate a potential phosphorous shortage, their economic and environmental impacts should be understood. To date, little work has been done to illuminate economic and environmental implications of available urine based phosphorous recovery systems. This paper will present a framework detailing a methodology by which these economic and environmental characteristics can be captured and compared. Preliminary results comparing the impacts of featured recovery systems are presented.
机译:磷是一种非金属元素,通常在自然界中以氧化矿物的形式存在。它是构成所有细胞膜的DNA,RNA和磷脂的关键成分。它对植物生长必不可少,并且是作物耕种的限制养分。为了满足农业需求,开采了富含磷的矿物并将其加工成磷酸用作肥料。最近的研究表明,以当前的消费量,到2030年,传统开采的磷的供应量将开始下降。鉴于全球人口的增加以及随之而来的粮食生产需求,这种关键肥料的短缺将带来可怕的后果。存在替代的磷生产技术。在这些技术中,有许多从尿液中回收磷的技术。如果要更广泛地使用这些技术来缓解潜在的磷短缺,则应了解其经济和环境影响。迄今为止,很少有工作来阐明可用的基于尿液的磷回收系统对经济和环境的影响。本文将提供一个框架,详细介绍可用来捕获和比较这些经济和环境特征的方法。初步结果比较了功能恢复系统的影响。

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