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Hydrothermal Liquefaction of Food Waste: Bio-crude oil Characterization, Mass and Energy Balance

机译:食物垃圾水热液化:生物原油表征,质量和能量平衡

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With the growing global population, problems like providing clean water, food, and energy increase dramatically as resources are depleted faster. The development of new energy sources has become particularly important from the perspective of energy security and environmental protection. According to the Food and Agriculture Organization of the United Nations, one-third of global food production is wasted in a world where 900 million people are suffering from hunger. High moisture food waste could beconverted into useful products (water, fertilizer, liquidfuels) in a process referred to as hydrothermal liquefaction (HTL). HTL is an alternative technology to conventional waste treatment due to great ability to process high moisture content biomass waste without prior dewatering which produces an energy-dense liquid fuel precursor, called 'bio-crude oil'. The purpose of our research is experimentally investigating the optimized HTL conditions (operating temperature, reaction time and etc.) to improvebio-crude oil yield and its quality from food waste. HTL product characterization includes higher heating value, elemental composition, and chemical constituents. Our preliminary results show that bio-crude oil generated from HTL process has an energy content of30-40 MJ/kg and HTL offood waste can be effective for organic waste management and bioenergy production.
机译:随着全球人口不断增长的,众所周知,随着资源急剧增加,众所周滞不前。从能源安全和环境保护的角度来看,新能源的发展变得尤为重要。根据联合国的粮食和农业组织的说法,全球粮食生产中的三分之一在一个900万人遭受饥饿的世界中浪费了。高水分食物废物可以在称为水热液化(HTL)的过程中被归因于有用的产品(水,肥料,液体壳)。 HTL是传统废物处理的替代技术,由于在没有先前脱水的情况下加工高水分含量生物质废物的能力,其产生能量密集的液体燃料前体,称为“生物原油”。我们的研究目的是通过实验研究优化的HTL条件(操作温度,反应时间等),以提高原油产量及其从食物垃圾的质量。 HTL产品表征包括更高的加热值,元素组合物和化学成分。我们的初步结果表明,从HTL工艺产生的生物原油具有30-40mJ / kg的能量含量,HTL OFFOOD废物可以有效地对有机废物管理和生物能源生产。

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