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Storage stability of biocrude oils from fast pyrolysis of poultry litter

机译:快速分解家禽垃圾中生物原油的储存稳定性

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The unstable nature of biocrude oils produced from conventional pyrolysis of biomass is one of the properties that limits its application. In the disposal of poultry litter via pyrolysis technology, the biocrude oil produced as a value-added product can be used for on farm applications. In this study, we investigated the influence of bedding material (wood shavings) on the storage stability of biocrude oils produced from the fast pyrolysis of poultry litter. The biocrude oils produced from manure, wood (pine and oak), and mixtures of manure and wood in proportions (75:25 50:50, and 25:75 w/w%) were stored under ambient conditions in sealed glass vials for a period of 6 months and their stability were monitored by measuring the changes in viscosity over time. The manure oil had the lowest rate of viscosity change and thus was relatively the most stable and the oils from the 50:50 w/w% litter mixtures were the least stable. The rate of viscosity change of the manure biocrude oil was 1.33 cP/day and that of the 50/50 litter mixture was 7.6 cP/day for pine and 4.17 cP/day for oak. The spectrometric analyses of the biocrude oils showed that the presence of highly reactive oxygenated functionalities in the oil were responsible for the instability characteristic of the litter biocrude oils. The poor stability of the biocrude oil from the 50:50 w/w% litter mixtures was attributed to reactions between nitrogenous compounds (amides) from protein degradation and oxygenated compounds from the decomposition of polysaccharides and lignin. The addition of 10% methanol and 10% ethanol to the oil from 50% manure and 50% pine reduced the initial viscosity of the oil and was also beneficial in slowing down the rate of viscosity change during storage.
机译:由生物质的常规热解产生的生物原油的不稳定性质是限制其应用的特性之一。通过热解技术处理家禽垃圾时,作为增值产品生产的生物原油可用于农场。在这项研究中,我们调查了垫料(刨花)对家禽垃圾快速热解产生的生物原油的储存稳定性的影响。由粪便,木材(松木和橡木)以及粪便和木材的比例(75:25 50:50和25:75 w / w%)的混合物生产的生物原油在环境条件下储存在密封的玻璃小瓶中,以备不时之需。通过测量粘度随时间的变化来监测其6个月的使用寿命和稳定性。肥料油的粘度变化率最低,因此相对最稳定,而来自50:50 w / w%垃圾混合物的油则最不稳定。粪便生物原油的粘度变化率是1.33 cP /天,而50/50的凋落物混合物的粘度变化率是松树是7.6 cP /天,橡树是4.17 cP /天。对生物原油的光谱分析表明,该油中高反应性氧化官能团的存在是垃圾生物原油的不稳定性特征。来自50:50 w / w%凋落物混合物的生物原油的较差稳定性归因于蛋白质降解产生的含氮化合物(酰胺)与多糖和木质素分解产生的含氧化合物之间的反应。从50%的粪便和50%的松树中向油中添加10%甲醇和10%乙醇会降低油的初始粘度,并且还有助于减缓存储过程中粘度的变化速度。

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