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Development and quantification of biodiesel production from chicken feather meal as a cost-effective feedstock by using green technology

机译:利用绿色技术开发和定量化鸡羽毛粉作为具有成本效益的原料生产生物柴油

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摘要

Increased urbanization and increase in population has led to an increased demand for fuels. The result is the prices of fuels are reaching new heights every day. Using low-cost feedstocks such as rendered animal fats in biodiesel production will reduce biodiesel expenditures. One of the low-cost feedstocks for biodiesel production from poultry feathers. This paper describes a new and environmentally friendly process for developing biodiesel production technology from feather waste produced in poultry industry. Transesterification is one of the well-known processes by which fats and oils are converted into biodiesel. The reaction often makes use of acid/base catalyst. If the material possesses high free fatty acid then acid catalyst gives better results. The data resulted from gas chromatography (GC) revealed these percentages for fatty acid compositions: myristic acid, palmitic acid, stearic acid, oleic acid, linoleic acid and arachidonic acid. The biodiesel function group was analyzed by using FTIR. This study concluded that the rooster feathers have superior potential to process them into biodiesel than broiler chicken feathers fat because of fatty acid composition values and it has important properties of biodiesel.
机译:日益城市化和人口增加导致对燃料的需求增加。结果是燃料的价格每天都达到新的高度。在生物柴油生产中使用低成本原料(例如提炼的动物脂肪)将减少生物柴油的支出。一种由家禽羽毛生产生物柴油的低成本原料之一。本文介绍了一种从家禽业产生的羽毛废料中开发生物柴油生产技术的新型环保工艺。酯交换反应是将油脂转化为生物柴油的众所周知的过程之一。该反应通常利用酸/碱催化剂。如果该材料具有高游离脂肪酸,那么酸催化剂会产生更好的结果。气相色谱(GC)得出的数据显示了脂肪酸组成的这些百分比:肉豆蔻酸,棕榈酸,硬脂酸,油酸,亚油酸和花生四烯酸。使用FTIR分析了生物柴油功能组。这项研究得出的结论是,由于脂肪酸组成值较高,因此鸡毛比肉鸡脂肪具有更大的加工成生物柴油的潜力,并且它具有重要的生物柴油性能。

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