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Recycling of kebab restoration grease for bioenergy production through acoustic cavitation

机译:通过声学空化回收kebab恢复油脂进行生物能量生产

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摘要

The use of renewable energies to combat climate change is one of the greatest goals for humanity. To achieve this objective, one alternative is to valorize and recycle wastes, i.e. food waste, generated daily due to our way of life. Every day, human beings generate thousands of tons of this organic matter that can be recycled to produce bioenergy. Food waste is a source of carbon that must be included into the carbon dioxide cycle. In this manuscript, we propose to recycle the organic waste produced in a kebab local restaurant through biodiesel production, assisted by clean energy i.e. ultrasound. Biodiesel of both chicken grease and a mixture of beef-lamb were synthesized and optimized by response surface methodology and desirability function. Fatty acid methyl ester yields were higher (97.42% w/w for chicken grease and 96.98 for beef-lamb grease) than the minimum threshold established by European regulation EN 14214 (= 96.5% w/w). Although, cold-filter plugging point and oxidation stability resulted in values far from those established by the EN 14214 standard. To improve them while meeting standard threshold, both antifreeze and antioxidant were added following a design of experiments. The addition of antioxidant t-butyl-hydroxyquinone (TBHQ) at concentrations between 800 and 900 ppm and a commercial antifreeze at concentrations above 0.08% v/v, significantly improved biofuel quality in terms of storage and cold flow properties. We can conclude that animal fat residues from kebab restoration can provide suitable biodiesel if antioxidants and antifreezes are added. (C) 2020 Elsevier Ltd. All rights reserved.
机译:使用可再生能源来打击气候变化是人类最大的目标之一。为实现这一目标,另一种选择是储存和回收废物,即食物垃圾,由于我们的生活方式而产生。每天,人类都会产生数千吨这种有机质,可以再循环以产生生物能量。食物垃圾是必须包含在二氧化碳循环中的碳源。在这份手稿中,我们建议通过生物柴油生产来回收烤肉串本地餐厅中生产的有机废物,通过清洁能量,即超声波辅助。通过响应表面方法和期望功能合成和优化鸡润滑脂和牛肉羊肉混合物的生物柴油。脂肪酸甲酯产率较高(鸡润滑脂97.42%w / w,牛肉脂润滑脂96.98)比欧洲调节所建立的最小阈值(> = 96.5%w / w)。虽然,冷滤器堵塞点和氧化稳定性导致远离EN 14214标准建立的值。为了在满足标准阈值的同时改进它们,在实验设计后加入防冻和抗氧化剂。在800-900ppm的浓度下加入抗氧化叔丁基 - 羟基醌(TBHQ)和以0.08%v / v的浓度的商业防冻剂,在储存和冷流动性方面显着提高生物燃料质量。我们可以得出结论,如果添加抗氧化剂和防冻剂,则来自kebab恢复的动物脂肪残留物可以提供合适的生物柴油。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第8期|1147-1155|共9页
  • 作者单位

    Univ Cordoba EPS Dept Phys Chem & Appl Thermodynam Edificio Leonardo da Vinci CeiA3 Campus Rabanales Campus Excelencia Int Cordoba 14071 Spain;

    Univ Cordoba EPS Dept Phys Chem & Appl Thermodynam Edificio Leonardo da Vinci CeiA3 Campus Rabanales Campus Excelencia Int Cordoba 14071 Spain;

    Univ Cordoba EPS Dept Phys Chem & Appl Thermodynam Edificio Leonardo da Vinci CeiA3 Campus Rabanales Campus Excelencia Int Cordoba 14071 Spain;

    Univ Cordoba EPS Dept Phys Chem & Appl Thermodynam Edificio Leonardo da Vinci CeiA3 Campus Rabanales Campus Excelencia Int Cordoba 14071 Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ultrasound; Antifreeze; Antioxidant; Animal grease; Biodiesel;

    机译:超声波;防冻剂;抗氧化剂;动物油脂;生物柴油;

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