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Comparative analysis of various waste cooking oils for esterification and transesterification processes to produce biodiesel

机译:各种废物酯化油料酯化和酯交换过程生产生物柴油的比较分析

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摘要

This study is focused on the production of biodiesel from waste cooking oils to turn the waste into energy by biological means. Physicochemical analysis of the oil samples was performed by measuring their density, acid value and saponification value for evaluating their efficacy towards biodiesel synthesis. Metal catalyzed glycerolysis and acid catalyzed esterification was carried out to reduce the free fatty acid number of oils. Transesterification of treated oils was done by using different alkalis and lipase (free and immobilized) as catalysts. Furthermore, the impact of all the reaction parameters including time, temperature, catalysts and methanol concentration was observed. Biodiesel was purified by wet and dry washing. Maximum product formation was achieved with 1% potassium hydroxide (KOH) followed by 4% free lipase and 6% immobilized lipase. Chemical composition analysis by gas chromatography and mass spectrometry (GCMS) showed the presences of about 97 and 93% fatty acid methyl esters for KOH and lipase based biodiesel, respectively. Fuel properties including distillation temperature, kinematic viscosity, flash, fire, cloud and pour point of the final product were found in accordance with the standard American Society Testing and Materials biodiesel specifications.
机译:本研究专注于生产废物烹饪油的生物柴油,通过生物学手段将废物转化为能量。通过测量它们的密度,酸值和皂化值来评估它们对生物柴油合成的疗效来进行油样的物理化学分析。进行金属催化甘油分解和酸催化的酯化,以减少油脂的游离脂肪酸数。通过使用不同的碱和脂肪酶(自由并固定)作为催化剂来完成处理过的油的酯交换。此外,观察到包括时间,温度,催化剂和甲醇浓度的所有反应参数的影响。通过湿和干洗纯化生物柴油。用1%氢氧化钾(KOH)实现最大产物形成,然后实现4%游离脂肪酶和6%固定化脂肪酶。通过气相色谱和质谱分析(GCMS)的化学成分分析显示了KOH和脂肪酶的生物柴油的约97和93%脂肪酸甲酯的课程。根据标准的美国社会检测和材料生物柴油规格,发现了燃料特性,包括蒸馏温度,运动粘度,闪光,火,云和倾注点。

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