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Novel Heterogeneous SO3Na-Carbon Transesterification Catalyst for the Production of Biodiesel

机译:新型异质SO3NA碳式式催化剂催化剂,用于生产生物柴油

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Glycerol, a major biodiesel by-product, was valorised into a novel and highly stable heterogeneous carbon-based solid base catalyst with transesterification activity. The SO3H-carbon catalyst developed previously by us from glycerol was modified into base catalyst by treating with aqueous alkali under controlled conditions. The reported solid base catalyst is first of its kind having polycyclic aromatic carbon sheets attached with -SO3Na, -COONa and -ONa functionalities. The catalyst was characterized for its structural properties using XRD, FTIR, 13CMAS NMR, XPS, EDAX, SEM, TEM, TG/DTA, ICP-OES and Raman spectral techniques. The SO3Na- catalyst was employed for the transesterification of sunflower oil to fatty acid methyl esters (biodiesel) in high yields (99%) at atmospheric pressure. The strong basic sites of the catalyst contributed to its remarkable performance and the activity was intact even after 8 cycles of reuse without any leaching, indicating its high structural stability. Thus, the reported SO3Na-carbon catalyst possessed the potential of green and economic biodiesel production from oils & fats apart from clean glycerol as by-product.
机译:甘油是一种主要的生物柴油副产品,被称为一种新型且高度稳定的异质性碳基固体碱催化剂,具有跨酯化活性。我们先前由美国从甘油中开发的SO3H碳催化剂通过在受控条件下用水性碱处理,将甘油中的SO3H-碳催化剂修饰为碱催化剂。据报道的固体碱催化剂首先具有与-so3na,-coona和-ONA功能相连的多环芳族碳片。使用XRD,FTIR,13CMAS NMR,XPS,EDAX,SEM,TEM,TG/DTA,ICP-OE,ICP-OES和RAMAN光谱技术,该催化剂的结构特性以其结构特性为特征。 SO3NA-催化剂用于在大气压力下以高产量(99%)的高产量(99%)将葵花籽油酯化为脂肪酸甲酯(生物柴油)。催化剂的强大基本位点有助于其出色的性能,即使在没有任何浸出的情况下进行了8个循环,该活动也完好无损,表明其高结构稳定性。因此,报道的SO3NA碳催化剂具有除干净的甘油作为副产品外的油和脂肪产生的绿色和经济生物柴油的潜力。

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