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首页> 外文期刊>Macromolecular symposia >Petroleum Absorbers Based on CNSL, Furfural and Lignin – The Effect of the Chemical Similarity on the Interactions among Petroleum and Bioresins
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Petroleum Absorbers Based on CNSL, Furfural and Lignin – The Effect of the Chemical Similarity on the Interactions among Petroleum and Bioresins

机译:基于CNSL,糠醛和木质素的吸油剂–化学相似性对石油与生物树脂相互作用的影响

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The petroleum has become our most important source of energy since the mid-1950s. It is due to its high energy density, easy transportability and relative abundance. However, along extraction, storage or transportation of oil, spill accidents may happen. This kind of accident causes severe impacts on the environment, being directly responsible for the destruction of the marine life, which affects the fishing and even tourism industries. Main goal of this work is related to the use of renewable sources aiming to obtain "absorbent green materials". These materials were synthesized by a typical phenolic resin polycondensation route using cashew nut shell liquid (CNSL) as main phenolic compound. Focused on keep the green characteristic of the materials, furfuraldehyde from hemicellulose was used as aldehyde and the reaction was catalyzed using a small amount of sulfuric acid. Resins were characterized using Optical Microscopy, Scanning Electron Microscopy, Infrared Spectroscopy with Fourier Transformed (FTIR) and density tests. In addition, contraction of the oil spilled was studied in presence of resins. Obtained results demonstrated that synthesized resins present a good chemical similarity with oil, which produces a good interaction among resins and oil, making easy the contraction of the oil spot on the water and, consequently, the removal process of oil spilled on water.
机译:自1950年代中期以来,石油已成为我们最重要的能源。这归因于其高能量密度,易运输性和相对丰度。但是,在石油的开采,储存或运输过程中,可能会发生泄漏事故。这种事故对环境造成了严重影响,直接造成了海洋生物的破坏,从而影响了渔业甚至旅游业。这项工作的主要目标与旨在获得“吸收性绿色材料”的可再生资源的使用有关。以腰果壳液(CNSL)为主要酚类化合物,通过典型的酚醛树脂缩聚路线合成了这些材料。着眼于保持材料的绿色特性,将半纤维素的糠醛用作醛,并使用少量硫酸催化反应。使用光学显微镜,扫描电子显微镜,具有傅里叶变换的红外光谱(FTIR)和密度测试对树脂进行表征。另外,还研究了在树脂存在下溢油的收缩情况。所得结果表明,合成树脂与油具有良好的化学相似性,从而在树脂和油之间产生良好的相互作用,使油斑易于在水上收缩,从而消除了溢在水上的油的过程。

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