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Surface characterisation of selected sorbent materials for common hydrocarbon fuels

机译:普通烃类燃料精选吸附剂材料的表面特性

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摘要

The need to find the most efficient material for the clean-up of oil/fuel spills both at sea and on land is of extreme importance. Generally, this requires material selection based upon the adsorption properties of selected sorbent materials such as sand, swelling clays, organo-clays and cotton fibres. These adsorption properties are a function of the surface characterisation where hydrophobic and oleophilic properties are essential. From BET analysis, the adsorption isotherm of the selected materials was type II and IV in the IUPAC classification scheme. The main adsorption mechanism for these sorbents occurred on the external surface of the material in the pores or capillaries. ESEM studies indicate that cotton capillaries contribute significantly to the adsorption process of oil. In addition, the presence of surface wax on cotton-cellulose fibre facilitated the uptake by: a) providing a relatively hydrophobic surface for sorption of organics; and b) providing a low surface energy environment for the capillaries to aid in oil transport. Cotton fibre was observed to have several key properties such as hydrophobicity, good affinity for hydrocarbons, rapid adsorption on contact, and high adsorption and retention through interfibre capillaries. This research provides the basis for selection of cotton–cellulose fibres compared to common and other novel alternatives such as sand and organo-clays, respectively.
机译:寻找最有效的材料来清理海上和陆地上的石油/燃料泄漏非常重要。通常,这需要根据选定的吸附剂材料(例如沙子,膨胀粘土,有机粘土和棉纤维)的吸附特性来选择材料。这些吸附性能是表面表征的函数,其中疏水和亲油性能至关重要。根据BET分析,在IUPAC分类方案中,所选材料的吸附等温线为II型和IV型。这些吸附剂的主要吸附机理发生在毛孔或毛细管中材料的外表面。 ESEM研究表明,棉毛细管对油的吸附过程有显着贡献。此外,棉纤维素纤维表面蜡的存在还促进了吸收:a)为有机物的吸附提供相对疏水的表面; b)为毛细管提供低表面能的环境,以帮助输油。观察到棉纤维具有几个关键特性,例如疏水性,对烃的良好亲和力,接触时的快速吸附以及通过纤维间毛细管的高吸附和保留。与普通的和其他新颖的替代品(例如分别为沙子和有机粘土)相比,这项研究为选择棉纤维素纤维提供了基础。

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