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Destabilization and Recuperability of Oil Used in the Formulation of Concentrated Emulsions and Cutting Fluids

机译:浓缩乳液和切削液配方中所用油的去稳定和可回收性

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摘要

Lubricants known as cutting fluids are used in the metal-mechanic industry with the function of cooling and lubricating the cutting zone. These lubricants normally have a water phase, an oil phase, emulsifying agents and additives. Once the operational capacityof these fluids has ceased, either due to biological deterioration or to overabundance of contaminants, the emulsions being used must be treated in order to adequate their effluents for discharge. This study aims to evaluate the destabilization process and recuperability of the oil used in the formulation of concentrated emulsions and cuttingfluids. For this purpose, the following destabilizing factors were tested: temperature, centrifugation speed, and concentration of inorganic salts. The optimization of the process with concentrated emulsion allowed for the following most adequate condition ofdemulsification: temperature of θ =70 °C, centrifugation of 2000 rpm, and salt concentration of γ = 2000 g L-1. As for the cutting fluids, the conditions were less severe, with salt concentration around γ = 50 g L-1, and temperature of θ = 50 °C. FTIR techniquewas used to determine the concentration of emulsifying agents used in the preparation of concentrated emulsions. This procedure was not carried out for the cutting fluid due to the diversity of substances present in its composition derived from the additives that either make it difficult or prevent the identification of the peaks shown in the FTIR spectra.
机译:在金属机械行业中,被称为切削液的润滑剂具有冷却和润滑切削区域的功能。这些润滑剂通常具有水相,油相,乳化剂和添加剂。一旦由于生物降解或污染物过多而停止了这些液体的操作能力,则必须对所使用的乳液进行处理,以使它们的流出物足够排出。这项研究旨在评估浓缩乳液和切削液配方中所用油的去稳定过程和可回收性。为此,测试了以下不稳定因素:温度,离心速度和无机盐的浓度。使用浓缩乳液的工艺优化可实现以下最充分的破乳条件:θ= 70°C的温度,2000 rpm的离心分离和盐浓度γ= 2000 g L-1。至于切削液,情况不那么严峻,盐浓度约为γ= 50 g L-1,温度为θ= 50°C。 FTIR技术用于确定浓乳液制备中使用的乳化剂的浓度。对于切削液,由于其成分中存在的物质的多样性源自添加剂,因此很难或无法识别FTIR光谱中所示的峰,因此未对切削液执行此步骤。

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