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Industrial applications and current trends in supercritical fluid technologies

机译:超临界流体技术的工业应用和当前趋势

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Supercritical fluids have a great potential for wide fields of processes Although CO2 is still one of the most used supercritical gases, for special purposes propane or even fluorinated-chlorinated fluids have also been tested. The specific characteristics of supercritical fluids behaviour were analyzed such as for example the solubilities of different components and the phase equilibria between the solute and solvent. The application at industrial scale (decaffeinating of tea and coffee, hop extraction or removal of pesticides from rice), activity in supercritical extraction producing total extract from the raw material or different fractions by using the fractionated separation of beverages (rum, cognac, whisky, wine, beer cider), of citrus oils and of lipids (fish oils, tall oil) were also discussed. The main interest is still for the extraction of natural raw materials producing food ingredients, nutraceuticals and phytopharmaceuticals but also cleaning purposes were tested such as the decontamination of soils the removal of residual solvents from pharmaceutical products, the extraction of flame retardants from electronic waste or precision degreasing and cleaning of mechanical and electronic parts. An increasing interest obviously exists for impregnation purposes based on supercritical fluids behaviour, as well as for the dying of fibres and textiles. The production of fine particles in the micron and submicron range, mainly for pharmaceutical products is another important application of supercritical fluids. Completely new products can be produced which is not possible under normal conditions. Supercritical fluid technology has always had to compete with the widespread opinion that these processes are very expensive due to very high investment costs in comparison with classical low-pressure equipment. Thus the opinion is that these processes should be restricted to high-added value products. A cost estimation for different plant sizes and different applications was also analyzed.
机译:超临界流体在广泛的工艺领域具有巨大潜力,尽管CO2仍然是最常用的超临界气体之一,但出于特殊目的,丙烷,甚至氟化氯化液也已经过测试。分析了超临界流体行为的特定特征,例如不同组分的溶解度以及溶质和溶剂之间的相平衡。工业规模的应用(茶和咖啡的脱咖啡因,啤酒花提取或从大米中去除农药),超临界提取的活性,通过分馏饮料(朗姆酒,干邑白兰地,威士忌,葡萄酒,啤酒,苹果酒,柑橘油和脂质(鱼油,妥尔油)也进行了讨论。主要兴趣仍然是提取生产食品成分,保健食品和植物药品的天然原料,但还测试了清洁目的,例如土壤的去污,药品中残留溶剂的去除,电子废物中的阻燃剂的提取或精密加工。机械和电子零件的除油和清洁。显然,基于超临界流体行为的浸渍目的以及纤维和纺织品的染色越来越引起人们的兴趣。主要用于医药产品的微米级和亚微米级细颗粒的生产是超临界流体的另一重要应用。完全可以生产正常情况下不可能的新产品。超临界流体技术一直必须与普遍观点相抗衡,因为与传统的低压设备相比,这些过程的投资成本很高,因此这些过程非常昂贵。因此,人们认为这些过程应仅限于高附加值的产品。还分析了不同工厂规模和不同应用的成本估算。

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