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Treatment of oily wastewater from waste glycerol by acidification and the coalescer process

机译:酸化和聚结法处理废甘油中含油废水。

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摘要

In this study, treatment of grease and oil (G&O) and other impurities in waste glycerol from biodiesel production was performed by a two-step process, by acidification and the coaleser process. 1M hydrochloric acid (HC1) was used to acidify waste glycerol to destabilize the emulsion and remove the suspended solids (SS), soap and methyl ester. For acidification, a pH of 6 was selected, before testing with coalescer. The study was investigated with a wide range of factors and parameters including two media materials (polypropylene (PP) and polyethyleneterephthalate (PET)), two configure shapes (granular and fiber), pH (3-6), bed height (50-150 mm), and flow rate (5-18 dm~3/h). The results of the study in the same experiment conditions showed, PP media material gave better results than PET media materials where the fiber sharp material performed better than the granular sharp material. G&O concentration of treated waste glycerol reduced to 0.081 g/L under operating conditions with 120 mm bed height, 5dm~3/h flow rate and PP fiber media.
机译:在这项研究中,生物酸生产中的废甘油中的油脂和其他杂质通过酸化和聚结工艺分两步进行。用1M盐酸(HCl)酸化废甘油,使乳液不稳定,并除去悬浮的固体(SS),肥皂和甲酯。对于酸化,在用聚结器测试之前,选择pH为6。本研究以多种因素和参数进行了研究,包括两种介质材料(聚丙烯(PP)和聚对苯二甲酸乙二醇酯(PET)),两种配置形状(颗粒和纤维),pH(3-6),床高(50-150)毫米)和流量(5-18 dm〜3 / h)。在相同实验条件下的研究结果表明,PP介质材料比PET介质材料的结果更好,PET介质材料的纤维锋利材料的性能优于粒状锋利材料。在120 mm床高,5dm〜3 / h流速和PP纤维介质的操作条件下,处理过的废甘油的G&O浓度降至0.081 g / L。

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