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Pilot-scale treatment of waste-water from carbon production by a combined physical-chemical process

机译:结合物理化学过程中试处理碳生产废水

摘要

BACKGROUND: Due to its strong colour, high concentrations of fluorides and chemical oxygen demand (COD(Cr)) and large amount of suspended solids (SS), the waste-water from carbon production (WCP) seriously affects the stability of the circulating system of Guizhou Branch, Aluminium Corporation of China. In this paper, the performance of a pilot-scale (24 m(3) d(-1)) combined treatment plant, consisting of chemical precipitation, coagulation, and Fenton oxidation, for the treatment of WCP was investigated. RESULTS: Lime precipitation and hydrated ferrous sulphate (HFS) coagulation, with polyacrylamide (PAM) as a coagulation aid, proved to be effective in the removal of colour (70%), suspended solids (SS) (90%) and fluoride (80%) from the WCP. Subsequent Fenton oxidation combined with coagulation as a final treatment efficiently removed SS, F(-), COD(Cr), dissolved organic carbon (DOC) and colour. The average total removal efficiencies of these parameters in the pilot-scale combined technology were as follows: SS = 98.8%, F(-) = 95.7%, COD(Cr) = 94.8%, DOC = 91.8% and colour = 98.3%, giving an average effluent quality: colour 24 (multiple), COD(Cr) 168 mg L(-1), DOC 80 mg L(-1), F(-) 38 mg L(-1) and SS 44 mg L(-1), consistent with the reusable water limits for the process. CONCLUSIONS: The current experimental results and the economic evaluation suggest that the combined process could be advantageous and feasible for the treatment of WCP. (C) 2009 Society of Chemical Industry
机译:背景:由于其强烈的颜色,高浓度的氟化物和化学需氧量(COD(Cr))和大量的悬浮固体(SS),碳生产(WCP)产生的废水严重影响了循环系统的稳定性中国铝业公司贵州分公司在本文中,研究了由化学沉淀,混凝和Fenton氧化组成的中试规模(24 m(3)d(-1))联合处理厂对WCP的处理性能。结果:石灰沉淀和水合硫酸亚铁(HFS)凝结,以聚丙烯酰胺(PAM)作为凝结助剂,被证明可有效去除颜色(> 70%),悬浮固体(SS)(> 90%)和氟化物(> 80%)来自WCP。随后的Fenton氧化与混凝作为最终处理,可以有效去除SS,F(-),COD(Cr),溶解的有机碳(DOC)和颜色。在中试规模的联合技术中,这些参数的平均总去除效率如下:SS = 98.8%,F(-)= 95.7%,COD(Cr)= 94.8%,DOC = 91.8%,颜色= 98.3%,产生平均废水质量:颜色24(多种),COD(Cr)168 mg L(-1),DOC 80 mg L(-1),F(-)38 mg L(-1)和SS 44 mg L( -1),与过程中的可重复使用水限制一致。结论:目前的实验结果和经济评价表明,联合工艺对WCP的治疗是有利和可行的。 (C)2009年化学工业学会

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