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采用新型中试规模空化水力学反应器处理实际工业级染料溶液和印刷油墨废水。

Treatment of real industrial-grade dye solutions and printing ink wastewater using a novel pilot-scale hydrodynamic cavitation reactor.

机构信息

Department of Chemical Engineering, University of Patras, Rio, GR-26504, Patras, Greece.

Department of Chemical Engineering, University of Western Macedonia, GR-50100, Kozani, Greece.

出版信息

J Environ Manage. 2021 Nov 1;297:113301. doi: 10.1016/j.jenvman.2021.113301. Epub 2021 Jul 16.

Abstract

A novel pilot-scale hydrodynamic cavitation (HC) reactor was used to decolorize industrial-grade dye solutions and printing ink wastewater (PIW). The effect of the orifice plate geometry (1 hole plate of 1 mm and 2 mm in diameter, 31 holes of 1 mm and 2 mm in diameter, 62 holes of 1 mm and 2 mm in diameter), inlet pressure (4, 5 bar), initial dye concentration (0.3 and 0.6 OD), and the synergistic effect of HC and hydrogen peroxide concentration (0.0, 0.5, 1.0, 2.0 g/L) were investigated. The results showed that the highest color removal was obtained using 31 holes orifice plate of 2 mm holes' diameter, at 4 bar inlet pressure. Furthermore, although HC could not degrade completely all the industrial-grade dyes, efficiency was enhanced in the presence of HO. The optimum concentration of hydrogen peroxide was 1.0 g/L regardless of the initial concentration of the dyes studied. Under optimum operating conditions, color removal reached up to 68% for black, 39% for red, 43% for yellow, 55% for green, and 51% for cyan dye, while color removal in the PIW reached only 15%. The black dye solution presented almost 100% COD removal, while 38%, 25%, 67%, and 78% COD removal values were obtained for the red, yellow, cyan and green dyes, respectively. 55% COD removal was recorded from the PIW. Concerning cavitation yields, black, red, yellow, green, cyan dye yields reached 2.5E(-7), 1.1E(-7), 1.5E(-7), 2.0E(-7), 1.7E(-7) OD⋅L/J, respectively, while PIW yield was 6.3E(-8) OD⋅L/J. The present study demonstrates that HC combined with green oxidants such as hydrogen peroxide could be an alternative treatment approach for real industrial wastewater streams. However, a combination with a post-treatment method should be applied to maximize both color and COD removal.

摘要

一种新型的中试规模的水力空化(HC)反应器被用于对工业级染料溶液和印刷油墨废水(PIW)进行脱色。考察了孔板几何形状(直径为 1mm 和 2mm 的 1 个孔板,直径为 1mm 和 2mm 的 31 个孔,直径为 1mm 和 2mm 的 62 个孔)、入口压力(4、5bar)、初始染料浓度(0.3 和 0.6OD)以及 HC 和过氧化氢浓度的协同作用(0.0、0.5、1.0、2.0g/L)。结果表明,在 4bar 入口压力下,采用直径为 2mm 孔的 31 个孔板,可获得最高的脱色率。此外,尽管 HC 不能完全降解所有工业级染料,但在 HO 的存在下,效率得到了提高。过氧化氢的最佳浓度为 1.0g/L,与所研究的染料的初始浓度无关。在最佳操作条件下,黑色染料溶液的脱色率最高可达 68%,红色为 39%,黄色为 43%,绿色为 55%,青色为 51%,而 PIW 的脱色率仅为 15%。黑色染料溶液的 COD 去除率接近 100%,而红色、黄色、青色和绿色染料的 COD 去除率分别为 38%、25%、67%和 78%。PIW 的 COD 去除率为 55%。关于空化产率,黑色、红色、黄色、绿色和青色染料的产率分别达到 2.5E(-7)、1.1E(-7)、1.5E(-7)、2.0E(-7)和 1.7E(-7)OD⋅L/J,而 PIW 的产率为 6.3E(-8)OD⋅L/J。本研究表明,HC 与过氧化氢等绿色氧化剂结合可能是处理实际工业废水的一种替代方法。然而,应该应用后处理方法来最大限度地提高颜色和 COD 的去除率。

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