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Figure-of-merit analysis of treating wastewater from color filter fabrication using H2O2/UV process for reuse

机译:利用H2O2 / UV工艺处理彩色滤光片制造废水回用的品质因数分析

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In this study, the energy consumption and the operation cost of using the H2O2/UV process to treat wastewater from the color filter (CF) fabrication were evaluated by the electrical energy per order (E-EO). The results showed that both decolorization and mineralization followed the pseudo-first-order reaction. For the UV power of 13 W, as the H2O2 dose increased from 50 to 150 mg/L, E-EO reduced from 26.5 to 12.8 kW h m(-3) order(-1) for total organic carbon (TOC) and from 11.3 to 5.7 kW h m(-3) order(-1) for color. That is, by increasing the amount of H2O2, the electrical energy efficiency became better due to faster reaction as shown by the larger reaction constant k. Moreover, the electrical energy efficiency was better for the removal of color than for the removal of TOC as E-EO,E-TOC>E-EO,E-color. Moreover, irrespective of TOC and color removals, the E-EO values for both UV intensities of 13 and 9 W were close to each other, implying that a higher intensity could be applied by saving the operation time. Through the obtained E-EO, the achievable optimum costs to treat CF wastewater for reuse were 0.713 US$/m(3) for decolorization and 1.214 US$/m(3) for mineralization.
机译:在这项研究中,通过每订单电能(E-EO)评估了使用H2O2 / UV工艺处理滤色镜(CF)制造废水的能耗和运营成本。结果表明,脱色和矿化均遵循拟一级反应。对于13 W的紫外线功率,随着H2O2剂量从50升至150 mg / L,E-EO的总有机碳(TOC)从26.5降低至12.8 kW hm(-3)阶(-1),从11.3降低到5.7 kW hm(-3)阶(-1)的颜色。即,通过增加H 2 O 2的量,由于较大的反应常数k所显示的更快的反应,电能效率变得更好。此外,除E-EO,E-TOC> E-EO,E-color,去除色泽的电能效率要好于去除TOC。而且,无论TOC和颜色去除如何,紫外线强度13和9 W的E-EO值都彼此接近,这意味着可以通过节省操作时间来施加更高的强度。通过获得的E-EO,处理CF废水回用的最佳成本是脱色0.713美元/ m(3)和矿化1.214美元/ m(3)。

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