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首页> 外文期刊>Water science & technology >Optimization of total trihalomethanes' (TTHMs) and their precursors' removal by granulated activated carbon (GAC) and sand dual media by response surface methodology (RSM)
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Optimization of total trihalomethanes' (TTHMs) and their precursors' removal by granulated activated carbon (GAC) and sand dual media by response surface methodology (RSM)

机译:响应面法(RSM)通过颗粒状活性炭(GAC)和砂双重介质优化总三卤甲烷(TTHM)及其前体的去除

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摘要

A response surface methodology (RSM) applying central composite design with rotatable full factorial (14 non-center and six center points) was used to discern the effect of granular activated carbon (GAC), sand and pH on total trihalomethanes (TTHMs) and humic acid (HA) removal from drinking water. Results showed efficient TTHMs and HA removal by GAC while a sand column showed little effect for TTHMs but was significant for total organic carbon (TOC) removal. With GAC and a sand column of 4 cm, a pH increase from 6 to 8 caused an increase in TTHM removal from 79.8 to 83.6% while a decrease in HA removal from 26.6 to 6.6% was observed. An increase in GAC column depth from 10 to 20 cm caused a slight increase in TTHM removal from 99.4 to 99.7%, while TOC removal was increased from an average of 38.85% to 57.4% removal. The developed quadratic model for TTHM removal (p = 0.048) and linear model for TOC removal (p = 0.039) were significant. GAC column depth (p < 0.0117) and column depth(2) (p < 0.039) were the most significant factors. A 98% TTHMs, 30% TOC and 51% residual chlorine removal were optimized at 9 cm GAC and 4 cm sand columndepth at pH 8 with desirability factor (D) 0.64.
机译:使用响应表面方法(RSM),应用具有可旋转全因子分析的中心复合设计(14个非中心点和6个中心点)来识别颗粒状活性炭(GAC),沙子和pH值对总三卤甲烷(TTHM)和腐殖质的影响从饮用水中去除酸(HA)。结果表明,GAC可以有效去除TTHM和HA,而砂柱对TTHM的影响很小,但对总有机碳(TOC)的去除却很重要。使用GAC和4 cm的砂柱,pH从6增至8导致TTHM去除率从79.8增至83.6%,而HA去除率则从26.6降低至6.6%。 GAC柱深度从10 cm增加到20 cm导致TTHM去除率从99.4略有增加到99.7%,而TOC去除率从平均去除率38.85%增加到57.4%。 TTHM去除的二次模型(p = 0.048)和TOC去除的线性模型(p = 0.039)具有重要意义。最重要的因素是GAC柱深度(p <0.0117)和柱深度(2)(p <0.039)。在pH值为8的9 cm GAC和4 cm砂柱深度下,对98%TTHM,30%TOC和51%残留氯的去除进行了优化,理想因子(D)为0.64。

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