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An empirical model for parameters affecting energy consumption in boron removal from boron-containing wastewaters by electrocoagulation

机译:影响电凝去除含硼废水中硼的能耗参数的经验模型

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In this study, it was investigated parameters affecting energy consumption in boron removal from boron containing wastewaters prepared synthetically, via electrocoagulation method. The solution pH, initial boron concentration, dose of supporting electrolyte, current density and temperature of solution were selected as experimental parameters affecting energy consumption. The obtained experimental results showed that boron removal efficiency reached up to 99% under optimum conditions, in which solution pH was 8.0, current density 6.0 mA/cm~2, initial boron concentration 100 mg/L and solution temperature 293 K. The current density was an important parameter affecting energy consumption too. High current density applied to electrocoagulation cell increased energy consumption. Increasing solution temperature caused to decrease energy consumption that high temperature decreased potential applied under constant current density. That increasing initial boron concentration and dose of supporting electrolyte caused to increase specific conductivity of solution decreased energy consumption. As a result, it was seen that energy consumption for boron removal via electrocoagulation method could be minimized at optimum conditions. An empirical model was predicted by statistically. Experimentally obtained values were fitted with values predicted from empirical model being as following; [ECB] = 7.6 x 10~6 x [OH]~(0.11) x [CD]~(0.62) x [IBC]~(-0.57) x [DSE]~(-0.04) x [T]~(-2.98) x [t] Unfortunately, the conditions obtained for optimum boron removal were not the conditions obtained for minimum energy consumption. It was determined that support electrolyte must be used for increase boron removal and decrease electrical energy consumption.
机译:在这项研究中,研究了影响通过电凝法从合成制备的含硼废水中脱除硼中能耗的参数。选择溶液的pH,初始硼浓度,支持电解质的剂量,溶液的电流密度和温度作为影响能耗的实验参数。实验结果表明,在pH为8.0,电流密度为6.0 mA / cm〜2,初始硼浓度为100 mg / L,溶液温度为293 K的最佳条件下,除硼效率可达99%。也是影响能耗的重要参数。应用于电凝细胞的高电流密度会增加能耗。溶液温度升高导致能耗降低,高温降低了恒定电流密度下施加的电势。初始硼浓度和支持电解质剂量的增加导致溶液比电导率的增加降低了能耗。结果,可以看出,在最佳条件下,可以最小化通过电凝法去除硼的能量消耗。通过统计预测了一个经验模型。实验获得的值与根据经验模型预测的值拟合如下: [ECB] = 7.6 x 10〜6 x [OH]〜(0.11)x [CD]〜(0.62)x [IBC]〜(-0.57)x [DSE]〜(-0.04)x [T]〜(- 2.98)x [t]不幸的是,获得最佳除硼的条件不是获得最低能耗的条件。确定必须使用支持电解质来增加硼的去除和减少电能的消耗。

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