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Sludge Generation in the Treatment of Acid Mine Drainage (AMD) by High-Density Sludge (HDS) Recycling Method

机译:高密度污泥(HDS)循环法处理酸性矿山废水(AMD)时产生污泥

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摘要

Calcium hydroxide (Ca(OH)_2), a combination of calcium carbonate (CaCO_3) and Ca(OH)_2 (two step) and magnesium oxide (MgO) were used as a neutralizer in the treatment of synthetic Horobetsu Acid Mine Drainage (AMD) by High-Density Sludge (HDS) recycling method to obtain the appropriate guidelines of optimum AMD treatment. The result during the initial neutralization demonstrated that at pH 7, arsenic, either As(III) or As(V) in solution, could be removed by adsorption to the sludge with a concentration in the supernatant solution below the Japanese regulated environmental effluent standard. The sludge generated in HDS recycling method with Ca(OH)_2 neutralization was composed of Fe(III) hydroxide combined with a high amount of gypsum (CaSO_4 centre dot 2H_2O), the same as in the two step neutralization in which undissolved CaCO_3 was included. The sludge generated in HDS recycling with MgO neutralization was composed of basic ferric sulphate combined with a low content of undissolved MgO. The sludge-settling rate generally decreased as the recycling process proceeded. The settling rate of the sludge from MgO neutralization was faster than that of the sludge from the Ca(OH)_2 and two step neutralization. The Fe density of the sludge by MgO neutralization was highest compared to the other neutralization.
机译:氢氧化钙(Ca(OH)_2),碳酸钙(CaCO_3)和Ca(OH)_2(两步法)和氧化镁(MgO)的组合用作中和剂,用于处理合成的Horobetsu酸性矿井排水(AMD) )通过高密度污泥(HDS)回收方法获得最佳AMD处理的适当指南。初始中和过程中的结果表明,在pH值为7时,溶液中砷的浓度低于日本规定的环境污水标准,可以通过吸附到污泥中去除砷(As(III)或As(V))。与Ca(OH)_2中和的HDS回收方法中产生的污泥由氢氧化Fe(III)与大量石膏组成(CaSO_4中心点2H_2O)组成,与两步中和中一样,其中包括未溶解的CaCO_3 。 HDS回收中和MgO的过程中产生的污泥由碱性硫酸铁和少量未溶解的MgO组成。随着回收过程的进行,污泥沉降速率通常会降低。 MgO中和后的污泥的沉降速度快于Ca(OH)_2和两步中和的污泥的沉降速度。与其他中和相比,MgO中和后的污泥中的Fe密度最高。

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