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Behavior and effect of calcium during hydrothermal sulfidation and flotation of zinc-calcium-based neutralization sludge

机译:钙钙基中和污泥水热硫化浮选过程中钙的行为及影响

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Neutralization sludge (NS), a calcium-based heavy metal waste, was produced in large quantities during wastewater treatment using lime milk neutralization in the nonferrous metal industry. During hydrothermal sulfidation and flotation of NS, the phase transition of calcium compounds might play a crucial role in the subsequent flotation for low metal recovery. During hydrothermal sulfidation, calcium minerals in NS were converted and further developed into bulk CaSO4 crystals with many nano-ZnS crystals adhering on its surface. Specifically, the conversion of CaCO3 into CaSO4 could accelerate the sulfidation of NS. However, the presence of CaSO4 could slow the growth rate of ZnS crystals, which imposes a negative effect on subsequent flotation. CaSO4 crystals with irregular shapes and incomplete crystallization combined with nano-ZnS crystals were frequently observed in concentrates after flotation, whereas CaSO4 crystals of regular shape and high crystallinity were mainly discovered in tailings, indicating that modifying the crystalline nature and texture of CaSO4 crystals is a feasible method for separating ZnS and CaSO4 and for increasing metal recovery. Furthermore, the adsorption of collectors on CaSO4 was hardly detected, indicating that CaSO4 barely competed with ZnS for collectors during flotation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:中性污泥(NS)是一种钙基重金属废物,在废水处理过程中,有色金属行业中使用石灰乳中和产生了大量污泥。在NS的水热硫化和浮选过程中,钙化合物的相变可能在随后的浮选过程中起关键作用,以降低金属的回收率。在水热硫化过程中,NS中的钙矿物质被转化并进一步发展为块状CaSO4晶体,其表面粘附有许多纳米ZnS晶体。具体而言,将CaCO3转化为CaSO4可以加速NS的硫化。但是,CaSO4的存在会减慢ZnS晶体的生长速度,这对随后的浮选产生负面影响。浮选后的精矿中经常观察到具有不规则形状和不完全结晶的CaSO4晶体与纳米ZnS晶体结合,而主要在尾矿中发现规则形状和高结晶度的CaSO4晶体,这表明改变CaSO4晶体的晶体性质和织构是一种分离ZnS和CaSO4并提高金属回收率的可行方法。此外,几乎未检测到捕集剂在CaSO4上的吸附,表明在浮选过程中CaSO4几乎不与ZnS竞争捕集剂。 (C)2015 Elsevier Ltd.保留所有权利。

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