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首页> 外文期刊>Journal of Environmental Management >Characterization of Kef Shfeir phosphate sludge (Gafsa, Tunisia) and optimization of its dewatering
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Characterization of Kef Shfeir phosphate sludge (Gafsa, Tunisia) and optimization of its dewatering

机译:Kef Shfeir磷酸盐污泥的表征(突尼斯的加夫萨)及其脱水的优化

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摘要

Water separation and recovery through thickening require adapted flocculants and densification processes. This study aimed to maximize water recovery from phosphate sludge (PS) at Kef Shfeir mine operation, Gafsa Phosphate Company, Tunisia. Representative samples of PS, PS treated with flocculant (F-PS), raw water, and recycled water were collected on the mine site. Solid samples (PS and F-PS) were characterized physically, chemically and mineralogically. To maximize water recovery, thickening tests were performed on the PS using different flocculants to optimize flocculant concentration, the agitation speed and the settling time. Results showed that PS had positive surface charge since its paste pH (7.3) was lower than pHpzc (8.0), whereas the tested flocculant (Slim Floc used by the company) showed negative surface charge. Solid samples contained coarse medium and fine particles of carbonates, silicates and residual hydroxyapatite. The cumulative fractions +32 mu m of PS contained a promising residual potential of fluorapatite (up to 39.2%). Water recovery was about 58.1%, when the anionic Slim Floc was used, for a consumption rate of 1200 g/t of dry solids. Best efficiency (84%) of water recovery was obtained with the anionic flocculant E24 for a consumption rate of 360 g/t of dry solids, which is 3 times lower than actual flocculant consumption.
机译:通过增稠进行水分离和回收需要合适的絮凝剂和致密化工艺。这项研究旨在最大程度地提高突尼斯加夫萨磷酸盐公司Kef Shfeir矿山的磷渣(PS)中的水回收率。 PS的代表性样品,用絮凝剂(F-PS)处理过的PS,原水和循环水均在矿山现场收集。对固体样品(PS和F-PS)进行了物理,化学和矿物学表征。为了最大程度地提高水的回收率,使用不同的絮凝剂对PS进行了增稠测试,以优化絮凝剂的浓度,搅拌速度和沉降时间。结果表明,由于PS的糊剂pH(7.3)低于pHpzc(8.0),因此PS具有正表面电荷,而测试的絮凝剂(该公司使用的Slim Floc)却显示负表面电荷。固体样品含有粗的中等和碳酸盐,硅酸盐和残留的羟基磷灰石细颗粒。 PS的累积馏分+32μm包含有希望的氟磷灰石残留电位(高达39.2%)。当使用阴离子Slim Floc时,水回收率为约58.1%,干燥固体的消耗率为1200 g / t。阴离子絮凝剂E24的最佳水回收效率(84%),干燥固体的消耗量为360 g / t,这是实际絮凝剂消耗量的3倍。

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