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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Evaluation of NF membranes as treatment technology of acid mine drainage: metals and sulfate removal
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Evaluation of NF membranes as treatment technology of acid mine drainage: metals and sulfate removal

机译:NF膜评价酸性矿喷射治疗技术:金属和硫酸盐去除

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Acid mine drainage (AMD) are acidic streams rich in dissolved ferrous and non-ferrous metal sulfates and minor amounts of non-metals. Nanofiltration (NF) has been postulated as a potential technology in the metallurgical and mining industry to recover strong acids as H2SO4 and concentrate metallic ions from acidic mine waters. The performance of semi-aromatic polyamide (NF270) and sulfonated polyethersulfone (HydraCoRe 70pHT) NF membranes were evaluated at different trans-membrane pressures. Different synthetic solutions were filtered under spiral wound configuration at two pHs (2.0 and 2.8): i) a solution of Na2SO4 and ii) a solution mimicking AMD from dams, containing Na2SO4 and Fe2+, Zn2+ and Cu2+. NF270 showed metal rejections higher than 90%, while for HydraCoRe 70pHT they were in between 60 and 70%. Metal rejection values decreased when solution acidity was increased. Chemical composition of the membrane active layer and the aqueous metal-sulfate speciation were found to have a large impact on membrane separation process. SolutionElectromigration-Diffusion-Film model was used to estimate the membrane permeances to ions from the measured ion rejections. Furthermore, a full scale unit vessel containing six spiral wound membrane modules was simulated. NF270 showed a higher capacity for concentrating metal and sulfate ions (100%) than Hydracore 70pHT (50%).
机译:酸性矿石引流(AMD)是富含溶解的黑色和有色金属硫酸盐和少量非金属的酸性物流。纳滤(NF)已被假定为冶金和采矿业中的潜在技术,以回收强酸作为H2SO4,并从酸性矿水中浓缩金属离子。在不同的跨膜压力下评价半芳族聚酰胺(NF270)和磺化聚醚砜(HARDACOLE 70PHT)NF膜的性能。在两pHS(2.0和2.8):i)下将不同的合成溶液在螺旋缠绕构型下过滤:I)Na 2 SO 4和II)溶液从坝体模仿AMD,含有Na 2 SO 4和Fe 2 +,Zn2 +和Cu 2 +。 NF270显示金属抑制率高于90%,而Hydacore 70pht在60%至70%之间。当溶液酸度增加时,金属排斥值降低。发现膜活性层和含水金属 - 硫酸盐物质的化学成分对膜分离过程具有很大的影响。解决方法用于从测量的离子抑制中估计膜渗透到离子的离子。此外,模拟了含有六个螺旋缠绕膜模块的全刻度单元容器。 NF270显示出浓缩金属和硫酸盐离子(100%)的容量比Hydacore 70pht(50%)。

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