...
首页> 外文期刊>Journal of Environmental Management >Simplex-Centroid mixture design applied to arsenic (Ⅴ) removal from waters using synthetic minerals
【24h】

Simplex-Centroid mixture design applied to arsenic (Ⅴ) removal from waters using synthetic minerals

机译:单纯形-类固醇混合物设计,用于使用合成矿物去除水中的砷(Ⅴ)

获取原文
获取原文并翻译 | 示例
           

摘要

Arsenic (As) is a toxic and carcinogenic element. Therefore, it is necessary to carry out research on As-contaminated water management in order to achieve the World Health Organization (WHO) standard for drinking water (0.010 mg L-1). A Simplex-Centroid mixture design (SCMD) was used to determine the best mineral composition for both maximum adsorption capacity of As(V) (MAC-As) and residual concentration of As(V) (RC-As), using synthetic poorly crystallized aluminum hydroxide (pAlHyd), calcined layered double hydroxide (cLDH), and two-line ferrihydrite (2lFh). The analysis of variance results and the predicted values of models showed a good agreement with the experimental data, indicating that SCMD is a reliable method to optimize As removal through determination of the best mineral composition. The ability of pure synthetic minerals to remove As from water was different among those mixtures thereof, which indicate that the mineral components interacted with each other. Results showed that cLDH was the best As adsorbent. However, it showed a RC-As higher than the WHO standard. The pAlHyd and 2lFh exhibited smaller MAC-As, but they lowered RC-As to below 0.010 mg L-1, showing no direct relationship between high MAC-As and low RC-As. Therefore, mineral compositions which combine high adsorption capacity with low residual concentration should work better for removing As from drinking water, ensuring it meets the WHO potability standard. Ternary diagrams for MAC-As and RC-As showed that the best combination for maximizing MAC-As and reducing RC-As should be a mixture of 75-90% of cLDH, 10-20% of pAlHyd, and 0-5% of 2lFh.
机译:砷(As)是一种有毒和致癌元素。因此,有必要进行砷污染水管理的研究,以达到世界卫生组织(WHO)的饮用水标准(0.010 mg L-1)。使用合成不良结晶,使用单纯形-中心混合设计(SCMD)确定As(V)(MAC-As)的最大吸附容量和As(V)(RC-As)的残留浓度的最佳矿物组成氢氧化铝(pAlHyd),煅烧层状双氢氧化物(cLDH)和两线铁水铁矿(2lFh)。方差结果的分析和模型的预测值与实验数据显示出良好的一致性,表明SCMD是通过确定最佳矿物组成来优化As去除的可靠方法。在这些混合物中,纯合成矿物从水中去除As的能力有所不同,这表明矿物成分之间会发生相互作用。结果表明,cLDH是最佳的As吸附剂。但是,它显示的RC-As高于WHO标准。 pAlHyd和2lFh表现出较小的MAC-As,但将RC-As降低至0.010 mg L-1以下,表明高MAC-As与低RC-As之间没有直接关系。因此,具有高吸附能力和低残留浓度的矿物质组合物应能更好地从饮用水中去除砷,确保其符合WHO的饮用标准。 MAC-As和RC-As的三元图显示,最大化MAC-As和减少RC-As的最佳组合应该是75-90%的cLDH,10-20%的pAlHyd和0-5%的混合物。 2lFh。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号