...
首页> 外文期刊>Water, Air, and Soil Pollution >SORPTION OF As(V) SPECIES FROM AQUEOUS SYSTEMS
【24h】

SORPTION OF As(V) SPECIES FROM AQUEOUS SYSTEMS

机译:从水系统中吸附As(V)物种

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Arsenic is of increasing environmental concern due to risk to plants, animal and human health. In aqueous systems arsenic is dominated by the As~V oxyanions H_2AsO_4~- and HAsO_4~(2-) under oxidizing conditions. The possibility to remove arsenic from aqueous solutions, using sorption processes, was studied with both inorganic and organic-based sorbents. Both of tested inorganic sorbents, calcined synthetic hydrotalcite and calcined natural boehmite, were acceptable for removal of As~V compounds from aqueous systems at laboratory temperature (20℃) and neutral pH due to their crystal structure changes. They were able to remove more than 70% of As~V compounds from aqueous solution at low sorbent-solution ratios (1 g L~(-1) and 2.6 g L~(-1), respectively) and relatively high concentration of AsO_4~(3-) ions in the initial solution (about 2.10~(-3) mol L~(-1)). Humic acid-type sorbents (i.e. pure humic acid and oxihumolite) efficiences remined low even at increased sorbent-solution ratios (about 20 g L~(-1)) and significantly lower concentrations of As in the initial solution. At higher pH values (about 9), the sorption process slightly improved due to solubility of humic substances in alkaline solutions. The sorption increment did not exceed 50% of the initial As content. These results were confirmed by infrared spectroscopy. Both the original calcined and the sorbed inorganic sorbent samples show significant As-O vibrations, while in spectra of original and sorbed oxihumolite no significant As-O vibrations were observed, due to negligible content of sorbed As compounts.
机译:由于对植物,动物和人类健康的危害,砷引起了越来越多的环境关注。在水性体系中,在氧化条件下,砷以As〜V氧阴离子H_2AsO_4〜和HAsO_4〜(2-)为主。研究了使用无机和有机吸附剂通过吸附工艺从水溶液中去除砷的可能性。经测试的无机吸附剂,煅烧的合成水滑石和煅烧的天然勃姆石,由于其晶体结构的变化,可以在实验室温度(20℃)和中性pH下从含水体系中除去As〜V化合物。它们能够以低吸附剂-溶液比(分别为1 g L〜(-1)和2.6 g L〜(-1))和较高浓度的AsO_4从水溶液中去除70%以上的As〜V化合物。初始溶液中的〜(3-)离子(约2.10〜(-3)mol L〜(-1))。即使在增加吸附剂溶液比(约20 g L〜(-1))和初始溶液中As的浓度明显降低的情况下,腐殖酸型吸附剂(即纯腐殖酸和软腐石)的效率仍然降低。在较高的pH值(约9)下,由于腐殖质在碱性溶液中的溶解性,吸附过程略有改善。吸附增量不超过初始As含量的50%。这些结果通过红外光谱证实。原始煅烧样品和吸附的无机吸附剂样品均显示出显着的As-O振动,而在原始和吸附的氧化hu石的光谱中,未观察到显着的As-O振动,这是因为吸附的As组分的含量可忽略不计。

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