首页> 外文期刊>Frontiers in Chemistry >Effects of Changing pH, Incubation Time, and As(V) Competition, on F? Retention on Soils, Natural Adsorbents, By-Products, and Waste Materials
【24h】

Effects of Changing pH, Incubation Time, and As(V) Competition, on F? Retention on Soils, Natural Adsorbents, By-Products, and Waste Materials

机译:pH值变化,孵育时间和As(V)竞争对F?的影响。保留在土壤,天然吸附剂,副产品和废料上

获取原文
           

摘要

The purpose of this work was to elucidate the repercussion of changing pH, incubation time and As(V) competition on fluoride (F-) sorption on forest and vineyard soil samples, pyritic and granitic materials, as well as on the by-products pine sawdust, oak wood ash, mussel shell ash, fine and coarse mussel shell, and slate processing waste fines. To reach this end, the methodological approach was based on batch-type experiments. The results indicate that, for most materials, F- sorption was very high at the start, but was clearly diminished when the pH value increased. However, oak wood ash and shell ash showed high F- sorption even at alkaline pH, and pine sawdust showed low F- sorption for any pH value. Specifically, F- sorption was close to 100% for both ashes at pH <6, and around 70% at pH 10, while for forest soil it was close to 90% at pH <2, and around 60% at pH values near 8. Regarding the effect of incubation time on F- sorption, it was very low for both soils, pyritic material, granitic material and both kinds of ashes, as all of them showed very rapid F- sorption from the start, with differences being lesser than 10% between sorption at 30 min and 1 month of incubation. However, sawdust and slate fines sorbed 20% of added F- in 30 minutes, remaining constant up to twelve hours, and doubling after 30 days. And finally, mussel shell sorbed 20% at 30 minutes, increasing to close to 60% when incubation time was 30 days. This means that some of the materials showed a first sorption phase characterized by rapid F- sorption, and a slower sorption in a second phase. As regards the effect of the presence of As(V) on F- sorption, it was almost negligible, indicating the absence of competition for sorption sites. In view of that all, these results could aid to appropriately manage soils and by-products when focusing on F- removal, in circumstances where pH value changes, contact time vary from hours to days, and potential competition between F- and As(V) could take place.
机译:这项工作的目的是阐明改变pH值,温育时间和As(V)竞争对森林和葡萄园土壤样品,黄铁矿和花岗石材料以及松木副产品上氟化物(F-)吸附的影响。锯末,橡木灰,贻贝壳灰,细和粗贻贝壳,以及板岩加工废料。为了达到这个目的,该方法学方法基于批处理型实验。结果表明,对于大多数材料,开始时F的吸附很高,但当pH值增加时,F的吸附明显降低。但是,橡木灰和壳灰即使在碱性pH值下也显示出高F-吸附,而松木屑在任何pH值下均显示出低F-吸附。具体而言,在pH <6时,两种灰分的F吸附率均接近100%,在pH 10时,其F吸附率约为70%,而对于森林土壤,pH <2时,其F吸附率接近90%,在pH值接近8时,其吸附率约为60%。关于孵育时间对F-吸附的影响,对于土壤,黄铁矿物质,花岗石物质和两种灰烬而言,它的吸收率都很低,因为它们从一开始就显示出非常快的F-吸附,差异小于在30分钟到孵育1个月之间的吸附量为10%。但是,木屑和板岩屑在30分钟内吸收了所添加F-的20%,在12小时内保持恒定,并在30天后增加了一倍。最后,贻贝壳在30分钟时吸收了20%,在孵化时间为30天时增加到接近60%。这意味着某些材料表现出以快速F吸附为特征的第一吸附相,而在第二相中则表现为较慢的吸附。关于As(V)的存在对F-吸附的影响,几乎可以忽略不计,表明没有竞争吸附位。鉴于所有这些结果,当pH值变化,接触时间从数小时到数天变化以及F-和As(V )可能会发生。

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