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Nanoparticles based Permeable Reactive Barriers as an Eco-efficient Technology for nitrate remediation in soil and groundwater

机译:基于纳米颗粒的渗透性反应屏障,是一种生态高效的土壤和地下水硝酸盐修复技术

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摘要

The need to increase agricultural yield led, among others, to an increase in the consumption of nitrogen based fertilizers. As a consequence, there are excessive concentrations of nitrates, the most abundant of the reactive nitrogen (Nr) species, in several areas of the world.The demographic changes and projected population growth for the next decades, and the economic shifts which are already shaping the near future are powerful drivers for a further intensification in the use of fertilizers, with a predicted increase of the nitrogen loads in soils. Nitrate easily diffuses in the subsurface environments, portraying high mobility in soils. Moreover, the presence of high nitrate loads in water has the potential to cause an array of health dysfunctions, such as methemoglobinemia and several cancers. Permeable Reactive Barriers (PRB) placed strategically relatively to the nitrate source constitute an effective technology to tackle nitrate pollution. Ergo, PRB avoid various adverse impacts resulting from the displacement of reactive nitrogen downstream along water bodies. A four stages literature review was carried out in 34 databases. Initially, a set of pertinent key words were identified to perform the initial databases searches. Then, the synonyms of those initial key words were used to carry out a second set of databases searches. The third stage comprised the identification of other additional relevant terms from the research papers identified in the previous two stages. Again, databases searches were performed with this third set of key words. The final step consisted of the identification of relevant papers from the bibliography of the relevant papers identified in the previous three stages of the literature review process. The set of papers identified as relevant for in-depth analysis were assessed considering a set of relevant characterization variables.
机译:除其他外,增加农业产量的需求导致氮基肥料的消费增加。结果,世界上一些地区硝酸盐浓度过高,这是反应性氮(Nr)种类中最丰富的。未来几十年的人口结构变化和预计的人口增长以及已经形成的经济变化在不久的将来,随着肥料中氮含量的预计增加,肥料的使用将进一步增加。硝酸盐很容易在地下环境中扩散,说明土壤中的迁移率很高。此外,水中高硝酸盐含量的存在有可能引起一系列健康功能障碍,例如高铁血红蛋白血症和几种癌症。在战略上相对于硝酸盐源放置的渗透性反应屏障(PRB)是解决硝酸盐污染的有效技术。 Ergo,PRB避免了由于反应性氮沿水体向下游位移而造成的各种不利影响。在34个数据库中进行了四个阶段的文献综述。最初,确定了一组相关的关键字来执行初始数据库搜索。然后,使用这些初始关键字的同义词进行第二组数据库搜索。第三阶段包括从前两个阶段确定的研究论文中确定其他附加的相关术语。再次,使用第三组关键词进行数据库搜索。最后一步包括从文献回顾过程的前三个阶段中确定的相关论文的参考书目中鉴定相关论文。考虑到一组相关的表征变量,对确定为与深入分析相关的一组论文进行了评估。

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