...
首页> 外文期刊>Journal of Hydrology >Forms of trace arsenic, cesium, cadmium, and lead transported into river water for the irrigation of Japanese paddy rice fields
【24h】

Forms of trace arsenic, cesium, cadmium, and lead transported into river water for the irrigation of Japanese paddy rice fields

机译:痕量砷,铯,镉和铅的形式运送到日本稻田灌溉中的河水中

获取原文
获取原文并翻译 | 示例
           

摘要

In this study, we focus on the behavior of geogenic, toxic trace elements, particularly As, Cs, Cd, and Pb, during their transportation in two rivers for irrigation commonly used in monsoon Asia; one river originates from an active volcano, Mt. Asama, and the other originates from a currently inactive volcano, Yatsugatake Mountains in Nagano, Japan. These rivers were investigated to understand the role of river water as a pollutant of rice and other aquatic plants (via irrigation) and aquatic animals. The results indicated that the behavior of toxic trace elements in river water are likely controlled by their interactions with particulate Fe, Al, and Ti compounds. The majority of Pb and Cd is transported as particulate matter with Fe, Al, and Ti, while the majority of As is transported in the dissolved form, predominantly as arsenate, with low abundance of particulate matter. Cs is transported either as the dissolved form or as particulate matter in both rivers. The investigated elements are transported in the rivers as particulate and dissolved forms, and the ratio of these forms is controlled by the pH and presence of particulate Fe, Al, and Ti phases in the river water. With respect to Cs in both rivers, the parameter governing the concentration and transportation of Cs, in the bimodal form (i.e., particulate and dissolved forms), through the river possibly shifts from sorption to pH by particulate Fe-Al-Ti, according to the abrupt increase in the concentration of Cs in the river. The chemical attraction of particulate Fe-Al-Ti for Cs is weaker than that for Pb and Cd, indicating that the lower electronegativity of Cs weakens the chemical attraction on a colloid for the competitive sorption with the other trace elements. The different relationships between As and Fe in the river and in the irrigation water and soil water, as well as those in paddy rice, suggested that As in paddy rice is not directly derived from As in the irrigation water from the river under fl
机译:在这项研究中,我们专注于造环,毒性微量元素,特别是CS,CD和Pb的行为,在两条河流中运输,季风亚洲常用于季风灌溉;一条河流起源于活跃的火山,澳大利亚州亚马亚,而另一个源于目前非活动的火山,日本长野的Yatsugatake山。调查这些河流以了解河水作为水稻和其他水生植物(通过灌溉)和水生动物的污染物的作用。结果表明,河水中有毒微量元素的行为可能是通过与颗粒Fe,Al和Ti化合物的相互作用来控制。大多数Pb和Cd用Fe,Al和Ti被作为颗粒物质运输,而大部分以溶解形式运输,主要是砷酸盐,具有低丰度的颗粒物质。将Cs作为溶解形式或在两个河流中作为颗粒物质传输。所研究的元件在河流中作为颗粒状和溶解形式运输,并且这些形式的比例通过河水中的pH和存在的pH和存在的颗粒Fe,Al和Ti阶段控制。关于河流中的CS,通过河流通过河流中的双峰形式(即颗粒状和溶解形式)的CS的浓度和运输的参数可能从颗粒FE-AL-TI从吸附到pH的pH转移到pH中。河流中Cs浓度的突然增加。对于CS的颗粒Fe-Al-Ti的化学吸引力弱于Pb和Cd的弱,表明Cs的较低电负性削弱了胶体上的化学吸引力,用于与其他微量元素的竞争吸附。在河流和灌溉水和土壤水中以及水稻中的不同关系,表明,如稻米在河流下的灌溉水中不直接衍生

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