...
首页> 外文期刊>Environmental Science and Pollution Research >Temporal-spatial variations and influencing factors of nitrogen in the shallow groundwater of the nearshore vegetable field of Erhai Lake, China
【24h】

Temporal-spatial variations and influencing factors of nitrogen in the shallow groundwater of the nearshore vegetable field of Erhai Lake, China

机译:洱海近岸蔬菜浅层地下水氮素的颞空间变化及影响因素

获取原文
获取原文并翻译 | 示例
           

摘要

AbstractNitrogen export from the nearshore vegetable field of Erhai Lake seriously threatens the water quality of Erhai Lake, which is the second largest highland freshwater lake in Yunnan Province, China. Among the nitrogen flows into Erhai Lake, shallow groundwater migration is a major pathway. The nitrogen variation and influencing factors in the shallow groundwater of the nearshore vegetable field of Erhai Lake are not well documented. A 2-year field experiment was conducted to determine the concentrations of nitrogen species in the shallow groundwater and their influencing factors in the nearshore vegetable field of Erhai Lake. The results showed that concentrations of TN, NO3?-N, and NO2?-N gradually increased with increasing elevation and distance from Erhai Lake, but the opposite was observed for NH4+-N in the shallow groundwater. The concentrations of nitrogen species in the rainy season were greater than those in the dry season. NO3?-N accounted for more than 79% of total nitrogen in shallow groundwater. Redundancy analysis showed that more than 70% of the temporal and spatial variations of nitrogen concentrations in the shallow groundwater were explained by shallow groundwater depth, and only approximately 10% of variation was explained by the factors of soil porosity, silt clay content of soil, and NH4+-N and NO3?-N concentrations of soil (p?]]>
机译: 3 <上标>? -N,而NO <下标> 2 -N逐渐增加随着距离洱湖的高度和距离增加,但在浅地下水中观察到NH <下标> 4 <上标> + -N的相反。雨季中氮气种类的浓度大于干燥季节的浓度。否<下标> 3 <上标>? -N占浅地下水中总氮的79%以上。冗余分析表明,浅层地下水中,浅层地下水中的氮浓度的70%以上的时间和空间变化是通过浅层地下水深度来解释的,并且通过土壤孔隙率,淤泥粘土含量的因素解释了大约10%的变化,和nh <下标> 4 + -n和no 3 -n浓度的土壤(<重点类型=“斜体“> P ?<?0.05)。浅地下水深度对浅地下水中的氮浓度的影响比其他因素更高。这一结果将强烈支持进一步研究关于减少浅地下水中氮浓度的管理实践的进一步研究。 ]]>

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