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Impact of Nitrogen Fertilizer Applications on Surface Water Nitrate Levels within a Kenyan Tea Plantation

机译:氮肥应用对肯尼亚茶园地表水硝酸盐水平的影响

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摘要

Tea production in the Kenyan Rift Valley uses high rates of nitrogenous fertilizer. Nitrates can be discharged to water bodies through leaching and surface run-off. Nitrate levels above 10 mg/L NO3-–N cause methemoglobinemia which is fatal. A study to monitor changes in surface water nitrate levels was carried out in ten rivers within a Kenyan tea plantation for three years. Water samples were obtained before and after fertilizer application in 2004, 2005, and 2006. Nitrate-nitrogen (NO3-–N) was determined colorimetrically by the cadmium reduction method using HACH-DR 2400 dataloging spectrophotometer. For the three years, the highest nitrate-nitrogen levels were in river Temochewa in 2005 during the first fertilizer applications (4.9 mg/L to 8.2 mg/L). There was no established trend between surface water nitrate levels and the time of fertilizer applications; however, fertilizer application contributed to an increase in nitrate levels. The initial nitrate-nitrogen levels in most of the rivers were high, indicating that contamination could have been upstream; hence, further research is required to establish this. Nitrogen-nitrogen levels in the three years were below the maximum contaminant level of 10 mg/L NO3-–N; however, the rivers should be monitored frequently.
机译:肯尼亚裂谷茶叶生产采用高含氮肥料。硝酸盐可以通过浸出和表面耗尽排出水体。硝酸盐水平高于10 mg / l NO 3 - n原因是致命的甲肺腺血症。在肯尼亚茶园内的十条河内进行了监测地表水硝酸盐水平变化的研究三年。在2004年,2005年,2006年和2006年之前和之后获得了水样。通过使用HACH-DR 2400 Dataloging分光光度计比色比例测定硝酸氮(NO3-N)。三年来,在第一杆菌应用(4.9mg / L至8.2 mg / L)期间,2005年硝酸氮水平最高氮水平均为氮氮水平。表面水硝酸盐水平与施肥应用时间之间没有建立的趋势;然而,肥料应用有助于硝酸盐水平的增加。大多数河流中的初始硝酸盐 - 氮水平高,表明污染可能是上游;因此,需要进一步研究来建立这一点。三年内的氮氮水平低于10 mg / l NO3 - n的最大污染物水平;但是,河流应该经常监测。

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