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Understanding the Impact of Intensive Horticulture Land-Use Practices on Surface Water Quality in Central Kenya

机译:了解肯尼亚中部集约化园艺土地使用做法对地表水水质的影响

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Rapid expansion of commercial horticulture production and related activities contribute to declining surface water quality. The study sought to understand the impacts on select rivers in Laikipia and Meru, production hotspots. The specific aims were (1) to identify prevailing surface water quality by examining variations of 14 physico-chemical parameters, and (2) to categorize measured surface water quality parameters into land use types highlighting potential pollutant source processes. Water samples were collected in July and August 2013 along 14 rivers in the study area. The data were analyzed using principal component analysis (PCA) and discriminant analysis (DA). Principal components (PCs) explained 70% of the observed total variability of water quality, indicating a prevalence of heavy metal traces (cadmium, phosphate, and zinc). These were linked to the rigorous use of phosphate fertilizers and copper-based agrochemicals in intensive farming. DA provided four significant (p 0.05) discriminant functions, with 89.5% correct assignment enabling the association of land use with observed water quality. Concentrations of dissolved solids, electro-conductivity, and salinity spiked at locations with intensive small-scale and large-scale horticulture. Understanding the impacts of intensive commercial horticulture and land use practices on water quality is critical to formulating ecologically sound watershed management and pollution abatement plans.
机译:商业园艺生产和相关活动的迅速扩大导致地表水水质下降。该研究旨在了解对生产热点Laikipia和Meru的部分河流的影响。具体目标是(1)通过检查14种物理化学参数的变化来确定主要的地表水水质,以及(2)将测得的地表水水质参数归类为土地利用类型,以突出潜在的污染物源过程。 2013年7月和2013年8月在研究区域的14条河流中收集了水样。使用主成分分析(PCA)和判别分析(DA)分析数据。主成分(PC)解释了所观察到的水质总变化的70%,表明重金属痕迹(镉,磷酸盐和锌)的流行。这些与集约化养殖中严格使用磷酸盐肥料和铜基农药有关。 DA提供了四个重要的(p <0.05)判别功能,正确分配的89.5%使土地利用与观测到的水质相关联。在密集的小规模和大规模园艺中,溶解固体的浓度,电导率和盐度会升高。了解集约化商业园艺和土地使用方式对水质的影响对于制定生态上合理的流域管理和减少污染计划至关重要。

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