2016
DOI: 10.2489/jswc.71.4.98a
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Current patterns and future perspectives of best management practices research: A bibliometric analysis

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Cited by 12 publications
(3 citation statements)
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References 33 publications
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“…Exploration of mechanism. Zhang [8] studied the non-point source pollution which caused by the agricultural chemical conversion among different medium based on the theory of soil hydrological interface process, and analyzed the interaction among rainfall, surface runoff and soil and the interaction between soil water and ground water. He also analyzed the forming law of the agricultural non-point source pollution in Liaoxi liable-drought region.…”
Section: Research Progressmentioning
confidence: 99%
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“…Exploration of mechanism. Zhang [8] studied the non-point source pollution which caused by the agricultural chemical conversion among different medium based on the theory of soil hydrological interface process, and analyzed the interaction among rainfall, surface runoff and soil and the interaction between soil water and ground water. He also analyzed the forming law of the agricultural non-point source pollution in Liaoxi liable-drought region.…”
Section: Research Progressmentioning
confidence: 99%
“…Li [16] used AnnAGNPS (Annualized Agricultural Nonpoint Source) to study the agricultural non-point source pollution in Shuangyang reservoir catchment area of Jilin province in 2006 and the results showed that TN, TP and the sediment load was 342 t•a -1 , 26 t•a -1 and 43692 t•a -1 respectively. Zhang [8] utilized the mathematical model of describing the production process and considered the Hetao small watershed of western Liaoning as the research object and the agricultural non-point source pollution load calculation based on catchment unit was given.…”
Section: Research Progressmentioning
confidence: 99%
“…There has been a global surge in research validating the efficacy of NbSs in improving water quality and reducing stormwater volume [20,21]. For instance, Liu et al [22] examined the impacts of various NbS approaches at the watershed level, and their study found that different levels and combinations of NBS practices reduced runoff volume by 0 to 26.47%, TN by 0.30 to 34.20%, TP by 0.27 to 47.41%, TSS by 0.33 to 53.59%, Pb by 0.30 to 60.98%, BOD by 0 to 26.70%, and COD by 0 to 27.52%.…”
Section: Introductionmentioning
confidence: 99%