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Impacts of agrochemical fertilizer on the aquatic environment of paddy fields in Vietnam

机译:农药对越南稻田水环境的影响

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To evaluate the impacts of agrochemical fertilizer application on the aquatic environment of paddy fields in tropical regions, 7.04 ha of paddy field situated in northern Vietnam were selected as a study area. The fate of nutrient constituents was surveyed through a questionnaire as well as analytical observation. Taking the major environmental components of the paddy field into account, a mass-balance Row regarding fertilizing constituents such as nitrogen and phosphate was built up and used to estimate the contribution of fertilizer to paddy field water pollution. In the mass-flow analysis, the randomness of fertilizer used by local farmers is incorporated within the conventional input-output model. For the control volume of soil in 0-40 cm below paddy plot surface, the estimated average concentrations in soil were 1.8 ppm for inorganic nitrogen and 1.3 ppm for inorganic phosphate on the assumption of 50% non-excessive probability. From the reasonable consistency of the deduced concentrations of nutrients with observed ones, not only the mass balance of fertilizing substances but also the impacts of fertilizer on the paddy field aquatic environment in Vietnam could be understood. On the results from nutrient mass-balance analysis, it was found that 11.3-13.3 kg N/ha would percolate into the underground aquifer that is linked to surface channel flow in the vicinity of the paddy plots and affect the irrigation water quality. The nutrient portion in the materials harvested as grain and straw occupied 58% of total dosed nitrogen and 75.6% of total supplied phosphorus. [References: 14]
机译:为了评估化肥施用对热带地区稻田水环境的影响,选择了越南北部7.04公顷稻田作为研究区域。通过问卷调查和分析观察调查了营养成分的命运。考虑到稻田的主要环境成分,建立了有关氮,磷等肥料成分的质量平衡行,并用于估算肥料对稻田水污染的贡献。在质量流量分析中,将当地农民使用的肥料的随机性纳入常规的投入产出模型中。对于稻田表面以下0-40厘米的土壤控制量,假设非过量概率为50%,则估计的土壤中无机氮平均浓度为1.8 ppm,无机磷酸盐为1.3 ppm。从推算出的养分浓度与观测值之间的合理一致性,不仅可以了解施肥物质的质量平衡,而且可以了解肥料对越南稻田水生环境的影响。根据营养物质量平衡分析的结果,发现11.3-13.3 kg N / ha会渗入地下蓄水层,该地下蓄水层与稻田附近的地面通道流有关,并影响灌溉水质量。谷物和稻草收获的物料中的营养成分占氮的总施用量的58%,磷的总供给占75.6%。 [参考:14]

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