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Experimental study on water-saving and emission-reduction effects of controlled drainage technology 被引量:4
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作者 Meng-hua Xiao Xiu-jun Hu Lin-lin Chu 《Water Science and Engineering》 EI CAS CSCD 2015年第2期114-120,共7页
Field experiments and laboratory analysis were carried out to determine the effects of controlled drainage(CTD) and conventional drainage(CVD) technologies on drainage volume, concentrations of NH4^+ -N, NO3^-N, ... Field experiments and laboratory analysis were carried out to determine the effects of controlled drainage(CTD) and conventional drainage(CVD) technologies on drainage volume, concentrations of NH4^+ -N, NO3^-N, and total phosphorus(TP), nitrogen and phosphorus losses, rice yield,and water utilization efficiency. Results show that CTD technology can effectively reduce drainage times and volume; NH4^+ -N, NO3^-N, and TP concentrations, from the first to the fourth day after four rainstorms decreased by 28.7%e46.7%, 37.5%e47.5%, and 22.7e31.2%, respectively,with CTD. These are significantly higher rates of decrease than those observed with CVD. CTD can significantly reduce nitrogen and phosphorus losses in field drainage, compared with CVD; the reduction rates observed in this study were, respectively, 66.72%, 55.56%, and 42.81% for NH4^+ -N, NO3^-N, and TP. Furthermore, in the CTD mode, the rice yield was cut slightly. In the CVD mode, the water production efficiencies in unit irrigation water quantity, unit field water consumption, and unit evapotranspiration were, respectively, 0.85, 0.48, and 1.22 kg/m^3, while in the CTD mode they were 2.91, 0.84, and 1.61 kg/m^3 din other words, 3.42, 1.75, and 1.32 times those of CVD. Furthermore, the results of analysis of variance(ANOVA) show that the indicators in both the CVD and CTD modes, including the concentrations of NH4^+ -N, NO3^-N, and TP, the losses of NH4^+ -N, NO3^-N, and TP, irrigation water quantity, and water consumption, showed extremely significant differences between the modes, but the rice yield showed no significant difference. 展开更多
关键词 Controlled drainage nitrogen phosphorus Rice yield Drainage volume water utilization efficiency
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农村生活污水资源化利用模式探索及示范研究 被引量:4
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作者 李现瑾 魏浩斌 +3 位作者 孙洪芹 房慧德 华子雯 刘新宇 《市政技术》 2023年第10期69-74,117,共7页
在国家“双碳”政策背景下,针对农村生活污水中丰富的氮、磷及水资源未得到有效利用的现状,充分考虑黑水、灰水特性及不同季节污水回用量,提出厕所粪污液态肥生态利用、水和氮磷协同资源化、尾水循环利用模式。研究发现,水和氮磷协同资... 在国家“双碳”政策背景下,针对农村生活污水中丰富的氮、磷及水资源未得到有效利用的现状,充分考虑黑水、灰水特性及不同季节污水回用量,提出厕所粪污液态肥生态利用、水和氮磷协同资源化、尾水循环利用模式。研究发现,水和氮磷协同资源化及发酵后的粪污对种植土壤肥力的增加有重要作用,同时可降低污水治理能耗,适用于具有水资源和氮、磷补充需求等的应用场景。 展开更多
关键词 农村生活污水 资源化利用 粪污发酵 水和氮磷协同利用 尾水循环利用
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