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浮床虎杖对不同浓度铵盐的降解效果
引用本文:郑尧,胡庚东,裘丽萍,吴伟,孟顺龙,范立民,宋超,邴旭文,陈家长.浮床虎杖对不同浓度铵盐的降解效果[J].中国农学通报,2019,35(2):153-157.
作者姓名:郑尧  胡庚东  裘丽萍  吴伟  孟顺龙  范立民  宋超  邴旭文  陈家长
作者单位:中国水产科学研究院淡水渔业研究中心
基金项目:国家科技支撑计划“池塘养殖水质净化和修复技术研究与示范”(2015BAD13B03);现代农业产业技术体系专项“养殖水环境控制岗位科学 家”(CARS-46)。
摘    要:本研究旨在探究浮床虎杖对不同浓度氨氮的降解效果。通过室内大桶构建浮床虎杖,添加不同浓度组铵盐(0,1,5,10 mg/L)测定TN、NH4+-N、NO3--N、NO2--N、TP等水质指标。结果表明第5~13天4种不同浓度铵盐TN浓度下降,第17天升高;10 mg/L铵盐组NH4+-N浓度第5~13天下降;敞水区5和10 mg/L铵盐组NO3--N浓度先升高后降低,根系区分别在第5天和第9天达到峰值;10 mg/L铵盐组NO2--N浓度第5天升高至峰值第13天降至0;对照组TP浓度高于其他铵盐浓度组。浮床虎杖可在第9~13天内能造成TN、NH4+-N、NO3--N、NO2--N浓度下降,起到降解不同浓度铵盐的效果,但TP浓度降至0需要更长时间。

关 键 词:日照时数  日照时数  时空变化特征  山西  
收稿时间:2018/8/9 0:00:00
修稿时间:2018/10/18 0:00:00

Floating Bed Cultivation of Polygonum cuspidatum Degrades Ammonium Salt
Abstract:To study the degradation effect of floating bed cultivation of Polygonum cuspidatum on differentconcentration ammonium salt, the floating bed cultivation of Polygonum cuspidatum was constructed in big indoor bucket, the water quality indexes (TN, NH4+-N, NO3--N, NO2--N, TP) were tested by adding different concentrations ammonium salt. The results showed that the TN concentrations of four different concentrations of ammonium salt decreased from the 5th to the 13th day, and increased on the 17th d. The concentration of NH4+- N in the 10 mg/L ammonium salt group decreased from the 5th to the 13th day. The NO3--N concentration from the open water area group with 5 and 10 mg/L ammonium salt initially increased and then decreased, and those from the root zone reached the peak on the 5th and 9th day, respectively. The NO2--N concentration in the 10 mg/L ammonium salt group increased to the peak on the 5th day, while it dropped to 0 on the 13th day. The TP concentration in the control group was higher than those of the other groups. The concentration of TN, NH4+-N, NO3--N and NO2--N can be degraded by floating bed cultivation of P. cuspidatum from the 5th to the 13th day, while the concentration of TP dropping to 0 needs more time.
Keywords:water quality  Polygonum cuspidatum  ammonium salt  degradation
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