Impact assessment of heavy metals spiked waste water irrigation on metals accumulation and translocation in marigold (Tagetes patula L.)

P. Vignesh, D.S. Gurjar, K.G. Rosin, A.K. Tiwari, S.S. Rathore
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Abstract

A pot experiment was conducted to find out the impact assessment of heavy metals spiked wastewater irrigation on growth, keeping quality and productivity of marigold (Tagetes patula L., cv.Pusa Arpita) at Water Technology Centre of ICARIndian Agricultural Research Institute, New Delhi during Rabi season of 2020-21. Sevan treatments were takenas T-1: Sole Groundwater Irrigation without spiking of heavy metal, T-2: Sole Wastewater Irrigation without spiking of heavy metal, T-3: Wastewater Irrigation spiked with Cd (0.005ppm), Cr (0.05ppm), Ni (0.1ppm) and Pb (2.5ppm), T-4: Wastewater Irrigation spiked with Cd (0.01ppm), Cr (0.1ppm), Ni (0.2ppm) and Pb(5.0ppm), T-5: Wastewater Irrigation spiked with Cd (0.1ppm), Cr (0.1ppm), Ni (2ppm) and Pb (10ppm) , T-6: Wastewater Irrigation spiked with Cd (0.25ppm), Cr (2.5ppm),Ni (5ppm) and Pb (30ppm), T-7: Wastewater Irrigation spiked with Cd (0.5ppm), Cr (5.0ppm), Ni (10ppm) and Pb (50ppm). Results indicated that Ni, Cr, Cd and Pb concentrations in the root part ranged from 2.05 to 54.48, 13.67 to 86.35, 0.89 to 5.21 and 3.84 to 22 mg/kg, respectively and in shoot parts ranged from 9.3 to 63.05, 29.99 to 97.4,1.8 to 6.42 and 12.38 to 29.93mg/kg, respectively, in marigold under different treatments of heavy metals spiked wastewater irrigation. Heavy metal translocation factors (TF) ranged from 0.22 to 0.87, 0.47 to 0.88, 0.38 to 0.82 and 0.32 to 0.75 for Ni, Cr, Cd and Pb, respectively and bioaccumulation factors (BF) for heavy metals (Ni, Cr, Cd and Pb) were varied from 63.8 to 114.47, 39.76 to 72.18, 34.21 to 64.57 and 6.3 to 12.61, respectively, in marigold under different treatments of heavy metals spiked wastewater irrigation. However, long-term application of heavy metals rich wastewater in marigold needs to be monitored at different soil and climatic conditions.
重金属加标废水灌溉对万寿菊金属积累和转运的影响
通过盆栽试验,探讨了重金属加标废水灌溉对万寿菊生长、品质和生产力的影响。Pusa Arpita)在2020-21年拉比季节期间在新德里icari印度农业研究所水技术中心工作。采用T-1:单一地下水灌溉,不发生重金属污染;T-2:单一废水灌溉,不发生重金属污染;T-3:污水灌溉加Cd (0.005ppm)、Cr (0.05ppm)、Ni (0.1ppm)和Pb(2.5ppm); T-4:污水灌溉加Cd (0.01ppm)、Cr (0.1ppm)、Ni (0.2ppm)和Pb(5.0ppm); T-5:污水灌溉加Cd (0.1ppm)、Cr (0.1ppm)、Ni (2ppm)和Pb(10ppm);废水灌溉中添加了Cd (0.25ppm)、Cr (2.5ppm)、Ni (5ppm)和Pb (30ppm), T-7:废水灌溉中添加了Cd (0.5ppm)、Cr (5.0ppm)、Ni (10ppm)和Pb (50ppm)。结果表明:不同重金属加标废水灌溉处理下,金盏花根部Ni、Cr、Cd和Pb含量分别为2.05 ~ 54.48、13.67 ~ 86.35、0.89 ~ 5.21和3.84 ~ 22 mg/kg,茎部Ni、Cr、Cd和Pb含量分别为9.3 ~ 63.05、29.99 ~ 97.4、1.8 ~ 6.42和12.38 ~ 29.93mg/kg。不同重金属加标废水灌溉处理下,金盏花中Ni、Cr、Cd和Pb重金属转运因子(TF)分别为0.22 ~ 0.87、0.47 ~ 0.88、0.38 ~ 0.82和0.32 ~ 0.75,重金属(Ni、Cr、Cd和Pb)生物积累因子(BF)分别为63.8 ~ 114.47、39.76 ~ 72.18、34.21 ~ 64.57和6.3 ~ 12.61。但是,在不同的土壤和气候条件下,需要对含重金属废水在万寿菊中的长期应用进行监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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