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Portulaca grandiflora as green roof vegetation: Plant growth and phytoremediation experiments

机译:Portulaca Grandiflora作为绿色屋顶植被:植物生长和植物修复实验

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Finding appropriate rooftop vegetation may improve the quality of runoff from green roofs. Portulaca grandiflora was examined as possible vegetation for green roofs. Green roof substrate was found to have low bulk density (360.7kg/m(3)) and high water-holding capacity (49.4%), air-filled porosity (21.1%), and hydraulic conductivity (5270mm/hour). The optimal substrate also supported the growth of P. grandiflora with biomass multiplication of 450.3% and relative growth rate of 0.038. Phytoextraction potential of P. grandiflora was evaluated using metal-spiked green roof substrate as a function of time and spiked substrate metal concentration. It was identified that P. grandiflora accumulated all metals (Al, Cd, Cr, Cu, Fe, Ni, Pb, and Zn) from metal-spiked green roof substrate. At the end of 40days, P. grandiflora accumulated 811 +/- 26.7, 87.2 +/- 3.59, 416 +/- 15.8, 459 +/- 15.6, 746 +/- 20.9, 357 +/- 18.5, 565 +/- 6.8, and 596 +/- 24.4mg/kg of Al, Cd, Cr, Cu, Fe, Ni, Pb and Zn, respectively. Results also indicated that spiked substrate metal concentration strongly influenced metal accumulation property of P. grandiflora with metal uptake increased and accumulation factor decreased with increase in substrate metal concentration. P. grandiflora also showed potential to translocate all the examined metals with translocation factor greater than 1 for Al, Cu, Fe, and Zn, indicating hyperaccumulation property.
机译:寻找合适的屋顶植被可能会从绿色屋顶提高径流的质量。 Portulaca Grandiflora被检查为绿色屋顶的可能​​植被。发现绿色屋顶基板具有较低的堆积密度(360.7kg / m(3))和高水储能(49.4%),充气孔隙率(21.1%)和液压导电性(5270mm /小时)。最佳基质还支持P. Grandiflora的生长生物量繁殖450.3%,相对生长速率为0.038。使用金属掺入的绿色屋顶基板作为时间和尖刺衬底金属浓度的函数评估P. Grandiflora的植物萃取潜力。鉴定了P. Grandiflora从金属掺入的绿色屋顶基板中累积了所有金属(Al,Cd,Cr,Cu,Fe,Ni,Pb和Zn)。在40天结束时,P. Grandiflora积累了811 +/- 26.7,87.2 +/- 3.59,416 +/- 15.8,459 +/-15.6,746 +/-20.9,357 +/-18.5,565 +/- 6.8和596 +/- 24.4mg / kg Al,Cd,Cr,Cu,Fe,Ni,Pb和Zn。结果还表明,尖刺底物金属浓度强烈影响金属蓄积性的金属累积特性,金属吸收增加,储存因子随着底物金属浓度的增加而降低。 P. Grandiflora还表明,对于Al,Cu,Fe和Zn,表明HyperAckulation属性的易位系数大于1的易位因子的可能性。

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