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Use of two aquatic macrophytes for the removal of heavy metals from synthetic medium

机译:使用两种水生植物从合成培养基中去除重金属

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The aim of the present study was investigation of two aquatic plants efficiency, duckweed Lemna gibba (floating-leaved hydrophyte) and coontail Ceratophyllum demersum L. (freefloating hydrophyte) on Cd and Ni removal from synthetic aqueous. Both aquatic plants were grown under greenhouse conditions in pots containing a nutrient solution amended with increasing doses of each of the contaminants tested (0, 1, 2, 4 and 6 mg L~(-1)) in a completely randomized design with three replications. Plants dry matter production as well as heavy metals and nutrient tissue concentrations were measured at the end of the experiment. The results showed that increasing heavy metal concentrations in nutrient solution caused a decrease in both plants biomasses. L. gibba reduced the contamination level which was up to 91% for Cd and 50% for Ni. In addition, the efficiency of C. demersum was 82.01% for Cd and 52.5% for Ni. L. gibba uptake both heavy metals (5.07 mg for Ni and 9.70 mg for Cd) but C. demersum accumulated both heavy metals (4.5 mg for Ni and 3.87 mg for Cd) less and slower for Cd removal but a little more and faster for Ni than the other plant. The Ni and Cd BCF values for L. gibba ranged between 270.19 to 638.95 and 942.79 to 5093.27, respectively; and for C. demersum ranged between 104.16 to 200 and 75 to 707.92, respectively. The high efficiency of L. gibba and C. demersum in Cd and Ni removal from synthetic medium makes it a proper treatment method.
机译:本研究的目的是研究两种水生植物对浮游植物Lemna gibba和浮游水生植物Ceratophyllum demersum L.浮游植物的去除水中镉和镍的效率。两种水生植物均在温室条件下于含有营养液的盆中生长,该营养液经逐渐增加剂量的每种被测污染物(0、1、2、4和6 mg L〜(-1))修正,并完全随机设计,重复三次。在实验结束时测量了植物干物质的产生以及重金属和营养组织的浓度。结果表明,营养液中重金属浓度的增加导致两种植物生物量的减少。 L. gibba降低了污染水平,镉的污染水平高达91%,镍的污染水平高达50%。另外,C。demersum的Cd效率为82.01%,Ni效率为52.5%。 L. gibba吸收两种重金属(Ni为5.07 mg,Cd为9.70 mg),而C. demersum吸收这两种重金属(Ni为4.5 mg,Cd为3.87 mg)时,其去除Cd的量较少且较慢,但对于Cd的去除量则更快。镍比其他植物。 g。gibba的Ni和Cd BCF值分别在270.19至638.95和942.79至5093.27之间。对于C. demersum,其范围分别为104.16至200和75至707.92。 gibba和C. demersum的高效去除合成培养基中的Cd和Ni使其成为一种合适的处理方法。

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