Reeds and Reedmace Bioreactor Technique in Wastewater Heavy Metals Treatment, Rhizofiltration

Ramadan Aishah Mohamed, M. A. Elssaidi, Fatima Ali Ateya
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引用次数: 1

Abstract

Direct usage of plants to decrease pollution in groundwater and surface water, has gained popularity in both academic and applied fields. Phytoremediation is a low-cost technique and environmentally beneficial technology; heavy metals are absorbed via aquatic plants also usage aqua plants as fertilizer since Phragmites australis have the capability to regrow when harvesting. This would allow heavy metals to be removed from waterways over multiple growing seasons; there was a significant difference in the concentration of copper between reeds bioreactors before and after treatment. The concentration of Cu decreased from 4.00 to 0.0087 mg/L. The lower concentration of Cu values at end of the experiment might be due absorption of heavy metals from the contaminated media. The concentration of Zn was also lower than before planting having the lower concentration (0.0868 mg/L) in the fifth hydroponic. Reed has a high ability to reduce zinc concentration. The concentrations of Co and Cd decreased from 0.400 to 0.043 mg/L. As shown in the results, the levels of concentration of Cd in the reeds bioreactor were decreased. Also, the concentration of Mn decreased from 20 to 0.0219 mg/L. Moreover, Reedmace has the capacity to clean up contaminated water. The values of Cu concentration decreased from 4.00 to 0.0477 mg/L during the entire growth period. Zn from 20 to 0.1685 mg/L. Also, the concentrations of Co and Cd decreased from 0.400 to 0.043 mg/L. The concentration of Mn decreased from 20 to 0.0133 mg/L. The efficiency of reeds bioreactor for heavy metals removal in the following sequence: Mn (99.89%) > Cu (99.78%) > Zn (99.65%) > Co (89.2%) > Cd (86.08%). On the other hand, the sequence of removal efficiency of the Reedmace bioreactor was in the following sequence: Mn (99.93%) > Zn (99.15%) > Cu (98.81%) > Mn (89.25%) > Cd (88.40%).
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芦苇和芦苇生物反应器技术在废水重金属处理中的应用,根茎过滤
直接利用植物来减少地下水和地表水的污染,在学术和应用领域都得到了广泛的应用。植物修复技术是一种低成本、环保的技术;重金属通过水生植物吸收,也利用水生植物作为肥料,因为芦苇在收获时具有再生能力。这将允许重金属在多个生长季节从水道中去除;处理前后芦苇生物反应器中铜的浓度有显著差异。Cu浓度由4.00 mg/L降至0.0087 mg/L。实验结束时Cu值浓度较低可能是由于从污染介质中吸收重金属所致。锌的浓度也低于种植前,其中第五次水培的浓度较低(0.0868 mg/L)。芦苇具有很强的降低锌浓度的能力。Co、Cd浓度由0.400 mg/L降至0.043 mg/L。结果表明,芦苇生物反应器中Cd的浓度水平有所降低。Mn浓度由20 mg/L降至0.0219 mg/L。此外,Reedmace有能力清理受污染的水。在整个生长过程中,Cu浓度从4.00 mg/L下降到0.0477 mg/L。锌从20 ~ 0.1685 mg/L。Co、Cd浓度由0.400 mg/L降至0.043 mg/L。Mn浓度由20 mg/L降至0.0133 mg/L。芦苇生物反应器对重金属的去除率顺序为:Mn (99.89%) > Cu (99.78%) > Zn (99.65%) > Co (89.2%) > Cd(86.08%)。另一方面,Reedmace生物反应器的去除率顺序为:Mn (99.93%) > Zn (99.15%) > Cu (98.81%) > Mn (89.25%) > Cd(88.40%)。
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