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Biofilm and Trace Metals Removal from Waste Aqueous Effluent Using Moringa oleifera-Silver Nitrate Microparticles

机译:使用辣木-硝酸银微粒从废水中去除生物膜和痕量金属

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The present research investigated the synthesis of a novel adsorbent by combining Moringa oleifera and silver nitrate (AgNO3). The chemical components of the pre-adsorbent and adsorbent composites were characterized using Fourier Transform Infra-red spectroscopy (FTIR). The equilibrium adsorption capacity (Qe) for Cu, Mn and Fe in DMSH2O adsorbent was 0.04, 0.04 and 0.04 mg/g, respectively, while that for Cu, Mn and Fe for DMSC2H5OH adsorbent was also 0.04, 0.04 and 0.04 mg/g, respectively. The results indicate that the adsorbent was effective in removing Cu more than Mn and Fe from the aqueous salt mixture. Furthermore, the results observed for the biofilm experiment revealed that the M. oleifera-AgNO3 biocidal action was effective in deactivating oxidizable components in the wastewater system after 8 days. T-test of difference=0, at df=12, P<.05 for metal adsorption and t-test of difference=0.04, at df=8, P<.05 for COD removal indicate no statistical significant difference in metals adsorbed and COD removed in the waste stream. The above findings have demonstrated that the synthesized M. oleifera-AgNO3 adsorbent would be effective in cleaning-up waste streams contaminated with microbes and trace metals.
机译:本研究研究了辣木和硝酸银(AgNO3)的合成新型吸附剂。使用傅立叶变换红外光谱(FTIR)对预吸附剂和吸附剂复合材料的化学成分进行了表征。 DMSH2O吸附剂对Cu,Mn和Fe的平衡吸附容量(Qe)分别为0.04、0.04和0.04 mg / g,而DMSC2H5OH吸附剂对Cu,Mn和Fe的平衡吸附容量也为0.04、0.04和0.04 mg / g,分别。结果表明,该吸附剂可有效地从含水盐混合物中除去Cu,而不是Mn和Fe。此外,在生物膜实验中观察到的结果表明,油分枝杆菌-AgNO3的杀菌作用在8天后能有效地使废水系统中的可氧化成分失活。差异的t检验= 0,在df = 12时,金属吸附P <.05;差异的t检验= 0.04,在df = 8时,COD去除P <.05,表明金属吸附量无统计学差异。在废物流中去除了化学需氧量。上述发现表明,合成的油橄榄分枝杆菌-AgNO 3吸附剂将有效清除被微生物和微量金属污染的废物流。

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