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首页> 外文期刊>African Journal of Biotechnology >Adsorption of heavy metal from landfill leachate by wasted biosolids
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Adsorption of heavy metal from landfill leachate by wasted biosolids

机译:浪费的生物固体对垃圾渗滤液中重金属的吸附

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The adsorption capacity of wasted solids that contained dead fungal biomass (Phanerochaete chrysosporium) was studied to remove cadmium, copper, zinc and iron from synthetic water and leachate. The biomass was produced due to the experiments conducted for bioconversion of wastewater for lignin peroxydase production in the laboratory. In the screening experiments, the maximum cadmium (Cd) adsorption from synthetic water was 28.81% at 18 h. Meanwhile, adsorption of copper (Cu), zinc (Zn) and iron (Fe) reached maximum condition after 5 h with 41.29, 58.94 and 52.03% removal efficiency, respectively. However, the concentration of Cd, Cu and Zn was not detected in the leachate but Fe was found to be in high concentration (184 mg/L) in raw leachate collected from a municipal landfill site. Therefore, the effects of biomass dosage, contact time, pH and agitation speed were observed for optimal adsorption of iron from leachate. Optimum removal of iron from leachate was 45.56% in every 1 L of leachate after 1/50 dilutions. The optimized biomass dosage, contact time, pH and agitation speed were 750 mg/L, 4 h, pH 5, and 150 rpm, respectively. The results of this?study?indicated that the biomass generated from the laboratory experiments could be used, before discarding, to remove iron from leachate which is one of the main problems at the landfill sites.
机译:研究了含有死菌生物质(Phanerochaete chrysosporium)的废固体的吸附能力,以从合成水和渗滤液中去除镉,铜,锌和铁。由于在实验室中进行了废水生物转化以生产木质素过氧化物酶的实验,因此产生了生物质。在筛选实验中,合成水在18 h时最大吸附镉(Cd)为28.81%。同时,吸附5h后,铜(Cu),锌(Zn)和铁(Fe)的吸附达到最大状态,去除效率分别为41.29、58.94和52.03%。但是,在渗滤液中未检测到Cd,Cu和Zn的浓度,但从市政垃圾填埋场收集的未处理渗滤液中的Fe含量较高(184 mg / L)。因此,观察到生物质剂量,接触时间,pH和搅拌速度对浸出铁最佳吸附铁的影响。在1/50稀释后,每1 L渗滤液中渗滤液中铁的最佳去除率为45.56%。优化的生物量,接触时间,pH和搅拌速度分别为750 mg / L,4 h,pH 5和150 rpm。这项研究的结果表明,实验室实验产生的生物质在丢弃之前可以用于从渗滤液中去除铁,这是垃圾填埋场的主要问题之一。

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