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首页> 外文期刊>African Journal of Biotechnology >Dynamics of zinc sorption from aqueous matrices using plantain (Musa sp.) peel biomass
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Dynamics of zinc sorption from aqueous matrices using plantain (Musa sp.) peel biomass

机译:使用车前草(Musa sp。)果皮生物质从水性基质中吸附锌的动力学

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The influence of climate change on freshwater resources has undoubtedly affected the availability and quality of freshwater resources. However, the demand for water for agricultural, domestic, industrial and recreational purposes increases by the day globally. The need for remediation and reuse of large volumes of industrial wastewaters being generated globally therefore cannot be over-emphasized. The potential ability of plantain peel (Musa?sp.) biomass to remove metal ions (Zn2+) from aqueous matrices was studied. Influence of contact time, adsorbent weight, pH, metal concentration, temperature and shaking speed were investigated. Physico-chemical characterization (proximate and infra-red spectroscopic analyses) of the biomass was carried out to elucidate information on adsorption mechanisms. Desorption studies were also performed to determine possible recovery potential of Zn2+?and the re-usability of the biomass. Zn2+?adsorption increased with increasing metal concentration in solution, adsorbent weight and contact period. Optimal pH value for adsorption was 3 after which Zn2+?uptake decreased. Corresponding values for contact time, biomass weight and Zn2+?concentration were 150 min, 24 g/L and 600 mg/L, respectively. Experimental data fitted into Freundlich’s isotherm. Carboxylic and hydroxyl groups were among the prominent functional groups on the surface of the biomass. Desorption of Zn2+?from the biomass was less than 10%. Alternative compounds may be further investigated to improve on metal desorption from plantain peel biomass. This cannot be over-emphasized if the several advantages of this biomass (lesser cost than for synthetic resins, abundance and biodegradability) will be utilized for industrial applicability especially in emerging economies like Africa.
机译:气候变化对淡水资源的影响无疑影响了淡水资源的可获得性和质量。但是,全球农业,家庭,工业和娱乐目的对水的需求日益增长。因此,对全球产生的大量工业废水进行补救和再利用的需求不能过分强调。研究了车前草皮(Musa?sp。)生物量从水性基质中去除金属离子(Zn2 +)的潜在能力。研究了接触时间,吸附剂重量,pH,金属浓度,温度和振荡速度的影响。对生物质进行了物理化学表征(近红外光谱分析和红外光谱分析),以阐明有关吸附机理的信息。还进行了解吸研究,以确定可能的Zn2 +α的回收潜力和生物质的可再利用性。随着溶液中金属浓度,吸附剂重量和接触时间的增加,对Zn2 +的吸附也增加。吸附的最佳pH值为3,此后Zn2 +吸收减少。接触时间,生物量重量和Zn 2+浓度的相应值分别为150分钟,24g / L和600mg / L。实验数据符合Freundlich的等温线。羧基和羟基是生物质表面上的主要官能团。 Zn 2+从生物质中的解吸小于10%。可以进一步研究其他化合物,以改善大蕉皮生物量中金属的解吸。如果将这种生物质的几个优点(比合成树脂的成本低,丰富和可生物降解的优点)被用于工业上,尤其是在非洲等新兴经济体中,则这不能过分强调。

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