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Zinc abatement from simulated and industrial wastewaters using sugarcane biomass

机译:利用甘蔗生物质减少模拟废水和工业废水中的锌

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摘要

The use of heavy metals and their compounds in industrial applications has resulted in their occurrence in various environmental media including water bodies. Conventional methods of heavy metal removal from wastewaters are very expensive, when available, especially in developing countries. This study therefore assessed the potential of sugarcane biomass to remove zinc from standard solutions and industrial (paint and textile) wastewaters. Parameters studied include contact time, biomass weight, metal concentration, pH, agitation, temperature and particle size. Physico-chemical characteristics of biomass were also studied. Adsorption of zinc increased with increases in contact time, biomass weight, pH and agitation speed, while adsorption decreased with increasing particle size and for temperatures above 50°C. Sugarcane biomass was responsible for over 90% adsorption of Zn2+ in both effluents. Under conditions of agitation, 100% adsorption was achieved. Percentage ash, particle density, cation exchange capacity (CEC) and porosity are important physico-chemical properties which influenced Zn2+ adsorption. Percentage ash and CEC are positively correlated to percentage adsorption while particle density and porosity are negatively correlated. Percentage desorption was over 90 for both effluents. Sugarcane biomass is therefore a potential alternative to expensive synthetic resins. Its biodegradability makes disposal environmentally friendly. However, there is the need to further study the biomass in flow-through systems for industrial applicability.
机译:重金属及其化合物在工业应用中的使用已导致它们在包括水体在内的各种环境介质中发生。如果有的话,从废水中去除重金属的常规方法非常昂贵,尤其是在发展中国家。因此,这项研究评估了甘蔗生物质从标准溶液和工业(油漆和纺织)废水中去除锌的潜力。研究的参数包括接触时间,生物质重量,金属浓度,pH,搅拌,温度和粒径。还研究了生物质的理化特性。锌的吸附量随着接触时间,生物质重量,pH和搅拌速度的增加而增加,而吸附量随着粒径的增加以及温度高于50°C而降低。两种排放物中甘蔗生物量占Zn2 +吸附量的90%以上。在搅拌条件下,达到100%吸附。灰分,颗粒密度,阳离子交换容量(CEC)和孔隙率是影响Zn2 +吸附的重要物理化学性质。灰分和CEC百分比与吸附百分比呈正相关,而颗粒密度和孔隙率则呈负相关。两种废水的解吸百分比均超过90。因此,甘蔗生物质是昂贵合成树脂的潜在替代品。它的生物可降解性使其处置对环境友好。然而,为了工业应用,需要进一步研究流通系统中的生物质。

著录项

  • 来源
    《Water SA》 |2011年第3期|p.313-320|共8页
  • 作者

    BO Opeolu; O Bamgbose; OS Fatoki;

  • 作者单位

    Department of Chemistry, Cape Peninsula University of Technology, Cape Town, South Africa;

    Department of Environmental Management and Toxicology, University of Agriculture, Abeokuta, Nigeria;

    Department of Chemistry, Cape Peninsula University of Technology, Cape Town, South Africa;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    zinc; sugarcane biomass; wastewaters; remediation.;

    机译:锌甘蔗生物量废水;补救措施。;

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