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Optimization of activated carbon production from empty fruit bunch fibers in one-step steam pyrolysis for cadmium removal from aqueous solution

机译:空果串纤维一步蒸汽热解去除水溶液中镉的活性炭生产的优化

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摘要

The fast growth of the palm oil industry in Malaysia is associated with various waste products, namely the empty fruit bunches (EFB), which have a negative impact on the environment. Therefore, these wastes were utilized as a cheap raw material for the production of activated carbon (AC) with less energy consumption. One-step steam pyrolysis was used to produce AC from oil palm empty fruit bunch fibers (EFBF) by varying the operating parameters of temperature, steam flow rate, and activation time using two-level full factorial experimental design (FFD). Ten samples of AC were prepared and the optimized production conditions were chosen based on the ability to adsorb and remove cadmium. Physical activation comprised of carbonization for 30 min using nitrogen gas (N_2), followed by activation with steam at different flow rates (2.0, 3.0, and 4.0 ml/min), temperatures (600, 750, and 900℃) and times (15, 30, and 45 min). The AC sample produced at an activation temperature of 900℃ with a steam flow rate of 2.0 ml/min and activation time of 15 min was selected as the best adsorbent with a total yield of 21.7%. It had adsorbed more than 97% of total cadmium from aqueous solution within 2 min of the contact time. Characterization of EFBF-based AC by SEM and BET surface area analysis had shown a good-quality adsorbent with highly active sites and well-developed pores with BET surface area of 635.16 m~2/g. Experimental results indicated that the prepared AC from EFBF provide a promising solution in water and wastewater treatment.
机译:马来西亚棕榈油工业的快速增长与各种废物产品有关,即空果串(EFB),对环境有负面影响。因此,这些废物被用作廉价的原料,用于生产能耗更低的活性炭(AC)。使用两级全因子实验设计(FFD),通过改变温度,蒸汽流速和活化时间的操作参数,使用一步蒸汽热解法从油棕空果束纤维(EFBF)中生产AC。制备了10个AC样品,并根据吸附和去除镉的能力选择了最佳生产条件。物理活化包括使用氮气(N_2)碳化30分钟,然后用蒸汽以不同的流速(2.0、3.0和4.0 ml / min),温度(600、750和900℃)和时间(15)活化。 ,30和45分钟)。选择活化温度为900℃,蒸汽流量为2.0 ml / min,活化时间为15 min的AC样品为最佳吸附剂,总收率为21.7%。在接触时间的2分钟内,它已从水溶液中吸附了97%以上的镉。通过SEM和BET表面积分析对基于EFBF的AC进行表征,结果表明,优质的吸附剂具有高活性位点和发达的孔,BET表面积为635.16 m〜2 / g。实验结果表明,由EFBF制备的AC为水和废水处理提供了有希望的解决方案。

著录项

  • 来源
    《The environmentalist》 |2011年第4期|p.349-357|共9页
  • 作者单位

    Bioenvironmental Engineering Research Unit (BERU), Department of Biotechnology Engineering, Faculty of Engineering, International Islamic University Malaysia, P.O. Box 10, 50728 Kuala Lumpur, Malaysia;

    Bioenvironmental Engineering Research Unit (BERU), Department of Biotechnology Engineering, Faculty of Engineering, International Islamic University Malaysia, P.O. Box 10, 50728 Kuala Lumpur, Malaysia;

    Bioenvironmental Engineering Research Unit (BERU), Department of Biotechnology Engineering, Faculty of Engineering, International Islamic University Malaysia, P.O. Box 10, 50728 Kuala Lumpur, Malaysia;

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

    activated carbon; adsorption; cadmium removal; oil palm empty fruit bunches; steam activation; statistical optimization;

    机译:活性炭;吸附脱镉油棕空果串;蒸汽活化统计优化;

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