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Bioleaching of nickel from equilibrium fluid catalytic cracking catalysts

机译:从平衡流化催化裂化催化剂中生物浸出镍

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摘要

This study investigates the possibility of reusing metal-contaminated equilibrium fluid catalytic cracking (FCC) catalyst after bioleaching. Leaching with Aspergillus niger culture was found to be more effective in the mobilization of nickel from the catalyst particles compared to chemical leaching with citric acid. Bioleaching achieved 32% nickel removal whereas chemical leaching achieved only 21% nickel removal from catalyst particles. The enhanced nickel removal from the catalysts in the presence of A. niger culture was attributed to the biosorption ability of the fungal mycelium and to the higher local concentration of citric acid on the catalyst surface. It was found that 9% of solubilized nickel in the liquid medium was biosorbed to fungal biomass. After nickel leaching with A. niger culture, the hydrogen-to-methane molar ratio and coke yield, which are the measures of dehydrogenation reactions catalysed by nickel during cracking reactions, decreased significantly.
机译:这项研究调查了生物浸出后重用金属污染的平衡流化催化裂化(FCC)催化剂的可能性。与用柠檬酸化学浸提相比,发现黑曲霉培养物的浸提在从催化剂颗粒中转移镍方面更有效。生物浸出实现了32%的镍去除,而化学浸出仅实现了21%的镍从催化剂颗粒中的去除。在黑曲霉培养物存在下从催化剂中去除镍的增加归因于真菌菌丝体的生物吸附能力以及柠檬酸在催化剂表面上的较高局部浓度。发现液体介质中9%的溶解的镍被生物吸附至真菌生物质。在黑曲霉培养物中浸出镍后,氢与甲烷的摩尔比和焦炭收率(这是镍在裂化反应期间催化的脱氢反应的量度)显着降低。

著录项

  • 作者

    Bayraktar Oğuz;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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