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Effects of Heavy Metals on the Specific Ammonia and Nitrate Uptake Rates in Activated Sludge

机译:重金属对活性污泥中特定氨和硝酸盐吸收速率的影响

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摘要

Toxicity of heavy metals on activated sludge has already been considered as an important factor in the biological nutrient removal (BMR) system. This study identified the inhibition of nitrogen removal performance, including the specific ammonia uptake rate (SAUR) and specific nitrate uptake rate (SNUR), by adding different combinations of heavy metals [lead (Pb), nickel (Ni), cadmium (Cd), Pb + Ni, Ni + Cd, Pb + Cd, and Pb + Ni + Cd)] with seven concentration levels (0, 2, 5,10, 15, 25, and 40ppm) via batch experiments. This study investigated the interaction effect of these metal ions on both nitrification and denitrification, which had not been explored in previous studies. Experimental results showed that Ni had the highest inhibition on SAUR, whereas Cd had the highest inhibition on SNUR. In addition, no significant inhibition of SAUR or SNUR was observed upon adding even as high as 40 ppm of Pb into the activated sludge. Furthermore, no synergistic effect was found when different heavy metals were simultaneously added in different concentrations. It was also observed that first-order kinetic reaction could model the inhibition behaviors of both SAUR and SNUR of activated sludge with different combinations of heavy metals. In addition, the heavy metal biosorption ability by BNR activated sludge followed the order: Pb ≈ Cd > Ni. Finally, the specific biosorption capacity of heavy metals by activated sludge was found to increase upon increasing the heavy metal concentrations and decreasing mixed liquor suspended solids.
机译:重金属对活性污泥的毒性已经被认为是生物营养物去除(BMR)系统中的重要因素。通过添加重金属[铅(Pb),镍(Ni),镉(Cd)]的不同组合,这项研究确定了对脱氮性能的抑制,包括特定的氨吸收率(SAUR)和特定的硝酸盐吸收率(SNUR)。 ,Pb + Ni,Ni + Cd,Pb + Cd和Pb + Ni + Cd)]通过批处理实验具有七个浓度级别(0、2、5、10、15、25和40ppm)。这项研究调查了这些金属离子对硝化作用和反硝化作用的相互作用,这在以前的研究中还没有得到探讨。实验结果表明,Ni对SAUR的抑制作用最大,而Cd对SNUR的抑制作用最大。此外,在活性污泥中添加高达40 ppm的Pb时,未观察到SAUR或SNUR的显着抑制。此外,当以不同浓度同时添加不同的重金属时,未发现协同作用。还观察到一级动力学反应可以模拟不同重金属组合对活性污泥的SAUR和SNUR的抑制行为。此外,BNR活性污泥对重金属的生物吸附能力遵循以下顺序:Pb≈Cd> Ni。最后,发现活性污泥对重金属的比生物吸附能力随着重金属浓度的增加和混合液悬浮固体的减少而增加。

著录项

  • 来源
    《Environmental Engineering Science》 |2009年第7期|1207-1215|共9页
  • 作者单位

    Department of Bioenvironrnental Engineering and R&D Center for Membrane Technology, Chun Yuan Christian University, Chungli, Taiwan, Republic of China;

    Department of Civil Engineering, National Chi-Nan University, 1, University Road, Puli, Nantou 545, Taiwan, Republic of China;

    Department of Civil Engineering, National Chi-Nan University, Puli, Taiwan, Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lead; nickel; cadmiumL nitrification; denitrification;

    机译:铅;镍;镉硝化反硝化;
  • 入库时间 2022-08-17 13:30:51

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