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Autotrophic Removal of Sulphide from Industrial Wastewaters Using Oxygen and Nitrate as Electron Acceptors

机译:使用氧气和硝酸盐作为电子受体的工业废水自养去除硫

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The effect of environmental conditions on sulphide removal was studied in laboratory-scale batch experiments. Sulphide removal was carried out by adding two different electron acceptors (oxygen and nitrate) and stock sulphide solution to activated sludge solutions obtained from a wastewater treatment plant treating molasses-based industrial wastewaters. The effects of pH, temperature, and concentration of activated sludge on specific sulphide oxidation rates were studied. It was found that 80% sulphide removal was achieved when oxygen was used as an electron acceptor with activated sludge, whereas almost 100% sulphide removal was obtained when nitrate was used. Sulphide removal without activated sludge was also determined. The specific sulphide oxidation rate increased approximately 88% with increasing activated sludge concentration with nitrate as an electron acceptor and sulphide was completely removed within 6 min. When oxygen was used as an electron acceptor, specific removal increased up to 92%; however, it was observed that an amount of sulphide remained in the medium, even though the activated sludge concentration was increased. Additionally, the stoichiometry of sulphide oxidation both with nitrate and oxygen were calculated assuming different end products based on thermodynamic approach and compared with experimental yield values.
机译:在实验室规模的分批实验中研究了环境条件对硫化物去除的影响。通过将两种不同的电子受体(氧气和硝酸盐)和硫化原液添加到从处理糖蜜型工业废水的废水处理厂获得的活性污泥溶液中,进行硫化物去除。研究了pH,温度和活性污泥浓度对特定硫化物氧化速率的影响。发现当将氧气用作带有活性污泥的电子受体时,硫化物的去除率达到80%,而当使用硝酸盐时,硫化物的去除率几乎达到100%。还确定了无活性污泥的硫化物去除方法。随着以硝酸盐为电子受体的活性污泥浓度的增加,比硫化物的氧化率增加了约88%,并且硫化物在6分钟内被完全去除。当使用氧气作为电子受体时,比去除率可提高至92%;然而,据观察,即使增加了活性污泥的浓度,硫化物仍残留在培养基中。此外,基于热力学方法,假设最终产品不同,计算出了硝酸盐和氧气对硫化物氧化的化学计量,并与实验的收率值进行了比较。

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