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Study on anaerobic treatment of wastewater containing hexavalent chromium

机译:六价铬废水的厌氧处理研究

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摘要

A self-made anaerobic bio-filter bed which was inoculated with special sludge showed high efficiency in removing hexavalent chromium. When pump flow was 47 ml/min and CODCr of wastewater was about 140 mg/L, it took 4 h to decrease the Cr6+ concentrations from about 60 mg/L to under 0.5 mg/L, compared with 14 h without carbon source addition. Cr6+ concentrations ranged from 64.66 mg/L to 75.53 mg/L, the system efficiency was excellent. When Cr6+ concentration reached 95.47 mg/L, the treatment time was prolonged to 7.5 h. Compared with the contrast system, the system with trace metals showed clear superiority in that the Cr6+ removal rate increased by 21.26%. Some analyses also showed that hexavalent chromium could probably be bio-reduced to trivalent chromium, and that as a result, the chrome hydroxide sediment was formed on the surface of microorganisms.
机译:接种了特殊污泥的自制厌氧生物滤床,去除六价铬的效率很高。当泵流量为47 ml / min且废水的CODCr约为140 mg / L时,花了4小时将Cr 6 + 的浓度从约60 mg / L降至0.5 mg / L以下,与未添加碳源的14小时相比。 Cr 6 + 的浓度范围为64.66 mg / L至75.53 mg / L,系统效率极佳。当Cr 6 + 浓度达到95.47 mg / L时,处理时间延长至7.5 h。与对比体系相比,微量金属体系具有明显的优势,Cr 6 + 去除率提高了21.26%。一些分析还表明,六价铬可能会被生物还原为三价铬,结果,在微生物表面形成了氢氧化铬沉淀物。

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