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机构地区:[1]华南理工大学环境科学与工程学院,广州510006
出 处:《工业用水与废水》2013年第1期63-66,共4页Industrial Water & Wastewater
摘 要:厌氧过程中,硫酸盐浓度较高的废水在硫酸盐还原菌(SRB)的作用下将硫酸盐还原为硫化物,产生臭味且影响生化效率。以印染废水为研究对象,考察生物制剂IBC在厌氧过程中抑制硫化物产生的效果。结果表明:运行2个月后试验组污泥SRB数量由原来的7.8×106个/mL降为2.5×105个/mL,试验组硫化物的质量浓度维持在40 mg/L左右,相比对照组降低了50%。试验组对CODCr、色度的平均去除率分别为36.0%、65.3%,较对照组的29.9%、57.1%均有所提高。投加生物制剂IBC能显著抑制硫酸盐还原菌的活性和硫化物的产生,同时提高水质净化效果。Under the action of SRB, the sulfate in the wastewater containing high-concentration sulfate was reduced to sulfide during anaerobic process, which not only produced odor but also had an adverse effect on bio- chemical treatment system. Taking printing and dying wastewater as the research object, the inhibiting effect of immobilized biocatalyst (IBC) on sulfide during anaerobic process was investigated. The results showed that: after 2 month of operation, the amount of SRB in the anaerobic reaction tank added with IBC decreased from 7.8 x 10^6 to 2.5 x 10^5 per mL, the mass concentration of sulfide was maintained at about 40 rag/L, which was 50% lower than that of the anaerobic reaction tank without added IBC. Further more, the removal rates of CODc and chroma by the former one (36.0% and 65.3%) were also higher than that by the latter one (29.9% and 57.1%). Therefore, adding IBC could significantly inhibit the activity of SRB and the production of sulfide, and improve the water purification effect simultaneously.
分 类 号:X703.5[环境科学与工程—环境工程]
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