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pH冲击对甲醇喂养的颗粒污泥生物反应器中微量金属动态及性能的影响。

Influence of pH shocks on trace metal dynamics and performance of methanol fed granular sludge bioreactors.

作者信息

Zandvoort Marcel H, van Hullebusch Eric D, Peerbolte Annemarie, Golubnic Svetlana, Lettinga Gatze, Lens Piet N L

机构信息

Sub-department of Environmental Technology, Wageningen University, "Biotechnion" - Bomenweg, 2, P.O. Box 8129, 6700 EV Wageningen, The Netherlands.

出版信息

Biodegradation. 2005 Dec;16(6):549-67. doi: 10.1007/s10532-004-7789-9.

Abstract

The influence of pH shocks on the trace metal dynamics and performance of methanol fed upflow anaerobic granular sludge bed (UASB) reactors was investigated. For this purpose, two UASB reactors were operated with metal pre-loaded granular sludge (1 mM Co, Ni and Fe; 30 degrees C; 96 h) at an organic loading rate (OLR) of 5 g COD 1 reactor(-1) d(-1). One UASB reactor (R1) was inoculated with sludge that originated from a full scale reactor treating alcohol distillery wastewater, while the other reactor (R2) was inoculated with sludge from a full scale reactor treating paper mill wastewater. A 30 h pH shock (pH 5) strongly affected the metal retention dynamics within the granular sludge bed in both reactors. Iron losses in soluble form with the effluent were considerable: 2.3 and 2.9% for R1 and R2, respectively, based on initial iron content in the reactors, while losses of cobalt and nickel in soluble form were limited. Sequential extraction of the metals from the sludge showed that cobalt, nickel, iron and sulfur were translocated from the residual to the organic/sulfide fraction during the pH shock in R2, increasing 34, 47, 109 and 41% in the organic/sulfide fraction, respectively. This is likely due to the modification of the iron sulfide precipitate stability, which influences the extractability of iron and trace metals. Such a translocation was not observed for the R1 sludge during the first 30 h pH shock, but a second 4 day pH shock induced significant losses of cobalt (18%), iron (29%) and sulfur (29%) from the organic/sulfide fraction, likely due to iron sulfide dissolution and concomitant release of cobalt. After the 30 h pH shock, VFA accumulated in the R2 effluent, whereas both VFA and methanol accumulated in R1 after the 4 day pH shock. The formed VFA, mainly acetate, were not converted to methane due to the loss of methanogenic activity of the sludge on acetate. The VFA accumulation gradually disappeared, which is likely to be related to out-competition of acetogens by methanogens. Zinc, copper and manganese supply did not have a clear effect on the acetate removal and methanol conversion, but zinc may have induced the onset of methanol degradation after day 152 in R1.

摘要

研究了pH冲击对甲醇上流式厌氧颗粒污泥床(UASB)反应器中微量金属动态及性能的影响。为此,两个UASB反应器采用预先加载金属的颗粒污泥(1 mM钴、镍和铁;30℃;96小时)运行,有机负荷率(OLR)为5 g COD 1反应器⁻¹ d⁻¹。一个UASB反应器(R1)接种来自处理酒精蒸馏废水的全尺寸反应器的污泥,而另一个反应器(R2)接种来自处理造纸厂废水的全尺寸反应器的污泥。30小时的pH冲击(pH 5)强烈影响了两个反应器中颗粒污泥床内的金属保留动态。以可溶性形式随流出物损失的铁相当可观:基于反应器中的初始铁含量,R1和R2分别为2.3%和2.9%,而可溶性钴和镍的损失有限。对污泥中金属的顺序萃取表明,在R2的pH冲击期间,钴、镍、铁和硫从残渣部分转移到有机/硫化物部分,在有机/硫化物部分分别增加了34%、47%、109%和41%。这可能是由于硫化铁沉淀稳定性的改变,从而影响了铁和微量金属的可萃取性。在最初30小时的pH冲击期间,R1污泥未观察到这种转移,但第二次4天的pH冲击导致有机/硫化物部分的钴(18%)、铁(29%)和硫(29%)显著损失,这可能是由于硫化铁溶解和钴的伴随释放。30小时的pH冲击后,R2流出物中积累了挥发性脂肪酸(VFA),而4天的pH冲击后,Rl中VFA和甲醇都有积累。由于污泥对乙酸盐的产甲烷活性丧失,形成的VFA(主要是乙酸盐)未转化为甲烷。VFA积累逐渐消失,这可能与产甲烷菌对产乙酸菌的竞争抑制有关。锌、铜和锰的供应对乙酸盐去除和甲醇转化没有明显影响,但锌可能在R1中第152天后诱导了甲醇降解的开始。

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