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在UASB反应器中,蔗糖在55摄氏度嗜热酸化过程中于pH值为4时的硫酸盐还原作用。

Sulfate reduction at pH 4 during the thermophilic (55 degrees C) acidification of sucrose in UASB reactors.

作者信息

Lopes S I C, Capela M I, Dar S A, Muyzer G, Lens P N L

机构信息

Sub-Dept. of Environmental Technology, Wageningen University Biotechnion, Wageningen, The Netherlands.

出版信息

Biotechnol Prog. 2008 Nov-Dec;24(6):1278-89. doi: 10.1002/btpr.61.

Abstract

Continuous sulfate reduction at pH 4.0 was demonstrated in a pH controlled thermophilic (55 degrees C) upflow anaerobic sludge bed reactor fed with sucrose at a COD/SO(4)(2-) ratio of 0.9 and an organic loading rate of 0.8 and 1.9 gCOD (l(reactor) d)(-1) for a period of 78 days. A nearly complete sulfate reduction efficiency was achieved throughout the reactor run, corresponding to sulfate removal rates of 0.91 and 1.92 g (l(reactor) d)(-1) at sulfate loading rates of 0.94 and 2 g (l(reactor) d)(-1), respectively, by keeping the sulfide concentration below 20 mg l(-1) due to stripping with nitrogen gas. Acidification was always complete and acetate was the only degradation intermediate left in the effluent, which did not exceed 180 mgCOD l(-1) in pseudo-stationary states. The sludge was well retained in the reactor and kept its granular form. Zn, Cu, Se, and Mo accumulated in the sludge, whereas Co, Ni, Fe, and Mn leached from the sludge, despite their continuous supply to the reactor via the influent. The bacterial diversity in the reactor sludge at the end of the reactor run was low and the culture was dominated by one acidifying species, resembling Thermoanaerobacterium sp., and one sulfate reducing species, resembling Desulfotomaculum sp.

摘要

在一个pH值控制为4.0的嗜热(55摄氏度)上流式厌氧污泥床反应器中,以COD/SO₄²⁻ 比例为0.9、有机负荷率为0.8和1.9 gCOD/(l(反应器)·d)的蔗糖为进料,持续进行了78天的连续硫酸盐还原实验。在整个反应器运行过程中,实现了近乎完全的硫酸盐还原效率,通过用氮气吹扫使硫化物浓度保持在20 mg/l以下,在硫酸盐负荷率分别为0.94和2 g/(l(反应器)·d)时,对应的硫酸盐去除率分别为0.91和1.92 g/(l(反应器)·d)。酸化始终是完全的,乙酸盐是流出物中唯一残留的降解中间产物,在准稳态下其浓度不超过180 mgCOD/l。污泥在反应器中得到良好保留并保持颗粒形态。锌、铜、硒和钼在污泥中积累,而钴、镍、铁和锰从污泥中沥出,尽管它们通过进水持续供应到反应器中。反应器运行结束时,反应器污泥中的细菌多样性较低,培养物主要由一种类似嗜热厌氧杆菌属的酸化菌和一种类似脱硫肠状菌属的硫酸盐还原菌主导。

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