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A novel hollow-fibre membrane biofilm reactor for autohydrogenotrophic denitrification of drinking water

机译:一种新型的自氢营养饮用水中空纤维膜生物膜反应器

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A novel hollow-fiber membrane biofilm reactor (HFMBR) was developed to remove nitrate from contaminated drinking water using molecular hydrogen as a clean electron-donor substrate. The hollow fibers were sealed on one end and were pressurized with hydrogen on the other end. The counter-diffusion transfer of nitrate and hydrogen allowed 100% hydrogen transfer efficiency into the biofilm and achieved up to 99.9 % hydrogen-utilization efficiency for denitrification. Partial denitrification met regulatory standards for nitrate and nitrite at the same time that relatively high steady-state nitrate fluxes (0.08 and 0.1 mg N/cm(2)-d) were achieved with liquid-phase hydrogen concentrations (0.009 and 0.07 mg H-2/l) magnitudes lower than in previous studies. The low frequency of fiber-to-fiber contact in the upflowing liquid established good biofilm accumulation. The specific biofilm detachment rates were between 0.015 and 0.017 day(-1), which attained biofilm thickness up to 179 mu m. Finally. DOC and BDOC analyses showed that the DOC was increased, while the affluent BDOC was 0.5 mg/l. [References: 28]
机译:开发了一种新型的中空纤维膜生物膜反应器(HFMBR),使用分子氢作为清洁的电子供体基质,从饮用水中去除硝酸盐。中空纤维的一端密封,另一端用氢气加压。硝酸盐和氢的反向扩散转移使氢转移效率达到生物膜的100%,反硝化的氢利用效率高达99.9%。部分反硝化同时满足硝酸盐和亚硝酸盐的法规标准,同时在液相氢浓度(0.009和0.07 mg H-下)达到较高的稳态硝酸盐通量(0.08和0.1 mg N / cm(2)-d)比以前的研究低2 / l)。向上流动的液体中纤维与纤维之间的低频接触建立了良好的生物膜积累。特定的生物膜分离速率在0.015至0.017天(-1)之间,可达到179μm的生物膜厚度。最后。 DOC和BDOC分析表明DOC有所增加,而富裕的BDOC为0.5 mg / l。 [参考:28]

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