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CARBON AND NITROGEN REMOVAL IN A GRANULAR BED BAFFLED REACTOR

机译:颗粒床反应器中的碳和氮去除

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The application of an anaerobic five compartment granular bed baffled reactor (GRABBR) was investigated with brewery wastewater for combined carbon and nitrate removal, with a separate downstream nitrification unit for converting ammonia to nitrate. The GRABBR was operated at an organic loading rate of 3.57 kg chemical oxygen demand (COD) m~(-3) d~(-1) and ammoniacal nitrogen (NH_4-N) loading rate of 0.13 kg NH_4-N m~(-3) d~(-1) when nitrified effluent from a downstream nitrification unit was recycled to the feed point of the GRABBR. Carbonaceous matter and nitrate were removed simultaneously in the GRABBR at different recycle to influent ratios (from 1 to 2), with nitrogen oxide (nitrate and nitrite nitrogen, NOx-N) loading rates varying from 0.04 to 0.05 kg NO_x-N m~(-3)d~(-1). At all recycle to influent ratios, COD removal efficiency of 97% to 98% were observed in the GRABBR, and over 99% by the two-stage treatment configuration (i.e. GRABBR and nitrification unit). All the nitrates added to the GRABBR were denitrified in the first three compartments of the system. For all the recycle to influent ratios studied, almost all ammonia was converted to nitrate nitrogen with only small traces of nitrite nitrogen in the nitrification unit. Methane production was observed throughout the experimental period with its composition varying from 25% to 50%, showing that simultaneous methanogenesis and denitrification occurred. This study shows that a GRABBR could bring about a high degree of carbon and nitrate removal, with simultaneous methanogenesis and denitrification, due to plug flow granular bed multi-stage characteristics of the bioreactor.
机译:研究了厌氧五室颗粒床折流板反应器(GRABBR)的应用,该工艺用于啤酒废水以去除碳和硝酸盐,并带有单独的下游硝化单元,用于将氨转化为硝酸盐。 GRABBR的有机负荷率为3.57 kg化学需氧量(COD)m〜(-3)d〜(-1),氨氮(NH_4-N)负荷率为0.13 kg NH_4-N m〜(- 3)当将来自下游硝化单元的硝化流出物再循环至GRABBR的进料点时的d〜(-1)。在GRABBR中以不同的循环进水比(从1到2)同时去除碳质和硝酸盐,氮氧化物(硝酸盐和亚硝酸盐氮,NOx-N)的负载率从0.04到0.05 kg NO_x-N m〜( -3)d〜(-1)。在所有循环进水比下,在GRABBR中观察到COD去除效率为97%至98%,而在两阶段处理配置(即GRABBR和硝化单元)中观察到超过99%。在系统的前三个隔室中,所有添加到GRABBR中的硝酸盐都会进行反硝化。对于所研究的所有循环与进水比,几乎所有的氨都被转化为硝态氮,而硝化单元中只有极少量的亚硝酸盐氮。在整个实验过程中观察到甲烷的产生,其组成从25%到50%不等,表明同时发生了甲烷生成和反硝化作用。这项研究表明,由于生物反应器的塞流颗粒床多级特性,GRABBR可以实现高度的碳和硝酸盐去除,同时具有甲烷生成和反硝化作用。

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