School of Chemical Sciences, Universiti Sains Malaysia, 11800, Penang, Malaysia.
Environ Sci Pollut Res Int. 2014 Jan;21(1):485-94. doi: 10.1007/s11356-013-1933-1. Epub 2013 Jun 27.
The feasibility of using dried attached-growth biomass from the polyurethane (PU) foam cubes as a solid carbon source to enhance the denitrification process in the intermittently aerated moving bed sequencing batch reactor (IA-MBSBR) during the treatment of low COD/N containing wastewater was investigated. By packing the IA-MBSBR with 8% (v/v) of 8-mL PU foam cubes saturated with dried attached-growth biomass, total nitrogen removal efficiency of 80% could be achieved for 10 consecutive cycles of operation when the intermittent aeration strategy of consecutive 1 h of aeration followed by 2 h of non-aeration period during the REACT period of the IA-MBSBR was adopted. Negligible release of ammonium nitrogen (NH4(+)-N) and slow-release of COD from the dried biomass would ensure that the use of this solid carbon source would not further burden the treatment system. The slow-releasing COD was found to have no effect in promoting the assimilation process and would also allow the carbon source to be used for many cycles of operation. The 'carbon-spent' PU foam cubes could be reused by merely drying at 60 °C at the end of the operational mode. Thus, the dried attached-growth biomass formed on the PU foam cubes could be exploited as an alternative solid carbon source for the enhancement of denitrification process in the IA-MBSBR.
研究了使用聚氨酯(PU)泡沫块上干燥附着生长的生物质作为固体碳源,以增强间歇曝气移动床序批式反应器(IA-MBSBR)中反硝化过程的可行性,该反应器用于处理低 COD/N 含量废水。通过在 IA-MBSBR 中填充 8%(v/v)的 8 毫升 PU 泡沫块,其中充满了干燥附着生长的生物质,当采用 IA-MBSBR 的 REACT 期间连续 1 小时曝气和 2 小时非曝气的间歇曝气策略时,在 10 个连续运行周期中可以实现 80%的总氮去除效率。干燥生物质的铵氮(NH4(+)-N)几乎不释放,COD 缓慢释放,这将确保使用这种固体碳源不会进一步加重处理系统的负担。发现缓慢释放的 COD 不会促进同化过程,并且还可以使碳源在许多运行周期中使用。在操作模式结束时,只需在 60°C 下干燥,即可重复使用“耗尽碳”的 PU 泡沫块。因此,PU 泡沫块上形成的干燥附着生长的生物质可作为 IA-MBSBR 中强化反硝化过程的替代固体碳源。