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Alteration of moving bed sequencing batch reactor operational strategies for the enhancement of nitrogen removal from stabilized landfill leachate

机译:改变移动床测序间歇反应器的操作策略,以提高从稳定的垃圾渗滤液中去除氮的能力

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摘要

Stabilized landfill leachate is well known to contain high concentration of nitrogen particularly in the ammonium nitrogen (NH4+-N) form. Also considering of high toxicity of non-biodegradable and low proportion of biodegradable compounds in stabilized landfill leachate, the conventional biological treatment of nitrogen is usually inefficient. As such, the quest of this study was to revise the operational strategies of bioreactor, i.e. moving bed sequencing batch reactor (MBSBR), for the enhancement of nitrogen removal from stabilized landfill leachate. The performance of MBSBRs packed with 8% (v/v) of polyurethane (PU) cubes and polyethylene (PE) rings, respectively, in removing nitrogen from a combined stabilized landfill leachate and domestic wastewater in increasing leachate volumetric ratio under various operational strategies was investigated. On increasing the leachate volumetric ratio to 14%, the performance of both MBSBRs in NH4+-N removal was comparable under the continuous aeration strategy. When the aeration strategy was changed to intermittent aeration (IA), the MBSBR with PU media achieved a higher NH4+-N removal rate, while the MBSBR with PE media failed to remove NH4+-N completely. For the MBSBR with PU media, the adoption of IA coupled with step feeding strategy had yielded a removal efficiency of 80% for total nitrogen in comparison to 64% if only IA strategy was adopted at the leachate volumetric ratio of 14%. Nevertheless, further increase in leachate volumetric ratio to 20% had led to the accumulation of NH4+-N in the effluent of MBSBR under IA-SF strategy. At this stage, the MBSBR operated with IA strategy could still remove NH4+-N completely. Thus, the IA-MBSBR with PU media is the preferred operational strategy for nitrogen removal at higher leachate volumetric ratio.
机译:众所周知,稳定的垃圾填埋场渗滤液含有高浓度的氮,尤其是铵态氮(NH4 + -N)形式的氮。还考虑到在稳定的垃圾渗滤液中不可生物降解的高毒性和低比例的可生物降解化合物,常规的氮生物处理通常效率低下。因此,本研究的目的是修改生物反应器的操作策略,即移动床测序间歇反应器(MBSBR),以增强从稳定的垃圾渗滤液中去除氮的能力。在各种操作策略下,分别填充有8%(v / v)聚氨酯(PU)立方体和聚乙烯(PE)环的MBSBR能够从稳定的垃圾填埋场渗滤液和生活污水中去除氮,从而增加渗滤液的体积比,其性能为调查。在将渗滤液体积比提高到14%时,在连续曝气策略下,两种MBSBRs去除NH4 + -N的性能均相当。当将曝气策略更改为间歇曝气(IA)时,带有PU介质的MBSBR可以实现更高的NH4 + -N去除率,而带有PE介质的MBSBR不能完全去除NH4 + -N。对于含PU介质的MBSBR,采用IA配合分步进料策略可去除总氮的效率为80%,而如果仅采用IA策略以14%的沥出液体积比的去除率则为64%。然而,在IA-SF策略下,渗滤液体积比进一步增加至20%导致了MBSBR废水中NH4 + -N的积累。在此阶段,采用IA策略运行的MBSBR仍可以完全去除NH4 + -N。因此,带有PU介质的IA-MBSBR是在较高的沥出液体积比下脱氮的优选操作策略。

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