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Influence Of Gas Flow-induced Shear Stress On The Operation Of The Anammox Process In A Sbr

机译:气流诱导的剪切应力对Sbr厌氧氨氧化工艺运行的影响

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The start up and performance of the Anammox process were tested in sequencing batch reactors with two different configurations: a bubble column (SBR-B) and a gas-lift reactor (SBR-G). Different off-gas upflow velocities were tested (3.53-12.3 cm min~(-1)) in order to expose the biomass to different shear conditions and to study their effects on both efficiency and physical properties of the Anammox granular biomass. For the SBR-B the minimum gas upflow velocity needed to achieve biomass suspension inside the reactor was 12.3 cm min~(-1). Such velocity made impossible the stable operation of the process. The fluid-ization of biomass for the SBR-C was reached at a gas upflow velocity of 3.52 cm min~(-1). This system maintained an efficiency of nitrite removal around 98% at values up to 5.29 cm min~(-1) but when the gas upflow velocity was increased from 5.29 to 9.70 cm min~(-1) a significant decrease of the specific Anammox activity of the biomass from 0.35 to 0.05 g N g~(-1) VSS d~(-1) was measured. The system lost 85% of its nitrogen removal efficiency which was not restored in spite of returning the gas upflow velocity to its initial value.
机译:Anammox工艺的启动和性能在具有两种不同配置的间歇式反应器测序中进行了测试:气泡塔(SBR-B)和气举反应器(SBR-G)。为了使生物质处于不同的剪切条件下并研究其对厌氧氨氧化颗粒生物质的效率和物理性质的影响,测试了不同的废气上流速度(3.53-12.3 cm min〜(-1))。对于SBR-B,实现反应器内部生物质悬浮所需的最小气体上升速度为12.3 cm min〜(-1)。这样的速度使得该过程的稳定运行成为不可能。 SBR-C的生物质流态化达到3.52 cm min〜(-1)的气体上升速度。该系统在高达5.29 cm min〜(-1)的值下保持亚硝酸盐去除效率在98%左右,但是当气体上升速度从5.29 cm min〜(-1)增加到9.70 cm min〜(-1)时,特定的Anammox活性会明显降低。测量了0.35至0.05 g N g〜(-1)VSS d〜(-1)的生物量。该系统损失了85%的脱氮效率,尽管将气体上升速度恢复到初始值仍无法恢复。

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