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首页> 外文期刊>KSCE journal of civil engineering >Comparison Methane Production Potential between Granular and Suspended Sludge at Varying Ammonia Concentration
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Comparison Methane Production Potential between Granular and Suspended Sludge at Varying Ammonia Concentration

机译:氨浓度不同时,颗粒污泥和悬浮污泥的甲烷生产潜力比较

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Anaerobic digestion of Thermally Hydrolyzed Wasted Sludge (THWS) with high strength ammonia was evaluated through batch and two-phase Upflow Anaerobic Sludge Blanket (UASB) reactors with two kinds of anaerobic microbial types (suspended and granular). In the batch test, biogas yield and gas production rate increased as microbial concentration increased for the wastewaters with a high ammonia concentration of 0.8 g FA/L. Also, the lag time and finishing time of gas production could be shortened by applying higher microbial concentrations. The granular sludge presented a higher biogas yield, shorter lag time and shorter finishing time of gas production when compared with suspended sludge. The comparative reactor operation using suspended sludge and granular sludge demonstrated that the granular sludge had more competitive advantages for the biogas production from THWS at a high ammonia concentration of 9.2 g NH4+/L. Therefore, the application of granular sludge could be more appropriate for the anaerobic treatment of wastewater containing high strength ammonia since the granular sludge can have a higher resistance to toxicity and maintain a higher microbial concentration.
机译:通过具有两种厌氧微生物类型(悬浮和颗粒状)的分批和两相上流厌氧污泥毯(UASB)反应器,对高强度氨热水解污泥(THWS)的厌氧消化进行了评估。在分批测试中,对于氨浓度为0.8 g / L的高浓度废水,随着微生物浓度的增加,沼气产量和产气率也会增加。同样,通过应用较高的微生物浓度可以缩短产气的滞后时间和完成时间。与悬浮污泥相比,颗粒状污泥具有更高的沼气产量,更短的滞后时间和更短的产气时间。使用悬浮污泥和颗粒污泥的对比反应器操作表明,在氨水浓度为9.2 g NH4 + / L的情况下,颗粒污泥对于THWS生产沼气更具竞争优势。因此,粒状污泥的应用可能更适合于厌氧处理含高浓度氨水的废水,因为粒状污泥可以具有更高的抗毒性和维持较高的微生物浓度。

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