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EFFECT OF MIXING ON BIOMETHANATION OF CATTLE-MANURE SLURRY

机译:混合对牛粪污泥生物甲烷化的影响

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The benefits and extent of mixing required during biomethanation of cattle-manure slurry was studied by investigating the effect of: 1) continuous and intermittent mixing; 2) agitator impeller speed and position; 3) not providing assisted mixing; 4) mixing on production of extracellular polymeric substances; and 5) mixing on the ultimate anaerobic biodegradability. Biomethanation was not adversely affected: during intermittent mixing; or when only sufficient mixing was provided to maintain off-bottom suspension of digester contents; or by doubling impeller speed. In fact continuous digestion of cattle-manure slurry without mechanical stirring was superior in terms of gas production. This can be attributed to increased loss of active volatile solids during stirring. Moreover, long-term batch digestion studies showed that the rate of biomethanation in a continuously stirred digester was inferior to that of a non-stirred one. Mixing was found to decrease production of extracellular polymeric substances (EPS). The presence of an increased level of EPS during the quiescent state could indicate increased attachment of cells to each other, resulting in larger agglomerates with better settling properties thus increasing biomass retention time.
机译:通过研究以下效果研究了牛粪浆生物甲烷化过程中所需混合的好处和程度:1)连续和间歇混合; 2)搅拌器叶轮的转速和位置; 3)不提供辅助混合; 4)混合生产细胞外聚合物; 5)混合达到最终的厌氧生物降解性。生物甲烷化不会受到不利影响:间歇混合过程中;或仅提供足够的混合以维持消化液内容物的底部悬浮时;或或将叶轮速度提高一倍。实际上,在不产生机械搅拌的情况下,连续消化牛粪浆在产气方面具有优势。这可以归因于搅拌过程中活性挥发性固体的损失增加。此外,长期的批次消化研究表明,在连续搅拌的消化池中,生物甲烷化的速度要比未搅拌的消化池低。发现混合降低了细胞外聚合物质(EPS)的产生。静止状态期间EPS含量增加可能表明细胞彼此之间的附着增加,从而导致较大的团聚体具有更好的沉降特性,从而增加了生物质的保留时间。

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