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Two-stage anaerobic digestion of food waste coupled with in situ ammonia recovery using gas membrane absorption: Performance and microbial community

机译:使用煤气膜吸收与原位氨恢复相结合的食物废物的两级厌氧消化:性能和微生物群落

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摘要

A two-stage GAs Membrane Absorption anaerobic Reactor (GAMAR) was developed by combining the gas membrane absorption (GMA) system with two-stage anaerobic digestion. The two-stage configuration consisted of an acidogenic reactor (AR) and a methanogenic reactor (MR) with GMA. With the application of GMA, the ammonia concentration of MR was maintained at 2200 mgN L-1 to alleviate potential ammonia inhibition. The setup of AR enhanced hydrolysis and acidogenesis of FW and alleviated volatile fatty acids (VFA) accumulation in MR. Two-stage GAMAR could be operated stably at 6.1 kg VS m(-3) d(-1) and the volumetric biogas production rate was 3.21 m(3) m(-3 )d(-1). The different environmental conditions caused a significant shift in the microbial community. Lactobacillus and Aeriscardovia became predominant in AR under low pH, while Syntrophomonas was dominant in MR when the reactor was stable. The dominant archaea genus in MR was Methanothrix and it greatly decreased when MR was acidified.
机译:通过将气膜吸收(GMA)系统与两级厌氧消化组合来开发一种两级气膜吸收厌氧反应器(Gamar)。 两级构型由酸性反应器(Ar)和具有GMA的甲状反应器(MR)组成。 随着GMA的应用,MR的氨浓度保持在2200mgn L-1以缓解潜在的氨抑制。 AR增强的水解和剥离FW和缓解挥发性脂肪酸(VFA)在MR中的积累的设置。 两级游戏机可以稳定地在6.1 kg vs m(-3)d(-1),并且体积沼气生产率为3.21m(3)m(-3)d(-1)。 不同的环境条件导致微生物群落显着转变。 在低pH下,乳酸杆菌和Aeriscardovia在Ar中成为主要的,而Syntrophomonas在反应器稳定时在MR中显着。 MR中的占主导地位的古代属甲蛋白纤维素,当MR酸化时,它会大大降低。

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