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Recovery of methane from anaerobic process effluent using poly-di-methyl-siloxane membrane contactors

机译:使用聚二甲基硅氧烷膜接触器从厌氧工艺废水中回收甲烷

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This paper demonstrates the potential for recovering dissolved methane from low temperature anaerobic processes treating domestic wastewater. In the absence of methane recovery, ca. 45% of the produced methane is released as a fugitive emission which results in a net carbon footprint of -0.47 kg CO _(2e) m ~(-3). A poly-di-methyl-siloxane (PDMS) membrane contactor was applied to support sweep gas desorption of dissolved methane using nitrogen. The dense membrane structure controlled gaseous mass transfer thus recovery was maximised at low liquid velocities. At the lowest liquid velocity, V _L, of 0.0025 m s ~(-1), 72% of the dissolved methane was recovered. A vacuum was also trialled as an alternative to sweep-gas operation. At vacuum pressures below 30 mbar, reasonable methane recovery was observed at an intermediate V _L of 0.0056 m s ~(-1). Results from this study demonstrate that dissolved methane recovery could increase net electrical production from low temperature anaerobic processes by ca. +0.043 kWh _e m ~(-3) and reduce the net carbon footprint to +0.01 kg CO _(2e) m (-3). However, further experimental work to optimise the gas-side hydrodynamics is required as well as validation of the long-term impacts of biofouling on process performance.
机译:本文证明了从处理生活废水的低温厌氧工艺中回收溶解甲烷的潜力。在没有甲烷回收的情况下,所产生的甲烷的45%作为逃逸性排放而释放,导致净碳足迹为-0.47 kg CO _(2e)m〜(-3)。应用聚二甲基硅氧烷(PDMS)膜接触器,以支持使用氮气吹扫吹扫溶解的甲烷。致密的膜结构控制了气体的传质,因此在低液体速度下回收率达到了最大值。在最低液体速度V_L为0.0025 m s〜(-1)时,回收了72%的溶解甲烷。还尝试使用真空代替扫气操作。在低于30 mbar的真空压力下,在0.0056 m s〜(-1)的中间V _L处观察到合理的甲烷回收率。这项研究的结果表明,溶解甲烷的回收可以使低温厌氧过程的净发电量增加约5%。 +0.043 kWh _e m〜(-3),并将净碳足迹减少至+0.01 kg CO _(2e)m(-3)。但是,需要进一步的实验工作来优化气体侧的流体动力学,以及生物污垢对工艺性能的长期影响的验证。

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