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Renewable CO2 absorbent for carbon capture and biogas upgrading by membrane contactor

机译:可再生二氧化碳吸收剂用于碳捕获和沼气通过膜接触器升级

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摘要

This study employs novel renewable absorbents derived from biogas slurry (BS) for biogas upgrading via membrane contactors. CO2 absorption capacity of biogas slurry can be enhanced by adding alkali solutions, vacuum regeneration or vacuum membrane distillation (VMD). These methods are used to produce four types of renewable CO2 solvents, including vacuum regenerated BS, recovered aqueous ammonia (RAA) from BS by VMD, calcium oxide treated BS and potassium hydroxide treated BS. These renewable absorbents for CO2 capture from biogas by membrane contactors are investigated. CO2 removal efficiency reduces but absorption rates increase with the rise in CO2 volume fraction in the feed gas stream. Absorption temperature has a limited effect on CO2 absorption rates of the renewable absorbents. RAA shows the best CO2 absorption performance among the four types of renewable absorbents in the membrane contactor. RAA flowing on the tube side leads to a 50% higher CO2 removal efficiency compared with RAA on the shell side. At low gas flow rates, partial absorbents and hollow fibers may not be utilized. Thus, selection of membrane module parameters, including the length of module, the number of hollow fibers, biogas flow rates and absorption performance, should be carefully considered when using membrane contactors for biogas upgrading.
机译:本研究采用了衍生自沼气(BS)的新型可再生吸收剂,用于通过膜接触器升级沼气。通过加入碱溶液,真空再生或真空膜蒸馏(VMD),可以增强沼气浆料的CO 2吸收能力。这些方法用于产生四种类型的可再生CO 2溶剂,包括从VMD,氧化钙处理的Bs和氢氧化钾处理的BS的BS中回收的氨水氨(RAA)。研究了通过膜接触器从沼气捕获的这些可再生吸收剂。 CO 2去除效率降低但随着进料气流中的二氧化碳体积分数的升高,吸收率增加。吸收温度对可再生吸收剂的CO 2吸收率有有限的影响。 RAA显示了膜接触器中的四种类型可再生吸收剂中的最佳二氧化碳吸收性能。与壳侧的RAA相比,在管侧流动的RAA导致CO 2去除效率高达50%。在低气体流速下,不得使用部分吸收剂和中空纤维。因此,当使用用于沼气升级的膜接触器时,应仔细考虑膜组件参数,包括模块的长度,中空纤维的数量,空心纤维的数量,沼气流量和吸收性能。

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