College of Engineering, Huazhong Agricultural University , No.1, Shizishan Street, Hongshan District, Wuhan 430070, PR China.
The Cooperative Innovation Center for Sustainable Pig Production, Wuhan 430070, PR China.
Environ Sci Technol. 2017 Aug 1;51(15):8841-8850. doi: 10.1021/acs.est.7b00751. Epub 2017 Jul 18.
We propose and demonstrate a novel system for simultaneous ammonia recovery, carbon capture, biogas upgrading, and fertilizer production in biogas production. Biogas slurry pretreatment (adjusting the solution pH, turbidity, and chemical oxygen demand) plays an important role in the system as it significantly affects the performance of ammonia recovery. Vacuum membrane distillation is used to recover ammonia from biogas slurry at various conditions. The ammonia removal efficiency in vacuum membrane distillation is around 75% regardless of the ammonia concentration of the biogas slurry. The recovered ammonia is used for CO absorption to realize simultaneous biogas upgrading and fertilizer generation. CO absorption performance of the recovered ammonia (absorption capacity and rate) is compared with a conventional model absorbent. Theoretical results on biogas upgrading are also provided. After ammonia recovery, the treated biogas slurry has significantly reduced phytotoxicity, improving the applicability for agricultural irrigation. The novel concept demonstrated in this study shows great potential in closing the CO loop in biogas production by recycling ammonia as an absorbent for CO absorption associated with producing fertilizers.
我们提出并展示了一种用于沼气生产中同时实现氨回收、碳捕获、沼气升级和肥料生产的新型系统。沼气浆预处理(调节溶液 pH 值、浊度和化学需氧量)在系统中起着重要作用,因为它显著影响氨回收的性能。采用真空膜蒸馏技术从沼气浆中回收氨,在不同条件下进行。无论沼气浆中的氨浓度如何,真空膜蒸馏中的氨去除效率都在 75%左右。回收的氨用于 CO 吸收,以实现沼气的同时升级和肥料的生成。回收氨的 CO 吸收性能(吸收能力和速率)与传统的模型吸收剂进行了比较。还提供了关于沼气升级的理论结果。氨回收后,处理后的沼气浆的植物毒性显著降低,提高了其用于农业灌溉的适用性。本研究中展示的新概念通过将氨回收作为与生产肥料相关的 CO 吸收的吸收剂来循环利用,显示出在封闭沼气生产中的 CO 循环方面具有巨大的潜力。