电渗析
海水
固碳
废物管理
碳捕获和储存(时间表)
环境科学
碳纤维
无机碳总量
曝气
环境工程
二氧化碳
固碳
制浆造纸工业
化学
材料科学
膜
工程类
气候变化
有机化学
复合材料
地质学
海洋学
复合数
生物
生物化学
生态学
作者
Jingtao Bi,Tianyi Chen,Yue Xie,Ruochen Shen,Bin Li,Mengmeng Sun,Xiaofu Guo,Yingying Zhao
标识
DOI:10.1016/j.jes.2023.11.014
摘要
In the context of carbon capture, utilization, and storage, the high-value utilization of carbon storage presents a significant challenge. To address this challenge, this study employed the bipolar membrane electrodialysis integrated with carbon utilization technology to prepare Na2CO3 products using simulated seawater concentrate, achieving simultaneous saline wastewater utilization, carbon storage and high-value production of Na2CO3. The effects of various factors, including concentration of simulated seawater concentrate, current density, CO2 aeration rate, and circulating flow rate of alkali chamber, on the quality of Na2CO3 product, carbon sequestration rate, and energy consumption were investigated. Under the optimal condition, the CO32– concentration in the alkaline chamber reached a maximum of 0.817 mol/L with 98 mol% purity. The resulting carbon fixation rate was 70.50%, with energy consumption for carbon sequestration and product production of 5.7 kWhr/m3 CO2 and 1237.8 kWhr/ton Na2CO3, respectively. This coupling design provides a triple-win outcome promoting waste reduction and efficient utilization of resources.
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