Gao Wenjie, Fang Qinxiang, Yan Haiyang, Wei Xinlai, Wu Ke
Collaborative Innovation Center for Environmental Pollution Precaution and Ecological Rehabilitation of Anhui, School of Biology, Food and Environment Engineering, Hefei University, Hefei 230601, China.
CAS Key Laboratory of Soft Matter Chemistry, Collaborative Innovation Center of Chemistry for Energy Materials, School of Chemistry and Material Science, University of Science and Technology of China, Hefei 230026, China.
Membranes (Basel). 2021 Feb 22;11(2):152. doi: 10.3390/membranes11020152.
Lithium carbonate is an important chemical raw material that is widely used in many contexts. The preparation of lithium carbonate by acid roasting is limited due to the large amounts of low-value sodium sulfate waste salts that result. In this research, bipolar membrane electrodialysis (BMED) technology was developed to treat waste sodium sulfate containing lithium carbonate for conversion of low-value sodium sulfate into high-value sulfuric acid and sodium hydroxide. Both can be used as raw materials in upstream processes. In order to verify the feasibility of the method, the effects of the feed salt concentration, current density, flow rate, and volume ratio on the desalination performance were determined. The conversion rate of sodium sulfate was close to 100%. The energy consumption obtained under the best experimental conditions was 1.4 kWh·kg. The purity of the obtained sulfuric acid and sodium hydroxide products reached 98.32% and 98.23%, respectively. Calculated under the best process conditions, the total process cost of BMED was estimated to be USD 0.705 kg NaSO, which is considered low and provides an indication of the potential economic and environmental benefits of using applying this technology.
碳酸锂是一种重要的化学原料,广泛应用于许多领域。由于会产生大量低价值的硫酸钠废盐,通过酸焙烧制备碳酸锂受到限制。在本研究中,开发了双极膜电渗析(BMED)技术来处理含碳酸锂的废硫酸钠,将低价值的硫酸钠转化为高价值的硫酸和氢氧化钠。两者均可作为上游工艺的原料。为了验证该方法的可行性,确定了进料盐浓度、电流密度、流速和体积比对脱盐性能的影响。硫酸钠的转化率接近100%。在最佳实验条件下获得的能耗为1.4 kWh·kg。所得到的硫酸和氢氧化钠产品的纯度分别达到98.32%和98.23%。在最佳工艺条件下计算得出,BMED的总工艺成本估计为0.705美元/kg NaSO,这被认为较低,表明应用该技术具有潜在的经济和环境效益。