Department of Global Smart City, Sungkyunkwan University (SKKU), (16419) 2066, Seobu-ro, Jangan-gu, Suwon, Gyeonggi-do, Republic of Korea.
Chemosphere. 2022 Sep;303(Pt 1):134814. doi: 10.1016/j.chemosphere.2022.134814. Epub 2022 May 4.
This study investigates the suitability of forward osmosis (FO) for recovery of volatile fatty acids (VFAs) from anaerobic digesters (ADs) and identifies the conditions favorable for commercially viable maximum recovery of VFAs. The recovery efficiency of VFAs is evaluated using a polyamide (PA)-based thin-film composite (TFC) membrane. The pH (3, 5, 7, and 9), temperature (20 °C and 40 °C), and membrane orientation (active-layer [AL]-facing FS and AL facingDS) were changed, and water flux, reverse salt flux (RSF), rejection rate, and concentration factor (CF) were evaluated for five VFAs. The water flux and RSF were higher at a higher pH, temperature and in AL-DS mode. A low rejection rate of 23-36% and a CF of 0.20-1.90 were observed at a pH below the pKa due to the solubility of molecular VFAs, while rejection rates was 80-97% and concentration increase by 1 to 4.8-fold at a pH above the pKa values were achieved due to deprotonation of VFAs and changes in membrane surface charges. With an equal increase in temperature of FS and DS from 20 to 40 °C, the rejection rate decreased by almost 20%. While with a transmembrane temperature change, a decrease in rejection rate of 20% was observed compared with baseline experiments due to decreases in viscosity and high diffusivity. In AL-DS mode, VFAs were rejected at a rate of almost 20% lower than that in AL-FS mode due to internal concentration polarization and membrane properties. These findings provide useful information on the factors that can influence optimal recovery rates of VFAs.
本研究考察了正向渗透(FO)用于从厌氧消化器(AD)中回收挥发性脂肪酸(VFAs)的适用性,并确定了有利于商业上可行的最大 VFAs 回收的条件。使用聚酰胺(PA)基薄膜复合(TFC)膜评估 VFAs 的回收效率。改变 pH 值(3、5、7 和 9)、温度(20°C 和 40°C)和膜取向(活性层[AL]-朝向 FS 和 AL 朝向 DS),并评估了五种 VFAs 的水通量、反向盐通量(RSF)、截留率和浓缩因子(CF)。在较高的 pH 值、温度和 AL-DS 模式下,水通量和 RSF 更高。由于分子 VFAs 的溶解度,在低于 pKa 的 pH 值下,观察到截留率低至 23-36%和 CF 为 0.20-1.90,而在高于 pKa 值时,截留率为 80-97%,浓缩倍数增加 1 至 4.8 倍,这是由于 VFAs 的去质子化和膜表面电荷的变化。FS 和 DS 的温度从 20°C 升高到 40°C 时,截留率几乎降低了 20%。而在跨膜温度变化的情况下,与基准实验相比,截留率降低了 20%,这是由于粘度降低和高扩散性。在 AL-DS 模式下,由于内部浓度极化和膜性质,VFAs 的截留率比 AL-FS 模式低近 20%。这些发现为影响 VFAs 最佳回收率的因素提供了有用的信息。