Liu Yanfei, Xiao Tonghu, Bao Chenghuan, Zhang Jifei, Yang Xing
Faculty of Materials Science and Chemical Engineering, Ningbo University, Ningbo 315211, China.
College of Engineering and Science, Victoria University, P.O. Box 14428, Melbourne, VIC 8001, Australia.
Membranes (Basel). 2018 Feb 16;8(1):9. doi: 10.3390/membranes8010009.
This study proposes using membrane distillation (MD) as an alternative to the conventional multi-stage flushing (MSF) process to concentrate a semi-product of organic fertilizer. By applying a unique asymmetric polyvinylidene fluoride (PVDF) membrane, which was specifically designed for MD applications using a nonsolvent thermally induced phase separation (NTIPS) method, the direct contact membrane distillation (DCMD) performance was investigated in terms of its sustainability in permeation flux, fouling resistance, and anti-wetting properties. It was found that the permeation flux increased with increasing flow rate, while the top-surface facing feed mode was the preferred orientation to achieve 25% higher flux than the bottom-surface facing feed mode. Compared to the commercial polytetrafluoroethylene (PTFE) membrane, the asymmetric PVDF membrane exhibited excellent anti-fouling and sustainable flux, with less than 8% flux decline in a 15 h continuous operation, i.e., flux decreased slightly and was maintained as high as 74 kg·m-2·h-1 at 70 °C. Meanwhile, the lost flux was easily recovered by clean water rinsing. Overall 2.6 times concentration factor was achieved in 15 h MD operation, with 63.4% water being removed from the fertilizer sample. Further concentration could be achieved to reach the desired industrial standard of 5x concentration factor.
本研究提出使用膜蒸馏(MD)作为传统多级闪蒸(MSF)工艺的替代方法,以浓缩有机肥料的半成品。通过应用一种独特的不对称聚偏氟乙烯(PVDF)膜,该膜是使用非溶剂热致相分离(NTIPS)方法专门为MD应用设计的,从渗透通量的可持续性、抗污染性和抗润湿性方面研究了直接接触膜蒸馏(DCMD)性能。研究发现,渗透通量随流速增加而增加,而进料面朝上的模式是首选方向,比进料面朝下的模式通量高25%。与商用聚四氟乙烯(PTFE)膜相比,不对称PVDF膜表现出优异的抗污染性能和可持续通量,在15小时连续运行中通量下降不到8%,即在70°C时通量略有下降并保持高达74 kg·m-2·h-1。同时,通过清水冲洗很容易恢复损失的通量。在15小时的MD操作中总体实现了2.6倍的浓缩因子,肥料样品中63.4%的水分被去除。进一步浓缩可达到所需的5倍浓缩因子的工业标准。