Song Dan, Du Haiyao, Chen Shichun, Han Xiaodie, Wang Lu, Li Yonggang, Liu Caihong, Zhang Wenjuan, Ma Jun
School of Marine Science and Technology, Harbin Institute of Technology at Weihai, Weihai 264209, China.
PetroChina Harbin Petrochemical Company, Harbin 150056, China.
Membranes (Basel). 2024 Dec 6;14(12):260. doi: 10.3390/membranes14120260.
The issue of environmental pollution caused by wastewater discharge from fruit juice production has attracted increasing attention. However, the cost-effectiveness of conventional treatment technology remains insufficient. In this study, a gravity-driven membrane bioreactor (GDMBR) was developed to treat real fruit juice wastewater from secondary sedimentation at pressures ranging from 0.01 to 0.04 MPa without requiring backwashing or chemical cleaning, with the aim of investigating flux development and contaminant removal under low-energy conditions. The results demonstrate an initial decrease in flux followed by stabilization during long-term filtration. Moreover, the stabilized flux level achieved with the GDMBR at pressures of 0.01 and 0.02 MPa was observed to surpass that obtained at 0.04 MPa, ranging from 4 to 4.5 L/m h. The stability of flux was positively associated with the low membrane fouling resistance observed in the GDMBR system. Additionally, the GDMBR system provided remarkable efficiencies in removing the chemical oxygen demand (COD), biological oxygen demand (BOD), ammonia (NH-N), and total nitrogen (TN), with average removal rates of 82%, 80%, 83%, and 79%, respectively. The high biological activity and microbial community diversity within the sludge and biofilm are expected to enhance its biodegradation potential, thereby contributing to the efficient removal of contaminants. Notably, a portion of total phosphorus (TP) can be effectively retained in the reactor, which highlighted the promising application of the GDMBR process for actual fruit juice wastewater based on these findings.
果汁生产废水排放所造成的环境污染问题已引起越来越多的关注。然而,传统处理技术的成本效益仍然不足。在本研究中,开发了一种重力驱动膜生物反应器(GDMBR),用于处理二次沉淀池中的实际果汁废水,压力范围为0.01至0.04MPa,无需反冲洗或化学清洗,目的是研究低能量条件下的通量发展和污染物去除情况。结果表明,在长期过滤过程中,通量最初会下降,随后趋于稳定。此外,观察到GDMBR在0.01和0.02MPa压力下达到的稳定通量水平超过了在0.04MPa时的水平,范围为4至4.5L/m·h。通量的稳定性与GDMBR系统中观察到的低膜污染阻力呈正相关。此外,GDMBR系统在去除化学需氧量(COD)、生化需氧量(BOD)、氨(NH-N)和总氮(TN)方面具有显著效率,平均去除率分别为82%、80%、83%和79%。污泥和生物膜内的高生物活性和微生物群落多样性有望增强其生物降解潜力,从而有助于有效去除污染物。值得注意的是,一部分总磷(TP)可以有效地保留在反应器中,基于这些发现突出了GDMBR工艺在实际果汁废水处理中的应用前景。