keyword
https://read.qxmd.com/read/38057317/t-cell-migration-requires-ion-and-water-influx-to-regulate-actin-polymerization
#21
JOURNAL ARTICLE
Leonard L de Boer, Lesley Vanes, Serena Melgrati, Joshua Biggs O'May, Darryl Hayward, Paul C Driscoll, Jason Day, Alexander Griffiths, Renata Magueta, Alexander Morrell, James I MacRae, Robert Köchl, Victor L J Tybulewicz
Migration of T cells is essential for their ability to mount immune responses. Chemokine-induced T cell migration requires WNK1, a kinase that regulates ion influx into the cell. However, it is not known why ion entry is necessary for T cell movement. Here we show that signaling from the chemokine receptor CCR7 leads to activation of WNK1 and its downstream pathway at the leading edge of migrating CD4+ T cells, resulting in ion influx and water entry by osmosis. We propose that WNK1-induced water entry is required to swell the membrane at the leading edge, generating space into which actin filaments can polymerize, thereby facilitating forward movement of the cell...
December 6, 2023: Nature Communications
https://read.qxmd.com/read/38043309/review-on-the-escalating-imperative-of-zero-liquid-discharge-zld-technology-for-sustainable-water-management-and-environmental-resilience
#22
REVIEW
I Abdelfattah, A M El-Shamy
This comprehensive review delves into the forefront of wastewater treatment technology, with a specific focus on the revolutionary concept of Zero Liquid Discharge (ZLD). (ZLD), underpinned by a sustainable ethos, aspires to accomplish total water reclamation, constituting a pivotal response to pressing environmental issues. The paper furnishes a historical panorama of (ZLD), elucidating its motivating factors and inherent merits. It navigates a spectrum of (ZLD) technologies encompassing thermal methodologies, (ZLD) synergized with Reverse Osmosis (RO), High-Efficiency Reverse Osmosis (HERO), Membrane Distillation (MD), Forward Osmosis (FO), and Electrodialysis Reversal (EDR)...
December 2, 2023: Journal of Environmental Management
https://read.qxmd.com/read/37999358/a-comprehensive-review-of-performance-of-polyacrylonitrile-based-membranes-for-forward-osmosis-water-separation-and-purification-process
#23
REVIEW
Nada Abounahia, Arqam Azad Shahab, Maryam Mohammad Khan, Hazim Qiblawey, Syed Javaid Zaidi
Polyacrylonitrile (PAN), with its unique chemical, electrical, mechanical, and thermal properties, has become a crucial acrylic polymer for the industry. This polymer has been widely used to fabricate ultrafiltration, nanofiltration, and reverse osmosis membranes for water treatment applications. However, it recently started to be used to fabricate thin-film composite (TFC) and fiber-based forward osmosis (FO) membranes at a lab scale. Phase inversion and electrospinning methods were the most utilized techniques to fabricate PAN-based FO membranes...
November 3, 2023: Membranes
https://read.qxmd.com/read/37917041/anaerobic-wastewater-treatment-and-potable-reuse-energy-and-life-cycle-considerations
#24
JOURNAL ARTICLE
Andrew H Kim, Craig S Criddle
Anaerobic secondary treatment has the potential to facilitate energy-positive operations at wastewater treatment plants, but post-treatment of the anaerobic effluent is needed to recover dissolved methane and nutrients and remove sulfide. In this study, a life cycle assessment was conducted to compare hypothetical full-scale wastewater treatment trains and direct potable reuse trains that combine the staged anaerobic fluidized membrane bioreactor (SAF-MBR) with appropriate post-treatment. We found that anaerobic wastewater treatment trains typically consumed less energy than conventional aerobic treatment, but overall global warming potentials were not significantly different...
November 2, 2023: Environmental Science & Technology
https://read.qxmd.com/read/37890801/recent-advances-in-surface-tailoring-of-thin-film-forward-osmosis-membranes-a-review
#25
REVIEW
Javad Farahbakhsh, Mitra Golgoli, Mehdi Khiadani, Mohadeseh Najafi, Wafa Suwaileh, Amir Razmjou, Masoumeh Zargar
The recent advancements in fabricating forward osmosis (FO) membranes have shown promising results in desalination and water treatment. Different methods have been applied to improve FO performance, such as using mixed or new draw solutions, enhancing the recovery of draw solutions, membrane modification, and developing FO-hybrid systems. However, reliable methods to address the current issues, including reverse salt flux, fouling, and antibacterial activities, are still in progress. In recent decades, surface modification has been applied to different membrane processes, including FO membranes...
October 25, 2023: Chemosphere
https://read.qxmd.com/read/37844700/preparation-of-chitosan-citral-forward-osmosis-membrane-via-schiff-base-reaction-with-enhanced-anti-bacterial-properties
#26
JOURNAL ARTICLE
Lei Wu, Xiaolu Gong, Cong Ma, Lan Xu, Ming Li, Chen Lyu, Nan Sun
In this study, hydrogels generated by the Schiff base reaction between citral and chitosan (CS) were used for the first time to improve the anti-bacterial property of forward osmosis (FO) membranes. The composite membranes were characterized by scanning electron microscopy (SEM), Fourier transform infrared (FTIR), Water contact angle (WCA), Zeta potential and confocal laser scanning microscopic (CLSM). In the FO filtration experiment, the membrane performance of TFC-1 with 1 M sodium chloride solution as the draw solution and deionized water as the feed solution was the best, with the water flux of 25...
October 14, 2023: Chemosphere
https://read.qxmd.com/read/37830989/modeling-of-transport-phenomena-in-a-hybrid-forward-osmosis-directional-freeze-crystallization-process-for-clean-water-recovery-from-hydrometallurgical-effluents
#27
JOURNAL ARTICLE
Afshin Amani, Georgios Kolliopoulos
Sustainable water recovery and reuse are critical yet challenging, especially from industrial effluents in cold regions. This work presents a robust numerical model of the transport phenomena in a hybrid two-step forward osmosis (FO)-directional freeze crystallization (DFC) desalination process, whose application in areas with cold climates is advantageous. Deionized (DI) water and a hydrometallurgical effluent were considered as the feed solution in the FO step, while three aqueous solutions of inorganic salts were considered as the draw solutions (DS): NaCl, CaCl2 , and MgCl2 ...
October 2023: Water Science and Technology: a Journal of the International Association on Water Pollution Research
https://read.qxmd.com/read/37802097/high-performance-novel-polyoxometalate-ldh-nanocomposite-modified-thin-film-nanocomposite-forward-osmosis-membranes-a-study-of-desalination-and-antifouling-performance
#28
JOURNAL ARTICLE
Mojtaba Amini, Asal Haji Hosseinzadeh, Mohammad Nikkhoo, Mojtaba Hosseinifard, Amir Namvar, Hadi Naslhajian, Arshad Bayrami
Numerous investigations have focused on creating effective membranes for desalination in order to alleviate the water scarcity crisis. In this study, first, LDH nanoplates were synthesized and utilized to alter the surface of thin-film composite (TFC) membranes in the course of this investigation. Following that, a simple technique was used to produce a novel nanocomposite incorporating LDH layers and Na14 (P2 W18 Co4 O70 )·28H2 O polyoxometalate nanoparticles, resulting in the creation of a fresh variety of thin-film nanocomposite (TFN)...
October 6, 2023: Langmuir: the ACS Journal of Surfaces and Colloids
https://read.qxmd.com/read/37755182/arginine-functionalized-thin-film-composite-forward-osmosis-membrane-integrating-antifouling-and-antibacterial-effects
#29
JOURNAL ARTICLE
Yichen Chen, Wenmeng Yu, Hu Cao
Membrane fouling is an inevitable obstacle of polyamide composite forward osmosis (FO) membranes in oily wastewater treatment. In this study, zwitterionic arginine (Arg) is grafted onto nascent self-made FO polyamide poly(ether sulfone) (PA-PES) membrane, imparting superior hydrophilic, antifouling, and antibacterial properties to the membrane. Detailed characterizations revealed that the Arg-modified (Arg-PES) membrane presented obviously surface positively charged and unique morphology. Results showed that our strategy endowed the optimized membrane, the water flux increased by 113...
August 28, 2023: Membranes
https://read.qxmd.com/read/37708772/integrating-anaerobic-acidification-with-two-stage-forward-osmosis-concentration-for-simultaneously-recovering-organic-matter-nitrogen-and-phosphorus-from-municipal-wastewater
#30
JOURNAL ARTICLE
Siyi Chen, Zunaira Habib, Zhiwei Wang, Pin Zhao, Weilong Song, Xinhua Wang
In order to meet the demand of municipal wastewater for low-carbon treatment and resource recovery, a novel process of anaerobic acidification membrane bioreactor (AAMBR) assisted with a two-stage forward osmosis (FO) (FO-AAMBR-FO) was developed for simultaneously recovering organic matter and nutrients from municipal wastewater. The results indicated that the first FO process concentrated the municipal wastewater to one tenth of the initial volume. The corresponding chemical oxygen demand (COD), ammonia nitrogen (NH4 + -N) and total phosphorus (TP) concentration reached up to 2800, 200 and 33 mg/L, respectively...
September 7, 2023: Water Research
https://read.qxmd.com/read/37659548/pressure-driven-membrane-filtration-technology-for-terminal-control-of-organic-dbps-a-review
#31
REVIEW
Shuai Xia, Meijun Liu, Haiyang Yu, Donglei Zou
Disinfection by-products (DBPs), a series of undesired secondary contaminants formed during the disinfection processes, deteriorate water quality, threaten human health and endanger ecological safety. Membrane-filtration technologies are commonly used in the advanced water treatment and have shown a promising performance for removing trace contaminants. In order to gain a clearer understanding of the behavior of DBPs in membrane-filtration processes, this work dedicated to: (1) comprehensively reviewed the retention efficiency of microfiltration (MF), ultrafiltration (UF), nanofiltration (NF) and reverse osmosis (RO) for DBPs...
August 31, 2023: Science of the Total Environment
https://read.qxmd.com/read/37657319/fabricated-magnetic-adsorption-forward-osmosis-membrane-hybrid-system-for-hydroponic-irrigation-from-rich-arsenic-containing-heavy-metal-water-stream
#32
JOURNAL ARTICLE
Duc Anh Nguyen, Duc Viet Nguyen, Ganghyeon Jeong, Nosheen Asghar, Am Jang
Solidification of soluble arsenic from extremely acidic water and direct use of recovery water have been the major challenges in global water management, with the urgent need for new treatment system development. Thus, magnetic adsorption - fertilizer drawn forward osmosis (FDFO) hybrid system with a novel adsorbent and fertilizer mixture to solve the drawbacks of each process was developed with the ultimate goals of metal removal and direct reuse for hydroponic irrigation. Magnetic metal-organic framework-based adsorbent (CMM) was synthesized with various promising capabilities, i...
August 9, 2023: Journal of Hazardous Materials
https://read.qxmd.com/read/37634380/photocatalytic-hydrogel-film-assisted-forward-osmosis-pfo-for-water-treatment-sustainable-performance-and-contaminant-control
#33
JOURNAL ARTICLE
Mengyang Lu, Hanmin Zhang, Yu Tian, Wei Yao, Junsheng Wang, Yuezhu Wang
The integration of catalytic oxidation with forward osmosis (FO) holds promising potential to address two crucial challenges encountered by FO: fouling and unsustainable performance, but suitable approaches are still rare. Herein, we have successfully developed a photocatalysis-assisted forward osmosis (PFO) system. In the PFO, a self-made porous carbon nitride doped functional carbon nanotube photocatalytic hydrogel film (PCN@CNTM) was engaged in the FO process in an inventive way by simply sticking to the commercial FO membrane surface, preventing damage to the membrane from the catalyst's direct insertion and delaying the assault from the oxidation groups...
August 22, 2023: Journal of Hazardous Materials
https://read.qxmd.com/read/37623806/theoretical-model-for-the-prediction-of-water-flux-during-the-concentration-of-an-olive-mill-wastewater-model-solution-by-means-of-forward-osmosis
#34
JOURNAL ARTICLE
Magdalena Cifuentes-Cabezas, Silvia Álvarez-Blanco, José Antonio Mendoza-Roca, María Cinta Vincent-Vela, José M Gozálvez-Zafrilla
Currently, understanding the dynamics of the interaction between the agents in a process is one of the most important factors regarding its operation and design. Membrane processes for industrial wastewater management are not strangers to this topic. One such example is the concentration of compounds with high added value, such as the phenolic compounds present in olive mill wastewater (OMW). This process is a viable option, thanks to the forward osmosis (FO) process, osmotically driven by a saline stream. In this context, the transport of the solute and the solvent through the FO membranes, although essential to the process, remains problematic...
August 21, 2023: Membranes
https://read.qxmd.com/read/37614003/high-performance-novel-mos-2-zeolite-x-nanocomposite-modified-thin-film-nanocomposite-forward-osmosis-membranes-a-study-of-desalination-and-antifouling-performance
#35
JOURNAL ARTICLE
Mojtaba Amini, Mohammad Nikkhoo, Mojtaba Bagherzadeh, Mohammad Mahdi Ahadian, Arshad Bayrami, Hadi Naslhajian, Mohammad Hasanzadeh Karamjavan
Novel thin-film nanocomposite (TFN) membranes modified by the MoS2 @Zeolite X nanocomposite were made and studied for desalination by the forward osmosis (FO) method. Herein, MoS2 @Zeolite X nanocomposite (MoS2 @Z) and zeolite X particles are integrated into the polyamide (PA) selective layer of the TFN membranes, separately. The aim of this study is the synthesis of nanocomposites containing hydrophilic zeolite X particles with a modified surface and pore and improvement of their effective properties on desalination and antifouling performance...
August 23, 2023: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/37540002/desalination-water-re-use-and-halophyte-cultivation-in-salinized-regions-a-highly-productive-groundwater-treatment-system
#36
JOURNAL ARTICLE
Kiho Park, Anurag Mudgal, Varsha Mudgal, Moshe Sagi, Dominic Standing, Philip A Davies
Groundwater salinization is a problem affecting access to water in many world regions. Though desalination by conventional reverse osmosis (RO) can upgrade groundwater quality for drinking, its disadvantages include unmanaged brine discharge and accelerated groundwater depletion. Here, we propose a new approach combining RO, forward osmosis (FO), and halophyte cultivation, in which FO optimally adjusts the concentration of the RO reject brine for irrigation of Salicornia or Sarcocornia . The FO also re-uses wastewater, thus, reducing groundwater extraction and the wastewater effluent volume...
August 4, 2023: Environmental Science & Technology
https://read.qxmd.com/read/37517485/an-efficient-data-driven-desalination-approach-for-the-element-scale-forward-osmosis-fo-reverse-osmosis-ro-hybrid-systems
#37
JOURNAL ARTICLE
Sung-Ju Im, Nguyen Duc Viet, Byung-Tae Lee, Am Jang
Freshwater shortages are a consequence of the rapid increase in population, and desalination of saltwater has gained popularity as an alternative water treatment method in recent years. To date, the forward osmosis-reverse osmosis (FO-RO) hybrid technology has been proposed as a low-energy and environmentally friendly next-generation seawater desalination process. Scaling up the FO-RO hybrid system significantly affects the success of a commercial-scale process. However, neither the ideal structure nor the membrane components for plate-and-frame FO (PFFO) and spiral-wound FO (SWFO) are known...
July 28, 2023: Environmental Research
https://read.qxmd.com/read/37505054/preparation-of-thin-film-composite-tfc-membrane-with-desps-interlayer-and-its-forward-osmosis-fo-performance-for-organic-solvent-recovery
#38
JOURNAL ARTICLE
Jingyi Liang, Hansheng Huang, Hao Zhang, Yanhui Wu, Yongbing Zhuang
To explore the application of forward osmosis (FO) technology in the organic solvent recovery field, we prepared a new solvent-resistant triple layer thin film composite (TFC) membrane on the PI (polyimide) substrate. The deep eutectic supramolecular polymers (DESPs) interlayer was constructed on the substrate to improve the separation performance and solvent resistance. DESPs interlayer was formed by mixing and heating with cyclodextrin as the hydrogen bond acceptor and L -malic acid as the hydrogen bond donor...
July 24, 2023: Membranes
https://read.qxmd.com/read/37505021/forward-osmosis-application-for-the-removal-of-emerging-contaminants-from-municipal-wastewater-a-review
#39
REVIEW
Mónica Salamanca, Mar Peña, Antonio Hernandez, Pedro Prádanos, Laura Palacio
Forward osmosis (FO) has attracted special attention in water and wastewater treatment due to its role in addressing the challenges of water scarcity and contamination. The presence of emerging contaminants in water sources raises concerns regarding their environmental and public health impacts. Conventional wastewater treatment methods cannot effectively remove these contaminants; thus, innovative approaches are required. FO membranes offer a promising solution for wastewater treatment and removal of the contaminants in wastewater...
July 10, 2023: Membranes
https://read.qxmd.com/read/37505020/fabrication-of-pes-modified-by-tio-2-na-2-ti-3-o-7-nanocomposite-mixed-matrix-woven-membrane-for-enhanced-performance-of-forward-osmosis-influence-of-membrane-orientation-and-feed-solutions
#40
JOURNAL ARTICLE
Ghadah M Al-Senani, Mervat Nasr, Mohamed Zayed, Sahar S Ali, Hind Alshaikh, Hanafy M Abd El-Salam, Mohamed Shaban
Water treatment is regarded as one of the essential elements of sustainability. To lower the cost of treatment, the wastewater volume is reduced via the osmotic process. Here, mixed-matrix woven forward osmosis (MMWFO) PES membranes modified by a TiO2 /Na2 Ti3 O7 (TNT) nanocomposite were fabricated for treating water from different sources. Various techniques were used to characterize the TNT nanocomposite. The crystal structure of TNT is a mix of monoclinic Na2 Ti3 O7 and anorthic TiO2 with a preferred orientation of (2-11)...
July 8, 2023: Membranes
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