ข้ามไปยังเนื้อหาหลัก
กลับไปโปรไฟล์ผู้เชี่ยวชาญ

ผศ.ดร.วิรัช ทวีปรีดา

ผลงานตีพิมพ์ทั้งหมด

92 public publications

Page size102550

Effect of Viscosity and Air Gap within the Spinneret on the Morphology and Mechanical Properties of Hollow-Fiber Polymer Membranes for Separation Performance

Sirisak Seansukato, Sathish Kumar Ramachandran, Sivamesh Lamlong, Wirach Taweepreda, G. Arthanareeswaran

Polymers · 2024

Hollow-fiber membranes for nanofiltration were prepared from the blending of Poly (ethylene glycol) (PEG) with Poly (vinyl chloride) (PVC) with different PEG molecular weights (400 and 4000 g/mol) and PVC via a dry/wet spinning process. In the spinning process, the effects of air gap, wind-up speed, dope extrusion rate, and bore extrusion rate were examined. In addition, the different lengths of the center tube, which acted as the inner-side fiber diameter during the preparation of hollow-fiber membranes, were studied. This research was investigated in order to observe the morphological, dielectric, and dynamic mechanical thermal properties to identify a suitable preparation of a hollow-fiber membrane for feasible applications. The morphology of the PVC-580 blended PEG-400 5 weight percent hollow-fiber membrane was seen to have a dense skin on both the inner and outer fiber surface, along with a suitable dope viscosity. Moreover, it offered finger-like substructures that could provide a high applicable feed-stream permeability and selectivity. Finger-like substructures were present on the near inner fiber surface at the controlled center-tube length of 0.3 cm, more so than at the center tube of 1 cm. This was because the solvent and non-solvent in the lumen tube exchanged more quickly than they did in the coagulant bath. The effect of the wind-up speed during the spinning process was significantly influenced by an affordable hollow fiber that can be indicated by the drawing ratio (λ). It was found that the drawing ratio of 3.3 showed a thickness thinner than 2.6 and 2.0, respectively. In summary, a controlled wind-up speed, an acceptable dope viscosity, and—most importantly—an agglomerated time resulted in membrane preparation.

Photocatalytic bio‐inspired PDA‐RGO / g‐C3N4 nanocomposite incorporated PES membrane for removal of environmental antibiotic pollutants

B. Govardhanan, S. A. Gokula Krishnan, G. Arthanareeswaran, M. Ashok, Yong‐Song Chen, Wirach Taweepreda

Journal of Chemical Technology & Biotechnology · 2024

Abstract BACKGROUND Membrane technology makes it more suitable for the treatment of environmental polluted organic wastewater. Membrane fouling is one of the major concerns in commercial membranes. To overcome this issue, photocatalytic nanomaterials are embedded into the membrane to enhance its surface nature and reusability. In this investigation, polydopamine functionalized graphene oxide (PDA‐RGO), graphite carbon nitride (g‐C3N4) and PDA‐RGO/g‐C3N4 nanomaterials were incorporated within polyethersulfone membrane fabricated via a phase inversion technique. These as‐prepared membranes’ functional groups and surface morphologies were investigated by Fourier transform infrared (FTIR) spectroscopy, atomic force microscopy (AFM) and field emission electron microscopy (FESEM). These as‐prepared membranes were investigated for photocatalytic activity under visible‐light‐driven photodegradation by environmental pollutants such as Rhodamine B (RhB) and Norfloxacin (NOR). RESULTS Compared with pristine PES membrane, the PDA‐RGO/g‐C3N4‐PES nanocomposite membrane showed higher photocatalytic activity for Rhodamine B 94.6% and Norfloxacin 96.8%, also reached greater water flux 189 L m−2 h−1. Therefore, the bio‐inspired nanocomposite‐modified PDA‐RGO/g‐C3N4 photocatalytic membrane could have huge potential in processing environmentally polluted water. CONCLUSIONS PDA‐RGO/g‐C3N4‐PES nanocomposite membrane improved the membrane hydrophilicity, water flow, anti‐fouling performance, rejection studies and photocatalytic degradation than the pristine membrane. The synergistic result of PDA‐RGO and g‐C3N4 exhibits better photodegradation efficiency of the membrane towards environmental pollutants. © 2024 Society of Chemical Industry (SCI).

Advancements in sludge-to-energy strategies for rubber processing industries: a comprehensive review

Kyu Kyu Tin, Wirach Taweepreda, A. Singh, Anil Kumar

International Journal of Energy and Water Resources · 2024

Author response for "Fallen Leaves to Sustainable Energy Solution: Review on Hydrogen Production"

Kyu Kyu Tin, Wirach Taweepreda, Akanksha Singh, Naresh Kumar Wagri, Anil Kumar

2024

Multifaceted Impact of Lipid Extraction on the Characteristics of Polymer-Based Sewage Sludge towards Sustainable Sludge Management

Nor Afifah Khalil, Ahmad Fiqhri Lajulliadi, Fatin Najwa Joynal Abedin, Ahmad Noor Syimir Fizal, Sairul Izwan Safie, Muzafar Zulkifli, Wirach Taweepreda, Md. Sohrab Hossain, Ahmad Naim Ahmad Yahaya

Polymers · 2024

Dewatered sludge (DS) is a sewage sludge with a unique property due to extracellular polymeric substances (EPSs) and polymer flocculants. These components form a stable 3D polymer network to increase dewatering efficiency, leaving behind valuable materials such as lipids. This article explored the influences of DS particle size on lipid yield and the effects of extraction on the chemical, morphological, and thermal properties of the residual dewatered sludge (RDS). Lipid yields with unimodal distribution were observed across the particle size ranges (<0.5, 0.5-1.0, 1.0-2.0, 2.0-4.0, and 4.0 mm). The highest lipid yield of 1.95% was extracted from 1.0-2.0 mm after 4 h at 70 °C and 0.1 g/mL sludge-to-solvent ratio. Efficiency was influenced by the DS's morphology, facilitating solvent infiltration and pore diffusion. The extraction process reduced water and organic fractions, resulting in higher thermal stability. Bibliometric analysis of "extraction*" and "sewage sludge" shows increasing research interest from 1973 to 2024. Five research clusters were observed: heavy metal speciation and stabilization, sludge and its bioavailability, extraction techniques and resource recovery, contaminants remediation, as well as phosphorus recovery and agricultural applications. These clusters highlight the diverse approaches to researching DS and RDS while promoting sustainable waste management.

Unravelling the kinetics, isotherms, thermodynamics, and mass transfer behaviours of Zeolite Socony Mobil - 5 in removing hydrogen sulphide resulting from a dark fermentative biohydrogen production process

Muhammad Khairul Adha Asman, Nabilah Aminah Lutpi, Yee‐Shian Wong, Soon‐An Ong, Muhammad Adli Hanif, Naimah Ibrahim, Farrah Aini Dahalan, Wirach Taweepreda, Raja Nazrul Hakim Raja Nazri

Physical Chemistry Chemical Physics · 2024

hexose consumed after adsorption at a temperature of 25 °C. The Avrami kinetic model was fitted for hydrogen sulphide removal on Zeolite Socony Mobil - 5. The process is explained well and fitted using the Temkin isotherm model and the investigation into thermodynamics reveals that the adsorption behaviour is exothermic and non-spontaneous. Furthermore, the gas molecule's freedom of movement becomes random. The adsorption phase is restricted by intra-particle diffusion followed by film diffusion during the transfer of hydrogen sulphide into the pores of Zeolite Socony Mobil - 5 prior to adsorption on its active sites. The utilisation of Zeolite Socony Mobil - 5 for hydrogen sulphide removal offers the benefit of reducing environmental contamination and exhibiting significant applications in industrial operations.

Correction: NaCMC-decorated ZnO nanocomposite polymer membranes for the separation of reactive dyes from textile water

R. Robin, Vinoth Kumar Raja, R. Sathish Kumar, G. Arthanareeswaran, Wirach Taweepreda

New Journal of Chemistry · 2023

Correction for ‘NaCMC-decorated ZnO nanocomposite polymer membranes for the separation of reactive dyes from textile water’ by R. Robin et al. , New J. Chem. , 2023, 47, 20517–20526, https://doi.org/10.1039/D3NJ03783E.

Isolation, purification and characterization of β-glucan from cereals - A review

S. Sujithra, G. Arthanareeswaran, Ahmad Fauzi Ismail, Wirach Taweepreda

International Journal of Biological Macromolecules · 2023

Modification of chitosan-based membrane with epoxidized natural rubber for PEMFC application

Anuchit Wichianchom, Wirach Taweepreda, Qamber Ali, G. Arthanareeswaran

Journal of Rubber Research · 2023

Effect of TiO2 concentration in PVDF-TiO2-PVP mixed matrix membrane performance using ultrafiltration process

Rianyza Gayatri, Erna Yuliwati, Ahmad Noor Syimir Fizal, Muhamad Zulhilmi Zailani, Juhana Jaafar, Muzafar Zulkifli, Wirach Taweepreda, Ahmad Naim Ahmad Yahaya

Materials Today Proceedings · 2023

Page 3 of 10

การใช้คุกกี้วิเคราะห์

เว็บไซต์นี้ใช้ Google Analytics เพื่อดูภาพรวมการใช้งาน เช่น จำนวนผู้เข้าชมและหน้าที่ได้รับความสนใจ โดยจะเปิดใช้เมื่อคุณยอมรับเท่านั้น

ยังไม่ได้เลือก