Prof. Dr. Md. Akhtarul Islam

Profil

Derzeitige StellungProfessor W-3 und Äquivalente
FachgebietChemische und Thermische Verfahrenstechnik,Ur- und Umformtechnik, Additive Fertigungsverfahren,Polymermaterialien
KeywordsPolymer composites, Sensors, Membrane science and technology, Photocatalysis, Water and wastewater treatment

Aktuelle Kontaktadresse

LandBangladesch
OrtShahajalal Science
Universität/InstitutionShahjalal University of Science and Technology
Institut/AbteilungDepartment of Chemical Engineering and Polymer Science

Gastgeber*innen während der Förderung

Prof. Dr. Dieter PaulInstitut für Chemie, Helmholtz-Zentrum hereon GmbH, Teltow
Prof. Dr.-Ing. Jan HoinkisInstitut für Angewandte Forschung (IAF), Hochschule Karlsruhe - Technik und Wirtschaft, Karlsruhe
Prof. Dr. Mathias UlbrichtLehrstuhl für Technische Chemie II, Universität Duisburg-Essen, Essen
Prof. Dr. Mathias UlbrichtLehrstuhl Verfahrenstechnik/Wassertechnik, Universität Duisburg-Essen, Essen
Prof. Dr.-Ing. Stefan PanglischLehrstuhl Verfahrenstechnik/Wassertechnik, Universität Duisburg-Essen, Essen
Beginn der ersten Förderung01.03.2000

Programm(e)

1999Georg Forster-Forschungsstipendien-Programm

Publikationen (Auswahl)

2019Vu Chi Doan, Minh Canh Vu, Nhat Anh Thi Thieu, Md. Akhtarul Islam, Pyeong Jun Park,Sung-Ryong Kim : Copper flake-coated cellulose scaffold to construct segregated network for enhancing thermal conductivity of epoxy composites . In: Composites Part B , 2019, 772-778
2019M. A. Islam and M. Ulbricht : Microfiltration membrane characterization by gas-liquid displacement porometry: Matching experimental pore number distribution with liquid permeability and bulk porosity . In: J Membr Sci, 2019, 104-116
2019Vu Chi Doan, Minh Canh Vu, Md. Akhtarul Islam and Sung-Ryong Kim : Poly(methyl methacrylate)-functionalized reduced graphene oxide-based core–shell structured beads for thermally conductive epoxy composites . In: J Appl Polym Sci., 2019,
2018M. M. Rahman, M. M. Alam, A. M. Asiri, M. A. Islam : 3,4-Diaminotoluene sensor development based on hydrothermally prepared MnCoxOy nanoparticles . In: Talanta , 2018, 17-25
2018Minh Canh Vu, Young Han Bae, Min Ji Yu, Md. Akhtarul Islam, Sung-Ryong Kim : Core-shell structured carbon nanotube-poly(methylmethacrylate) beads as thermo-conductive filler in epoxy composites . In: Composites Part A , 2018, 55-62
2018M. M. Alam, Abdullah M. Asiri, M. T. Uddin, M. A. Islam, and Mohammed M. Rahman : In-situ Glycine Sensor Development Based on ZnO/Al2O3/Cr2O3 Nanoparticles . In: ChemistrySelect , 2018, 11460-11468
2018Minh Canh Vu, Young Han Bae, Min Ji Yu, Won-Kook Choi, Md. Akhtarul Islam, Sung Ryong Kim : Thermally conductive adhesives from covalent-bonding of reduced graphene oxide to acrylic copolymer . In: J Adhesion, 2018,
2018M. M. Alam, Abdullah M. Asiri, M. T. Uddin, M. A. Islam and Mohammed M. Rahman : Wet-chemically prepared low-dimensional ZnO/Al2O3/Cr2O3 nanoparticles for xanthine sensor development using an electrochemical method . In: RSC Adv., 2018, 12562-12572
2017M. T. Uddin, M. A. Rahman, M. Rukanuzzaman, M. A. Islam: A Potential Low Cost Adsorbent for the Removal of Cationic Dyes from Aqueous Solutions. In: Appl. Water Sci. , 2017, 2831-2842
2017Mohammed M. Rahman, M. M. Alam, Abdullah M. Asiri, M.A. Islam: Fabrication of selective chemical sensor with ternary ZnO/SnO2/Yb2O3 Nanoparticles . In: Talanta , 2017, 215-223
2017M. A. Islam, M. S. Hossain and M. Ulbricht: Model-dependent analysis of gas flow/pore dewetting data for microfiltration membranes. In: J Membr Sci, 2017, 351-363
2015M.S. Rahman, M.A. Islam A simple cost-effective manometric respirometer: design and application in wastewater biomonitoring. In: Applied Water Science, 2015, 241-252
2015M. A. Islam and K. Begum Rheological behavior of coir-fiber-filled polypropylene composites at constant shear stress. In: Polym. Compos. , 2015, 51-61
2014P. Saha, M.Z Hossain, M. Salatul . I. Mozumder, M. Tamez Uddin., M.A. Islam J. Hoinkis, S.A. Deowan, Enrico Drioli, A. Figoli MBR Technology for Textile Wastewater Treatment: First Experience in Bangladesh. In: Membrane Water Treatment, an International Journal, 2014, 197-204
2014M. A. Islam, S. M. Muhtad, M. M.Islam, M. R.Amin, A Anwar, M. Ar. Islam and A. K. M. A. Haque Water-filter-based MBR Unit in Laundry Effluent Treatment. In: Indian J Chem Technology, 2014, 134-138
2013Md. Akhtarul Islam, M. S. A. Amin, J. Hoinkis: Optimal design of an activated sludge plant: theoretical analysis. In: Applied Water Science, 2013, 13201
2008Islam M. A., Mozumder M. S. I. and Uddin M. T. MBR- a Promising Technology for Wastewater Treatment: An Overview. In: Indian J Chem Technol., 2008,
2007Uddin M. T., Mozumder M. S. I, Figoli A, Islam M. A. and Drioli E Arsenic Removal by Conventional and Membrane Technology: An Overview. In: Indian J Chem Technol., 2007, 441-450
2006Islam M. A. and Islam M. S. Estimation of adsorption dosage to meet environmental requirements: Necessary data. In: J Bang Chem Soc , 2006, 83-87
2005Islam M. A. and Buschatz H. Assessment of Thickness-dependent gas permeability of polymer membranes. In: Indian J Chem Technol , 2005, 88-92
2005Karamisheva R. D. and Islam M. A. Development of a new model for Batch Sedimentation and Application to Secondary settling tanks Design. In: Water Env Res, 2005, 3066-3073
2004Islam M. A., Khan M. R. and Mazumder M.S.I.: Adsorption equilibrium and adsorption kinetics: a unified approach. In: Chem Eng Technol. , 2004, 1095-1098
2004Islam M. A.: Einstein-Smoluchowski Diffusion Equation: A Discussion. In: Physica Scripta, 2004, 120-125
2004Islam M A: Fickian Diffusion Equation - an Unsolfed Problem. In: Physica Scripta, 2004, 114-119
2004Islam M. A. and Buschatz H.: Mathematical formulations of basic diffusion equation . In: Brac Univ. J, 2004, 99-108
2002Islam M. A., H. Buschatz: Gas permeation through a glassy polymer membrane: chemical potentioal gradient or dual mobility mode? . In: Chemical Engineering Science, 2002, 2089-2099
2002Islam M. A., H. Buschatz, D. Paul: Non-equilibrium surface reactions - a factor in determining steady state diffusion flux. In: Journal of Membrane Science, 2002, 379-384