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Dive into the research topics where Kazi Afzalur Rahman is active.

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Featured researches published by Kazi Afzalur Rahman.


Heat Transfer Engineering | 2010

Adsorption Parameter and Heat of Adsorption of Activated Carbon/HFC-134a Pair

Wai Soong Loh; M. Kumja; Kazi Afzalur Rahman; Kim Choon Ng; Bidyut Baran Saha; Shigeru Koyama

This article presents the adsorption isotherms of HFC-134a and activated carbon Maxsorb III measured using the constant-volume–variable-pressure method. The adsorption isotherms cover temperature ranges from 293 to 338 K and pressures up to 0.7 MPa. The trends of the experimental isotherms for activated carbon are found to be identical in all cases with previous studies except that the vapor uptake is slightly higher. The adsorption characteristic of the Dubinin–Ashtakov equation has been regressed from the experimental isotherms data and the maximum specific uptake is 2.15 kg of adsorbate adsorbed per kilogram of activated carbon. The heat of adsorption, which is concentration and temperature dependent, has also been extracted from the experiments.


Modern Physics Letters B | 2010

PARAMETRIC STUDIES OF CHARGING AND DISCHARGING IN ADSORBED NATURAL GAS VESSEL USING ACTIVATED CARBON

Wai Soong Loh; Kazi Afzalur Rahman; Kim Choon Ng; Bidyut Baran Saha; Anutosh Chakraborty

This paper presents the adsorption isotherm experiment of Methane and Maxsorb III activated carbon that was conducted and analyzed at temperatures from 5 to 55 °C and pressures up to 2.2 MPa in a volumetric apparatus. It is a complementary to the previous efforts by ways of analyzing the importance between charging and discharging rate, temperature increase and reduce of the bed, the heat transfer process, and the cylinder cooling and heating requirements during the charging and discharging of adsorbed natural gas.


Proceedings of the 2nd Annual Gas Processing Symposium#R##N#Qatar, January 10-14, 2010 | 2010

Adsorption Thermodynamics of Natural Gas Storage onto Pitch-Based Activated Carbons

Kazi Afzalur Rahman; Wai Soong Loh; Anutosh Chakraborty; Bidyut Baran Saha; Kim Choon Ng

Publisher Summary This article presents the adsorption characteristics of methane, which is the major component of NG, on two types of pitch-based activated carbons namely Maxsorb III and ACF (A-20) in the temperature ranges from 5 to 65°C and pressures up to 2.5 MPa. Adsorbed natural gas (ANG) has recently become competitive to compressed natural gas (CNG) for storage and transportation purposes with high energy density and at much lower pressure than CNG. The adsorption characteristics of adsorbents are important information for uptake capacity and thermal management of the adsorptive gas storage. Natural gas has potentially become an alternative energy source in many sectors due to the instability in oil markets and the increase in environmental concerns. The substantial reduction of pollutant emissions and clean combustion are main benefits of natural gas, whose main ingredient is methane. It is widely being popular as a transportation fuel because of relatively lower cost than the oil-derived fuels and prevalent availability in many parts of the world.


International Journal of Modern Physics: Conference Series | 2012

EXPERIMENTAL INVESTIGATIONS OF ADSORBED NATURAL GAS STORAGE SYSTEM WITH ENHANCED THERMAL MANAGEMENT

Kazi Afzalur Rahman; Wai Soong Loh; Kim Choon Ng; Wongee Chun

An adsorbed natural gas (ANG) storage system with internal thermal control, based on fin and tube type heat exchanger is investigated in this study. The adsorbent bed, which consists of Maxsorb III activated carbon packed in between copper fins and tubes, is demonstrated to study the storage capacity and thermal management of the ANG storage system. The cylinder is pressurized up to 35 bar and water is circulated through the tubes during charge process for quick removal of adsorption heat, thus to increase the storage capacity. Similarly, the adsorbent bed is heated up during discharge process to maximize the gas delivery. The current experimental arrangement presented shows higher storage capacity and better thermal management than the adsorbent bed without fin and tube arrangement.


Journal of Chemical & Engineering Data | 2010

Improved Isotherm Data for Adsorption of Methane on Activated Carbons

Wai Soong Loh; Kazi Afzalur Rahman; Anutosh Chakraborty; Bidyut Baran Saha; Yoo Sang Choo; Boo Cheong Khoo; Kim Choon Ng


International Journal of Heat and Mass Transfer | 2012

On thermodynamics of methane + carbonaceous materials adsorption

Kazi Afzalur Rahman; Anutosh Chakraborty; Bidyut Baran Saha; Kim Choon Ng


Journal of Chemical & Engineering Data | 2010

Experimental Adsorption Isotherm of Methane onto Activated Carbon at Sub-and Supercritical Temperatures

Kazi Afzalur Rahman; Wai Soong Loh; Hideharu Yanagi; Anutosh Chakraborty; Bidyut Baran Saha; Won Gee Chun; Kim Choon Ng


Applied Thermal Engineering | 2011

Thermal enhancement of charge and discharge cycles for adsorbed natural gas storage

Kazi Afzalur Rahman; Wai Soong Loh; Anutosh Chakraborty; Bidyut Baran Saha; Won Gee Chun; Kim Choon Ng


International Journal of Refrigeration-revue Internationale Du Froid | 2010

Experimental study on adsorption kinetics of activated carbon/R134a and activated carbon/R507A pairs

Khairul Habib; Bidyut Baran Saha; Kazi Afzalur Rahman; Anutosh Chakraborty; Shigeru Koyama; Kim Choon Ng


Journal of Chemical & Engineering Data | 2011

Adsorption Isotherms of CH4 on Activated Carbon from Indonesian Low Grade Coal

Awaludin Martin; Wai Soong Loh; Kazi Afzalur Rahman; Kyaw Thu; Bambang Surayawan; M. Idrus Alhamid; Nasruddin; Kim Choon Ng

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Kim Choon Ng

King Abdullah University of Science and Technology

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Wai Soong Loh

National University of Singapore

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Anutosh Chakraborty

Nanyang Technological University

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Won Gee Chun

Jeju National University

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Anutosh Chakraborty

Nanyang Technological University

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Boo Cheong Khoo

National University of Singapore

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Hideharu Yanagi

National University of Singapore

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M. Kumja

National University of Singapore

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Yoo Sang Choo

National University of Singapore

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