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Development and Electrochemical Characterization of Nanocomposites for Biogas Based Fuel Cells

Thesis Info

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Author

Rafique, Asia

Program

PhD

Institute

COMSATS University Islamabad

City

Islamabad

Province

Islamabad.

Country

Pakistan

Thesis Completing Year

2019

Thesis Completion Status

Completed

Subject

Physics

Language

English

Link

http://prr.hec.gov.pk/jspui/bitstream/123456789/10572/1/Asia_Rafique_Physics_2019_CIIT_10.07.2019.pdf

Added

2021-02-17 19:49:13

Modified

2024-03-24 20:25:49

ARI ID

1676725855336

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Development and Electrochemical Characterization of Nanocomposites for Biogas Based Fuel Cells There is an urgent need to explore affordable and renewable energy resources because of the decline in reserves of fossil fuels. Biomass is an abundantly available resource in nature and can be used to generate energy in a sustainable manner. Fuel cells deliver a combination of advantages and make use of renewable energy sources. Solid oxide fuel cells (SOFCs), specifically, overcome the petroleum scarcity issue by using biofuel. The aim of this thesis is the development of nanocomposite electrolytes and anode composite catalysts for low-temperature SOFCs fuelled with biogas for clean energy applications. In the present work, Sr/Sm-doped ceria (Sr-SDC) nanocomposite electrolytes with a core shell structure are synthesized with different compositions for low temperature SOFCs. A co-doping technique is successfully used to achieve a significant enhancement in the ionic conductivity of 0.50 S/cm at 600 ˚C for the nanocomposite electrolyte Sr0.1Sm0.1Ce0.8O2-δ-carbonate. The carbonate phase (shell layer) acts as a barrier and protects the SDC (core) from the partial reduction by the fuel. This carbonate shell introduces an interface between these two phases, which is the key to realizing the interfacial super-ionic conduction pathways. This work also describes the development of ceria electrolytes that are doped and co-doped with lanthanum (La) and zirconium (Zr) and show excellent thermal stability. The ionic conductivity of La0.2Ce0.8O2-δ (LDC), Zr0.2Ce0.8O2-δ (ZDC) and Zr0.2La0.2Ce0.6O2-δ (ZLDC) has been measured in the temperature ranges of 450 °C to 650 °C and LDC achieved a high ionic conductivity of 0.81 × 10-2 S/cm. Thermal expansion coefficients (TECs) of these electrolytes have also been found to have good concurrence and compatibility with commonly used electrolytes and electrodes. The main objective of this work is the development of stable and active anode catalysts that run over biogas as well as hydrogen for low temperature SOFCs. The anode composite Ni0.6Zn0.4Gd0.2Ce0.8O2-δ (NiZn-GDC) has been developed that exhibits semiconductor conductive behaviour, and a maximum conductivity of 1.37 S/cm has been achieved at 600 ˚C. This composite anode is found to have excellent thermally stability as well as being carbon resistant to coking during testing with biogas. A maximum power density of 820 and 548 mW/cm2 has been reported with hydrogen and biogas fuels, respectively, at 600 ˚C. This thesis also describes Ni-based and Ni-free anode catalysts NiLiCu-oxide with LDC for SOFCs fuelled with biogas. The anode composite NLC622-LDC has reported a maximum DC conductivity of 3.47 S/cm with Pmax of 650 and 390 mW/cm2 for hydrogen and biogas, respectively, at 600 ˚C. A Ni free anode catalyst Zn0.2Li0.2Cu0.6O2-δ (ZnLiCu-oxide) is also developed as a potential candidate for biogas-based SOFCs that bypasses the difficulty of carbon deposition and has a maximum conductivity of 4.0 S/cm at 600 ˚C. An open circuit voltage (OCV) of 0.96 V is achieved with maximum power density of 600 mW/cm2 with biogas (50% methane) at 650 ˚C. In the present work, a theoretical model of FC system has been designed using MATLAB software, and it makes use of biomass (animal waste, redwood, rice husk and sugar cane). In the last part of the thesis, a partial research work has been conducted to cast the tapes of NiO-GDC (NiO-Gd0.1Ce0.9O1.95) as anode and GDC (Gd0.1Ce0.9O1.95) as electrolyte via aqueous tape casting method. The aqueous tape casting is an emerging and cost-effective technique for the commercialization of SOFCs but faces challenges with ceria tapes due to its poor mechanical strength and co-sintering of half-cells.
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جن خیالوں میں

جن خیالوں میں۔۔۔!
جن خیالوں میں اثبات درد کے ساتھ
سرخ دھڑکنوں کی تاثیر سمائی ہوئی ہے
وہ گمنام جزیروں سے۔۔۔
اک مہکتا ہوا خط لاتے ہوئے!
سوسن و نسترن میں زعفرانی گرھیں کھول کر!
چاہتوں کی میزان پر۔۔۔!
پہلی آہٹ۔۔۔پہلی فکر اور سوچ کو سوچتے ہوئے!
دشت میں اک تھکی ہاری ناقہ کے ساتھ،
تورات والانجیل جیسی غزالہ بھی لائی ہوئی ہے

جناب حسان، رواحہ اور جامی کے پاؤں چوم کر۔۔۔!
دریا کنارے مسافروں کو خیمہ زن کرتے ہوئے!
گل مریم کے کندھوں پر۔۔۔گل داؤدی کی گھٹڑی رکھتے ہوئے!
چاندنی کے ساتھ۔۔۔اک چراغ کا طواف کرنے آئی ہوئی ہے
تورات و انجیل جیسی غزالہ بھی لائی ہوئی ہے
پانیوں پر وجد طاری کرتے ہوئے!
محبتوں، چاہتوں کا صحیفہ تلاوت کرنے آئی ہوئی ہے
اک مہکتا ہوا خط بھی ساتھ لائی ہوئی ہے
تورات و انجیل جیسی غزالہ بھی لائی ہوئی ہے

Stylistic and Semantic Incongruities in the Earliest Purported English Translation of the Qur’an by Alexander Ross

Recognizing the unequivocal importance of English as the only and uncontested medium of global communication for disseminating the universal message of the Qur’an, this paper analyzes the ways in which translational incompetence or substantial incongruities could distort the very essence of the actual text and meaning of this last and  eternal message of Allah. Taking selected parts of the first two “ruku’s” of surah al-baqara as a case study,   it traces  some  salient  instances of such deviation  in the  earliest  purported English rendering of the Qur’an by Alexander Ross done  in the middle of the seventeenth century.  Besides  attempting  to make  readers wary of such misleading attempts,   it also  aims at  inculcating in them a sense of distinguishing the authentic works of genuinely qualified renderers from such  ill-motivated and ill-informed purported translations.

On Trace Inequalities and Compactness for Potential-Type Operators

Necessary and sufficient conditions on a weight function v guaranteeing the bounded- ness/compactness of the Riemann-Liouville transform with variable parameter R α(x) q(x) from L p(x) to L v are found. The measure of non-compactness of this operation is also estimated from both sides in variable exponent spaces. Necessary and sufficient conditions guaranteeing the trace inequality for positive kernel operators in classical Lebesgue spaces defined on cones of nilpotent groups are established. Compactness criteria for these operators in classical weighted Lebesgue spaces are also obtained. Two-sided estimate for Schatten-von Neumann ideal norms of weighted higher order kernel operators are established. Asymptotic formulas for singular numbers for some potential-type operators are derived. Some of these results are applied to the problem of the existence of non-negative solution for certain non- linear integral equation.