Search or add a thesis

Advanced Search (Beta)
Home > Study of the Impact of Geotrichum Candidum on Lipid Composition of Fermented Milk

Study of the Impact of Geotrichum Candidum on Lipid Composition of Fermented Milk

Thesis Info

Author

Ifrah Kiren

Department

Department of Microbiology, QAU

Program

Mphil

Institute

Quaid-i-Azam University

Institute Type

Public

City

Islamabad

Province

Islamabad

Country

Pakistan

Thesis Completing Year

2017

Thesis Completion Status

Completed

Page

viii, 61

Subject

Microbiology

Language

English

Other

Call No: DISS / M.Phil / BIO / 5126

Added

2021-02-17 19:49:13

Modified

2023-02-19 12:33:56

ARI ID

1676716294913

Similar


Loading...
Loading...

Similar Books

Loading...

Similar Chapters

Loading...

Similar News

Loading...

Similar Articles

Loading...

Similar Article Headings

Loading...

حاجی شیخ رشید احمد

آہ! حاجی شیخ رشید احمد صاحب مرحوم
۱۹۵۲ء جس کو ’’عام الحزن‘‘کہنا چاہیے اس کی ابتدا بردار مکرم مولانا یعقوب الرحمن عثمانی کی وفات کے سانحۂ المناک سے ہوئی اورانتہا حضرت مولانا مفتی محمد کفایت اﷲ قدس سرہ کے حادثۂ ارتحال پر، اسی سال برادر عزیز مولانا سعید احمد کے والد ماجد قبلہ ڈاکٹر ابرار حسین صاحب، محب باصفا حافظ ضیاء الدین صاحب مدیر ندائے حرم، قرول باغ کے غمگسار پڑوسی چودھری محمد بخش صاحب اور بچپن کے بے تکلف ساتھی قاری محمد طاہر صاحب ناظم دارالصنائع دارالعلوم دیوبند رخصت ہوئے، یہاں تک کہ ۲دسمبر کی درمیانی شب میں مخدومی حاجی شیخ رشید احمد صاحب کی بھی رحلت کاحادثہ پیش آگیا۔
حاجی صاحب سے میرے اورمیرے بزرگوں کے تعلقات نہایت ہی قدیم اورنہایت ہی مخلصانہ تھے، کم وبیش۴۵سال سے شرفِ نیاز حاصل تھا، مسرت وغم کے ہرموقع پرایک دوسرے کے شریک رہتے تھے۔
ابھی کل کی سی بات معلوم ہوتی ہے جب مارچ۱۹۱۸ء میں بزرگان میرٹھ کایہ قافلہ بڑے اہتمام وشوق سے میرے نکاح میں شریک ہونے کے لیے دیوبند آیا تھا۔اسی کایہ اثر ہواکہ ۳۵ سال کے بعد جب گذشتہ۲۹/۲۸نومبر کوبرخوردار مجیب الرحمن کی تقریب شادی ہوئی تواس وقت جوبزرگ خاص طورپر یاد آئے اورجن کے شریک نہ ہونے کاقلب پرخاص اثر ہوااُن میں ایک حاجی صاحب مرحوم ومغفور بھی تھے، انسان کی بے خبری وبے بسی کابھی کیاعالم ہے اور اس دنیا کی عجوبہ کاریوں کا بھی کیاٹھکانا ہے کہ ہم دیوبند میں تقریب کے انتظامات میں لگے ہوئے تھے اورحاجی صاحب مرحوم ملاء اعلیٰ کے لیے رخت سفر باندھ رہے تھے۔ ’’فیالِلْاَسف‘‘
مرحوم شروع میں الہٰی بخش اینڈ کمپنی میرٹھ میں ایک ملازم کی حیثیت سے آئے تھے پھر اپنی غیر معمولی قابلیت،محنت اوردیانت شعاری کی بدولت جلد ہی کمپنی کے شریکِ منفعت ہوگئے اور پھرچند سال کے بعدایک باوفا اورباوقار شریک کی حیثیت...

Comprehensive overview on Bacillus subtilis antibacterial metabolites production Bacillus Subtilis Antibacterial Metabolites Production

Over the last 70 years, Food processors and the plant protection sector have both benefited from Bacillus subtilis. Their capacity to manufacture endospores for survival, as well as a multitude of antimicrobial substances has piqued industrial interest in areas such as food preservation, medicinal agents, and biopesticides. In light of the growing trend of food healing and the protection of bacterial plants, this review suggests a holistic approach to visualizing the antimicrobial screen described in Group B. This review aims to make easy and updated classification of antimicrobial metabolites in group B. Subtilis, its complex phylogeny that tends to perpetuate development.

Development of Mechanically Robust Ultra-Thin Polymer Films Using Covalent Layer by Layer Assembly of Epoxy Compounds

Nanofabrication of two component epoxy adhesives via covalent linkage was carried out using Layer by Layer (LbL) multilayer assemblies, adopting a dipping as well as alternate spraying-dipping technique for the deposition onto pre-activated silicon or quartz substrates and gold nanoparticles (Au-NPs). Dipping technique was employed for the curing of cresol novolac epoxy resin (CNER), phenol epoxy novolac resin DEN-438® (PNER) and Araldite MY-720 with poly(ethylenimine) (PEI) and tetraethylenepentamine (TEPA) on silicon and quartz surfaces. Thus the LbL film architectures obtained for various adsorption times and polymer concentrations were (PEI/CNER)n, (PEI/PNER)n, (PEI/MY-720)n, PEI(CNER/TEPA)n/CNER, PEI(PNER/TEPA)n/PNER and PEI(MY- 720/TEPA)n/MY-720 (where n = number of layer pairs deposited). The classical conditions of polyelectrolyte multilayer build-up for covalent LbL assembly were optimized for the construction of multilayers having linear growth increment with respect to the number of layers chemisorbed. The thickness of each layer pair was measured using an ellipsometer and found in the range of 1 to 4 nm depending on the epoxy compound used. The multilayer films so prepared were quite homogeneous and highly reproducible. UV-Visible spectroscopy was also employed to monitor the chemisorption of UV active chromophores. The optimised epoxy-amine network layers thus formed by covalent LbL assembly of epoxy resins were then applied onto Au-NPs films of the architecture (PAH/Au-NPs)5. These epoxy protected Au-NPs films having architecture (PAH/Au-NPs)5/(PEI/CNER)10 and (PAH/Au-NPs)5/(PEI/PNER)10 were tested for their mechanical robustness with the help of a rubbing machine. The surface morphology of the rubbed samples was studied by AFM, although certain grooves appeared, but there is no significant difference in overall film thickness before and after rubbing test. So, epoxy protected Au-NPs film proved to be quite strong to endure 60 rubbing cycles as compared to virgin Au-NPs film which were mechanically much weak. The adsorption process was further optimised to get fast curing process by employing various accelerators, increasing the polymer concentration, decreasing the adsorption time and also by reducing the number of layer pairs. Lupasol-HF, proved to be an exceptional curing agent after dialysis (to get narrow but high molar mass PEIdia), for the curing of various epoxy resins at room temperature. The spraying of PEIdia (40 mg mL-1) for 10 s followed by dipping for 10 min in epoxy solution (100 mg mL-1) greatly enhanced the speed of covalent LbL adsorption process. Although curing of these films at elevated temperature resulted in ultimate robustness with no loss in thickness after 20 rubbing cycles, yet room temperature curing was also employed for a specified time period by storing the films in air tight containers. The epoxy-amine film thickness for the protection of Au-NPs was found to be 10 nm for CNER and 6 nm for PNER. The ellipsometer data revealed that after more than 60 rubbing cycles, the epoxy protected Au-NPs film lost ca. 6% of initial film thickness. Moreover, the study has proved to be an economical preparation of more effective covalent LbL assemblies, both in terms of cost and time. Therefore, the epoxy-amine network has great potential to protect the underlying weak Au-NPs films and many such future applications.