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Home > Estimation of phenols released in wastewater from different industries of hattar industrial estate HIE and its environmental impacts

Estimation of phenols released in wastewater from different industries of hattar industrial estate HIE and its environmental impacts

Thesis Info

Author

Baber Ali

Supervisor

Syed Shahid Ali

Department

Department of Environmental Sciences

Program

BS

Institute

International Islamic University

Institute Type

Public

City

Islamabad

Province

Islamabad

Country

Pakistan

Thesis Completing Year

2013

Thesis Completion Status

Completed

Page

x,56

Subject

Environmental Sciences

Language

English

Other

BS 363.7284 BAE

Added

2021-02-17 19:49:13

Modified

2023-02-17 21:08:06

ARI ID

1676723949503

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کتاب " قدرتی وسائل اور ان کا استعمال" (تعارف و تبصرہ)

کتاب " قدرتی وسائل اور ان کا استعمال" (تعارف و تبصرہ)

تبصرہ نگار:ڈاکٹر ساجد اقبال

(ایسوسی ایٹ پروفیسر۔ گورنمنٹ ڈگری کالج، بھلوال ،سرگودھا-پاکستان)

نام کتاب

قدرتی وسائل اور ان کا استعمال: اسلامی اور سائنسی علوم کے تناظر میں

مصنف

ڈاکٹرعبد المنان چیمہ

ناشر

ایشین ریسرچ انڈکس، اسلام آباد(2023)

آئی ایس بی این

9786277680060

بسم اللہ الرحمٰن الرحیم

 ڈاکٹر عبدالمنا ن چیمہ شہر ِ اقبال سیالکوٹ میں پیدا ہوئے ۔انتہائی محنت اور لگن سے اپنی ابتدائی تعلیم شہر اقبال سیالکوٹ میں مکمل کرنے کے بعد عملی زندگی کا سفر شروع کیا ۔بعدازاں اعلیٰ تعلیم کے شوق اور حصول کے لئے برادر عبدالمنان چیمہ نے یونیورسٹی آف سرگودھا کا انتخاب کیا۔2010ء میں ایم فل میں داخلہ کے لئےشاہینوں کے شہر سرگودھا کا رخ کیا۔ایم فل کے بعد 2014ء میں جامعہ سرگودھا میں پی ایچ ڈی میں داخلہ لیا۔ ڈاکٹر عبدالمنان چیمہ نے 2022ء میں "اسلام میں قدرتی وسائل و ذرائع کا تحفط اور استعمال کے اصول و آداب" کے عنوان پر میری نگرانی میں ایک انتہائی خوبصورت اور جاندار لکھ کر ڈاکٹر یٹ کی ڈگری حاصل کی ۔یہ مقالہ اپنے موضوع اورمواد کے حوالے سے انتہائی اہمیت اور انفرادیت کا حامل ہے۔انسانی زندگی کےلئے حیوانات ،نباتات اور معدنیات جیسوں وسائل کی مثلث کا پایا جانا انتہائی ناگزیر ہے۔ان کا استعمالات میں اسراف نہیں ہونا چاہئے ۔(وَّكُلُوْا وَاشْرَبُوْا وَلَا تُسْرِفُوْا-)،اللہ تعالیٰ نے تمام جانداروں کو پانی سے پیدا کیا۔( وَجَعَلْنَا مِنَ الْمَاءِ كُلَّ شَيْءٍ حَيٍّ۔القرآن)

یہ بات میرے لئے انتہائی مسرت اور خوشی کا باعث ہے کہ ڈاکٹر چیمہ نے اپنے مقالہ کو مزید بہتر بناتے ہوئے افادہ عام کے لئے کتابی شکل میں شائع...

The Investigative System of Islam Investigative System of Islam

The Holy Prophet (PBUH) was sent to establish justice. He made use of law and good conduct to achieve this great target. Complete investigation and transport exploration is of universal value that holds fundamental significance in legal system. This research article presents insight, broadness and transparency of investigatory system established by the Prophet (PBUH). It also highlights rules and laws in the light of valid research references. All these features are evident in Prophet’s personality. In this regard, keeping in view the nature of topic, the guidance has been sought from the commands of The Quran, Hadith and different incidents of the life of Muhammad (SAWW). A discussion has been premeditated to explore Prophet’s tactics regarding law of investigation. This research article, having research outlook and logical link, touches upon the rules and principles which the Holy Prophet (PBUH) has given us for the recognition of the real culprit of good judgment, clues and witnesses. Investigative departments are radically important for the protection of Islam, maintenance of peace, internal stability and the protection of life, honor and property of people living in the society. The charter of these agencies is to abolish oppression, establish justice, impose the writ of law, and punish the guilty and to bring lawbreakers within the grip of law. The officer who performs the above duties is known as Naazir e Jaraaim1 in Islamic jurisprudential terminology. Further duties which fall within the remit of this officer are: Investigation of charges, production of the accused before a court of law, getting proven criminals sentenced by the court, executing the sentence handed down, releasing   the accused in case evidence is not sufficient and getting wrongful accusers punished properly.

Mechanistic Studies of Thermal Behavior of Certain Polymeric Systems With Additives

The present work deals with the pyrolytical studies of nine systems, i.e., two polymers [poly(methyl methacrylate) and poly(vinyl acetate)] and one copolymer [(poly(S-co-MMA)] blended with three inorganic additives, namely, aluminum tribromide, phosphorus tribromide and tin tetrachloride. Each polymeric/copolymeric substance is cast in the form of film (from common solvent) with each additive to get binary system such as PMMA-AlBr3, P(S-co- MMA)-AlBr3, PVAc-AlBr3, etc. The interest is based on the retardance of flammability, thermal stability, alteration in degradation mechanism, etc. of organic materials in the presence of inorganic species. The first chapter details the historical use of polymers, their wear and tear under the influence of different conditions, i.e., UV, g-radiations, oxygen, biological agents, heat, etc. Major emphasis is laid on the effects of heat and the reactions involved during the deterioration. The role of additives in imparting stability or otherwise is briefly described. Literature review is given in second chapter which includes the summary of the work published by various scientists on the subject of thermal degradation of polymers/copolymers alone as well as in the presence of additives over a long span of time. The polymers/copolymer selected for current investigations get major share of the review. In the third chapter, aims and objectives of the present research are included. Furthermore, the incentives and motivation for the work conducted are presented along with the plans and strategies devised. Experimental portion, chapter 4, consists of purification procedures for solvents, the preparatory methods for polymers, copolymers and additives, sample preparation techniques for flammability test, set-up designed for the pyrolysis of the systems explored and the instrumental techniques employed for the characterizations. All results gleaned from instrumentation, viz., TG-DTG-DTA, IR, GC-MS, flammability, about the binary systems are listed in chapter 5. Tabulated findings are available including activation energies and order of reactions. Chapter 6 discusses the mutual thermal behavior of PMMA and AlBr3, PBr3, SnCl4 in each other‟s presence. The three systems start degrading at lower temperatures when compared with T0 (temperature corresponding to first weight-loss) of PMMA. In the case of PMMA-AlBr3, T0 is lower than the T0 of the additive. Despite early destabilizations, stabilization zones (in terms of temperature) and other factors promoting stability are identified. A number of new products have evolved in all cases which provide reasons to believe that chemical interaction has taken place and the path of polymer degradation appears modified. PMMA-PBr3 blend reveals that phosphorus is incorporated in the backbone of PMMA during the course of degradation. Phosphorus also interacts with carbonyl oxygens of PMMA pendent groups in a similar fashion as is observed for Al (from AlBr3) and Sn (from SnCl4), however, it cannot be termed as „co-ordination‟ or „complexation‟ as observed for Sn in PMMA-SnCl4 system. Not only the positively charged parts of the additives, i.e., Al, P and Sn interact with the pendent groups and backbone of the polymer but the negatively charged parts (Br and Cl) also form bonds after the partial or complete removal of pendent groups. In other instances, they also replace the methyls attached to backbone carbons. The flammability parameter indicates the effectiveness of all the additives which markedly lower the burning rate of PMMA. Degradation mechanisms are proposed on the basis of gathered data and products identified. Monomer is not the major product in the studies undertaken presently. The same chapter, (6), explains the thermal behavior of P(S-co-MMA) in the presence of additives already named in the last paragraph. The blends [P(S-co-MMA)-AlBr3, P(S-co- MMA)-PBr3 and P(S-co-MMA)-SnCl4] exhibit a low-temperature degradation which is thought to be linked to the decomposition of non-copolymeric part of the blends. This destabilization is followed by stabilization of either component of the systems (general observation). The release of free radicals by the disintegration of „free‟ or „attached‟ additives initiates as well as inhibits depolymerization. The „co-ordination‟ or „complex‟ type structures become less appreciable in the present case when this feature is compared with the PMMA blends revealing the lower number of pendent (-COOCH3) groups available in copolymer. New products are noticed in all blends which furnish the basis for chemical influence of the constituents on each other‟s pyrolysis. Phosphorus appears attached to the degrading copolymer for P(S-co-MMA)-PBr3. Benzene ring, substituted with halogens, evidence the types of reactions that occur as the degradation processes progress. The pyrolysis of P(S-co-MMA)-SnCl4 unveils the formation of bisubstituted benzene which means chlorine is more reactive than bromine (no such instances are observed with P(S-co- MMA)-AlBr3 and P(S-co-MMA)-PBr3). These reactions are believed to proceed free radically. The test of flammability proves that all the additives are equally effective in case of copolymer‟s burning.