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Co-Authors
- Devarshi Shah
- Bhupendra G. Prajapti
- Manisha Patel
- S. K. Dubey
- K. K. Pathak
- Anil Bhandari
- Pankaj Kushwah
- Sujit Pillai Chetan Ghulaxe
- Nilesh Mandloi
- Sajjan Singh
- R. Ratheesh
- Nandini Ray Chaudhury
- Preeti Rajput
- Mohit Arora
- Ashwin Gujrati
- S. V. V. Arunkumar
- Ateeth Shetty
- Rakesh Baral
- Devanshi Joshi
- Harshad Patel
- Bharat Pathak
- K. S. Jayappa
- R. N. Samal
- A. S. Rajawat
Journals
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z All
Patel, Rakesh
- overview of Industrial Filtration Technology and its Applications
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Authors
Affiliations
1 Dept. of Pharmaceutics & Pharmaceutical Technology, S. K. Patel College of Pharmaceutical Education & Research, Ganpat University, Ganpat Vidyanagar, Kherva, Mehsana-Gozaria Highway, Pin-382711, Mehsana, Gujarat, IN
1 Dept. of Pharmaceutics & Pharmaceutical Technology, S. K. Patel College of Pharmaceutical Education & Research, Ganpat University, Ganpat Vidyanagar, Kherva, Mehsana-Gozaria Highway, Pin-382711, Mehsana, Gujarat, IN
Source
Indian Journal of Science and Technology, Vol 3, No 10 (2010), Pagination: 1121-1127Abstract
Filtration is a process where solid particles present in a suspension are separated from liquid or gas employing a porous medium. This article includes some advances in sintered metal filters, different types of filter media and their applications in various industries. Recent applications of ultra filtration and some advances in bag and belt filtration systems have also been discussed. This article also focuses on advantages of self cleaning filters over manual and mechanical cleaning. Thus, advances in filtration technology include the development of continuous processes to replace old batch process technology. Different self cleaning filters reduce product loss, required minimal operator intervention and improves flow consistency. Using programmable logic controllers in humidity ventilation and air conditioning system which often use sensors can cut installation and labor costs. On the global scale, we are surrounded by different filters. Thus by using latest filters and filter media it is possible to apply it in various food, starch and sugar industries, which reduces the time as well as give better quality products.Keywords
Filter Media, Ultra Filtration, Bag Filtration, Belt Filtration, HVAC SystemReferences
- Andrew L, Doug N and Derek J (2002) Mineral processing, plant design, practice and control. Technol. Engg. 2, 1321.
- Carey R (2008) Depth filtration VS Cross flow: Novel filter sheets give new life to the older technology. Wines & Vines.
- Choa V, Bo MW and Chu J (2009) A new type of fabricated vertical drain with improved properties. Geotextiles Geomembranes. 27, 152-155.
- Chowdiah P, Wasan D and Gidaspow D (1981) Electro kinetic phenomena in the filtration of colloidal particles suspended in non-aqueous media. All India chemical engg. J. 27, 975.
- Chu J (2004) Practical consideration for using vertical drains in soil improvement projects. Geotextiles Geomembranes. 22,101-107.
- Dorman RG (1964) Filter materials. In: P. A. F. White and S.E. Smith, Editors, High efficiency air filtration, Butterworths, London, pp100–118.
- Goldsmith RL, Roberts DA and Burre DL (1974) Ultrafiltration of soluble oil wastes. Water Pollution Control. 46(9), 2183.
- Higgins T (2003) Advances in filtration technology are making new products possible in food and beverage. Dairy Foods.
- Hillie J (2007) Nanotechnology and the challenge of clean water. Nature Nanotechnol. 2, 663–664.
- Hunt JA (2001) Filtration media: Making the right choice. Water Conditioning Purification Magazine.
- Lach VH and Wright AE (2004) Recent advances in filtration. Chemical Health Safety. 11(2), 33.
- Matteson J (1987) Filtration principles and practices; gas filtration theory in 2nd edition (ed.) pp28-32.
- Melia CR and Weber WJ (1972) Liquid filtration theory: In physico-chemical processes for water quality control. Wiley interscience, New York, 61.
- Mott corp. (1999) Adv. Filtration Separation Technol. 512-520.
- Purchas DB (2000) Filters media: Industrial filtration of liquids, Leonard hill, London.
- Rushton A (2008) Solid-liquid filtration & separation technology. Filter Media. 209-236.
- Sambhamurthy K (2005) Filtration: In pharmaceutical engineering, New age international Ltd. 12, 248.
- Shirato M (1978) Filtration in chemical process industry in chemical engineer’s handbook. 4th (Ed); Tokyo; p1131.
- Smolders CA (1980) Ultra filtration membranes & applications, plenum, New York.
- Stephan EA (2003) Use of genetic algorithms as an aid in modeling deep bed filtration. Comp. Chem. Engg. 27, 281-292.
- Subramanyam CVS, Setty TJ, Suresh S and Devi KV (2005) Filtration In pharmaceutical engineering principles and practices, Vallabh prakashan, Delhi, 9, 248-250.
- Svarovsky L (1990) Solid-Liquid separation, 3rd Ed., Butterworths & Co. Publisher Ltd.
- US Patent 5569382 (1996) Belt filter device having a cleaning spray head.
- Wardsworth LC (2007) Handbooks of nonwoven filter media. J. Engineered Fibers Fabrics. 2(1), 61-63.
- Wilson LG and Cavanagh P (1969) Principle of inertial impaction. Atoms. Environ. 3, 597-605.
- Analysis of Composite Beams Using an Elasticity Method
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Authors
Affiliations
1 Department of Civil Engineering, SIRTS, Bhopal 462023, IN
2 Department of Civil Engineering, MANIT, Bhopal 462051, IN
3 Department of Civil & Environmental Engineering, NITTTR, Bhopal 462002, IN
1 Department of Civil Engineering, SIRTS, Bhopal 462023, IN
2 Department of Civil Engineering, MANIT, Bhopal 462051, IN
3 Department of Civil & Environmental Engineering, NITTTR, Bhopal 462002, IN
Source
International Journal of Engineering Research, Vol 5, No SP 3 (2016), Pagination: 709-711Abstract
In this paper method of initial functions is used for the study of composite beam of two layers. Composite laminated beams are widely used in many structures, because this concept is very suitable for the development of light weight structures. The equations of two dimensional elasticity have been used for deriving governing equations. No assumptions regarding physical behavior of beams are made. Most of the beam theories which are currently used for analysis involve assumptions regarding the physical behavior of beams. The beam theories which are based on assumptions are of a practical utility in the case of beams of moderate thickness.Keywords
Composite Beams, Method of Initial Functions, Elasticity Equations, Stresses, Displacements.- Spectrofluorimetric Estimation of Some Fluoroquinolones
Abstract Views :463 |
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Authors
Affiliations
1 Indore Institute of Pharmacy, Indore M P, IN
2 Goenka College of Pharmacy, Lachhmangarh, Sikar (Raj), IN
1 Indore Institute of Pharmacy, Indore M P, IN
2 Goenka College of Pharmacy, Lachhmangarh, Sikar (Raj), IN
Source
Asian Journal of Pharmaceutical Analysis, Vol 7, No 4 (2017), Pagination: 235-238Abstract
A highly sensitive spectrofluorimetric procedure is developed for the analysis of certain fluoroquinolones: norfloxacin (NFX), sparfloxacin (SFX) and ofloxacin (OFX) in their pharmaceutical dosage forms and in biological fluids. This procedure is based upon the intrinsic fluorescence of selected drugs in 0.1N H2SO4. The excitation (λext ) and emission wavelengths (λemis.) are 270 nm and 464 nm, 276 nm and 442 nm, 280 nm and 510 nm for NFX, SFX and OFX respectively. The calibration curve was rectilinear from the 0.8-2 μg mL-1, 0.4-2.8 μg mL-1 and 0.01-0.4 μg mL-1 for NFX, SFX and OFX respectively. The accuracy and precision of the proposed method was confirmed by estimating six replicates within Beer-Lambert limits for each of the investigated drug with correlation coefficient not less than 0.999. The developed method was applied successfully for the determination of the studied drugs in their pharmaceutical dosage forms and in the biological fluids with a good precision and accuracy compared to official and reported methods as revealed by statistical analysis.Keywords
Sparfloxacin, Ofloxacin, Norfloxacin, Spectrofluotimetry, Fluoroquinolones.References
- Goodman and Gilman’s,” The Pharmacological Basis of Therapeutics” Mc. Graw Hill Publication, 2001; 1182.
- Indian pharmacopoeia, the controller of publication New Delhi, India, 1996; Vol-II: 522.
- United State Pharmacopoeia XXIV, USP convention, Rochville M.D., 2000; 963.
- The British Pharmacopoeia, H. M. stationary office, London, 2004; 1398.
- Salem Heshan, “Spectrofluorimetric, Atomic Absorption spectrometric and Spectrophotometric determination of some fluoroquinolones” American Journal of Applied Science, 2005; 2 (3): 719-726.
- Sankar D. G. et al.”Spectrophotometric determination of sparfloxacin with floroglucinol” Indian Journal of Pharmaceutical Sciences, 2002; 64 (2): 163-167.
- Marona H. R. and Schapoyal E. E. “Spectrophotometric determination of sparfloxacin in pharmaceutical formulations using bromothymol blue” J. Pharm. Biomed. Anal. 2001; 26 (3) 501-509.
- Rizk M. et al. “Derivative spectrophotometric analysis of 4-quinolone antibacterials in formulations and spiked biological fluids by their Cu (II) complexes” J.A.O.A.C. Int., 2001; 84 (2): 368-371.
- Girish Kumar K., Choudhary K. P. R. and Devala Rao G. “Visible spectrophotometric methods for the determination of sparfloxacin in pharmaceutical formulations” The Antiseptic, 2001; 98 (6): 217-223.
- Marona H. R. and Schapoval E. E. “Development and validation of nonaqueous titration with perchloric acid to determine sparfloxacin in tablets” Eur. J. Pharm. Biopharm, 2001; 52 (2) 227-232.
- Rizk M. et al. “Voltammetric analysis of certain 4-quinolones in pharmaceuticals and biological fluids” J. Pharm. Biomed. Anal. 2000; 24 (2): 211-216.
- Hopaka H. and Kowalczuk D. “Application of derivative UV spectrophotometry for the determination of ciprofloxacin, nofloxacin and ofloxacin in tablets” Acta. Pol. Pharm. 2000; 57 (1): 3-11.
- Liu Z., Huang Z. and Cai R. “Study of the fluorescence characteristics of norfloxacin in reversed micelles and application in analysis” Analyst. 2000; 125 (8): 1477-1482.
- Cordoba-Borrego Met al. “Validation of a high-performance liquid chromatographic method for the determination of nofloxacin and its application to stability studies” J. Pharm. Biomed. Anal. 1999; 18 (6): 919-926.
- Marona H. R. N., Zuanazzi J. A. S. and Schapoval E. E. S., “Determination of sparfloxacin and its degradation products by HPLC-PDA” J. Antimicrob. Chemother. 1999; 44: 301-308.
- Marona H. R. N. and Schapoval E. E. S. “Spectrophotometric determination of sparfloxacin in tablets” J. Antimicrob. Chemother, 1999; 43: 136-139.
- Fangtian Y. et al. “Observations on photochemical fluorescence enhancement of the terbium (III)-sparfloxacin system” Spectrochim. Acta. A. Mol. Biomol. Spectrosc. 1999; 55A (5): 1119-1123.
- Mody V. D. et al. “High performance thin-layer chromatographic method for the determination of sparfloxacin in human plasma and its use in pharmacokinetic studies” J. pharm. Biomed. Anal. 1998; 16 (8): 1289-1294.
- Rajasekaran A. et al. “Spectrophotometric method for the determination of sparfloxacin in pharmaceutical formulation” The Eastern Pharmacist. 1998; Sept., 123-125.
- Cordoba-Borrego M., Cordoba-Diaz M. and Cordoba-Diaz D., “Determination of norfloxacin by fluorescence in the presence of different antacids” J. Pharm. Biomed. Anal. 1996; 14 (8-10): 977-983.
- Bolton S. “Pharmaceutical Statistics Practical and Clinical Application” Marcel Dekker Inc Newyork, 1997; 120-146.
- I.C.H. Harmonized tripartite guideline, Text on Validation of an Analytical procedure Methodology Q2B 1996.
- Review on Medicinal Value of Asparagus racemosus in Woman’s
Abstract Views :118 |
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Authors
Affiliations
1 GRY, Institute of Pharmacy, Borawan, IN
2 IIP, Indore, IN
1 GRY, Institute of Pharmacy, Borawan, IN
2 IIP, Indore, IN
Source
Research Journal of Pharmacy and Technology, Vol 11, No 1 (2018), Pagination: 418-420Abstract
At the present time it is a wide spread belief on the part of the general public that natural substances are inherently superior to synthetic substances and have played a mainstream role in the health care system for the prevention of diseases. Asparagus racemosus, traditionally known as shatavari means "who possesses a hundred husbands or acceptable to many". In Ayurveda it is considered a female tonic. Asparagus racemosus has been successfully used by some medical practitioners as an anti-inflammatory, anti-microbial and immunomodulator for many infectious diseases. Asparagus racemosus can also improve the milk production and reproduction capacity of dairy animals. This review summarizes the Nutritional value aspects of Asparagus racemosus.Keywords
Asparagus Racemosus, Immunomodulator, Anti-Inflammatory, Anti-Microbial.References
- Krishna L. et al. (2005). Indian J. Anim. Sc. 75(12): 1481-1491.
- Santosh kumar, r. k. mehla and a.k. dang, use of shatavari (asparagus racemosus) as a galactopoietic and therapeutic herb- a review, agric. rev., 29 (2) : 132 - 138, 2008
- Gogte VM. Ayurvedic Pharmacology and Therapeutic uses of Medicinal Plants – Dravyagunavignyan. SPARC, Mumbai; 2000.
- Frawley D. Ayurvedic Healing – A Comprehensive Guide. Motilal Banarsidass Publishers Private Limited, Delhi; 1997.
- Sharma RK, Dash B. Charaka Samhita – Text with English Translation and Critical Exposition Based on Chakrapani Datta’s Ayurveda Dipika. Chowkhamba; Varanasi, India; 2003.
- Garde GK. Sarth Vagbhat (Marathia Translation of Vagbhat’s Astangahridya). Uttarstana, Aryabhushana Mudranalaya, pp.40-48; 1970
- Atreya. Ayurvedic Healing for Women. Samuel Weiser, Inc, York; 1999.
- Krtikar KR, Basu BD. Indian Materia Medica, India. 1975; 3:2499-2501.
- Goyal RK, Singh J, Lal H. Asparagus racemosus- An update. Ind. J Med Sci. 2003; 57:408-414.
- Sairam KS, Priyambada NC, Goel RK. Gastroduodenal ulcer protective activity of Asparagus racemosus: an experimental, biochemical and histological study. J Ethnopharmacol. 2003; 86(1):1-10.
- Kamat JP, Boloor KK, Devasagayam TP, Venkatachalam SR. Antioxdant properties of Asparagus racemosus against damaged induced by gamma radiation on rat liver mitochondria. J. Ethanopharmacol. 2000; 71:425-435.
- Chopra RN, Chopra IC, Handa KL, Kapur LD. Indigenous drugs of India, Calcutta: Academic Publishers, 1994, 496
- Jhansee mishra1, Alok kumar Dash1 and Suresh Kumar, hundred problems, one solution asparagus racemosu,wjpr,vol.1,issue 1,201-202,2012
- Kalia V, Jadav AN, Bhuttani KK. In vivo effect of Asparagus racemosus on serum gonadotrophin levels in immature female wistar rats. 2nd world congress of Biotech. Dev. of Herbal Med. NBRI, Lukhnow, pp. 40. 2003
- Pugalendhi V, Karunanithi R, Panicker TMR, Abraham C, Gurumurthy P, Jagadeesan K. A Pilot Study on the Breast Development in Female Wistar Rats Using an Indigenous Herbal preparation by topical application Bombay Hosp Jour, 2004; 46 : 03
- Nadkarni AK. Indian materia medica. Bombay; Popular Book Depot; 1954, p. 153-155
- Joglekar GV, Ahuja RH, Balwani JH. Galactogogue effect of Asparagus racemosus. Indian Med J 1967; 61: 165.
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- Sharma S, Ramji S, Kumari S, Bapna JS. Randomized controlled trial of Asparagus racemosus (Shatavari) as a lactogogue in lactational inadequacy. Indian Pediatr 1996; 33: 675-677.
- Joglekar GV, Ahuja RH, Balwani JH. Galactogogue effect of Asparagus racemosus. Indian Med J 1967; 61: 165
- Coastal Sediment Dynamics, Ecology and Detection of Coral Reef Macroalgae from AVIRIS-NG
Abstract Views :98 |
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Authors
R. Ratheesh
1,
Nandini Ray Chaudhury
1,
Preeti Rajput
1,
Mohit Arora
1,
Ashwin Gujrati
1,
S. V. V. Arunkumar
1,
Ateeth Shetty
2,
Rakesh Baral
3,
Rakesh Patel
4,
Devanshi Joshi
4,
Harshad Patel
4,
Bharat Pathak
4,
K. S. Jayappa
2,
R. N. Samal
3,
A. S. Rajawat
1
Affiliations
1 Space Applications Centre, Indian Space Research Organisation, Ahmedabad 380 015, IN
2 Mangalore University, Mangalagangorti, Mangaluru 574 199, IN
3 Chilika Development Authority, Bhubaneswar 751 014, IN
4 Gujarat Ecological Education and Research Foundation, Gandhinagar 382 007, IN
1 Space Applications Centre, Indian Space Research Organisation, Ahmedabad 380 015, IN
2 Mangalore University, Mangalagangorti, Mangaluru 574 199, IN
3 Chilika Development Authority, Bhubaneswar 751 014, IN
4 Gujarat Ecological Education and Research Foundation, Gandhinagar 382 007, IN
Source
Current Science, Vol 116, No 7 (2019), Pagination: 1157-1165Abstract
This article highlights major scientific outcomes of the studies carried out using Airborne Visible/Infrared Imaging Spectrometer-Next Generation (AVIRIS-NG) airborne data over the coastal regions of Mangaluru, Gulf of Kachchh (GoK) and Chilika lagoon. Various hyperspectral remote sensing techniques involving bio-optical models and spectral classification algorithms are used to achieve different objectives related to coastal ecosystem monitoring. AVIRIS-NG airborne data are used to estimate particle size of suspended solids along the coastal waters of Mangaluru using an analytical optical model. The spatial distribution of particle size of the suspended solids in the coastal waters is brought out, while along the coastal land of Mangaluru, the beaches are classified based on uniform sediment characteristics using spectral matching algorithm. AVIRIS-NG data for Pirotan reef in GoK is analysed and species-level identification of the dominant brown macroalgae is carried out. Species-level distribution of brown macroalgae is mapped and used to study the microhabitat preference of different species. At Chilika lagoon, the AVIRIS-NG data are analysed to map the abundance of submerged seagrass using bio-optical model, which provides vital information to the coastal management community. The study asserts the importance of hyperspectral data and various advanced data analysis techniques related to the estimation of geophysical parameters of the coastal waters and monitoring the vital coastal ecosystems.Keywords
Brown Macroalgae, Coastal Regions, Suspended Sediment Properties, Submerged Seagrass.References
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