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20篇 您的检索式:作者名="Karall D"
    题名 作者 年代 出处 被引量
1Organophosphate- induced intermediate syndrome: aetiology and relationships with myopathy显示文摘KARAL LIEDDE L BAKER D MARRS TC 2006Toxicol Rev2006,25,1:1
2Ant colony framework for optimal design and scheduling of batch plants 显示文摘JAYARAMAN V K KULKAMI B D KARALE S 2000Computers and Chemical Engineering2000,24,8:1
3Ant colony framework for optimal design and scheduling of batch plants显示文摘Jayaraman V K Kulkarni B D Karale S 2000Computers and Chemical Engineering2000,7,24:1
4Pilot scale nanofiltration membrane separation for waste management in textile industry 显示文摘Koyunc I Karal E Topacik D 2001Water Science and Technology2001,43,10:1
5Ant colony framework for optimal design and scheduling of batch plants 显示文摘Jayaraman V K Kulkarni B D Karale S et at 2000Computers and Chemical Engineering2000,24,8:1
6Ant colony framewok for optimal design and scheduling of batch plants显示文摘Jayaraman V K Kulkami B D Karales 2000Computers and Chemical Engineerivg2000,,8:1
7Helical baffles shell-and-tube heat exchangers,Part I:Experimental verification显示文摘Karal D Stehlik P van Derploeg H T 1996Heat Transfer Engineering1996,17,1:1
8Ant colonyframe work of optimal design and scheduling of batch plants显示文摘Jayaraman V K Kulkarni B D Karale S 2000Computers and Chemical Engineering2000,7,24:1
9Cytotoxic not vaso genie edema is the cause for stroke-like episodes in propionie aci- demia显示文摘Karall D Haberlandt E Sehimmel M 2011Neuropediatrics2011,42,5:1
10Helical baffles shell-and-tube heat exchangers, Part I:experimental verification显示文摘Karal D Stehlik P Van Derploeg H T 1996Heat Transfer Engineering1996,17,1:1
11Ant colony framework for optimal design and schedule of batch plants显示文摘Jayaraman V K Kulkarni B D Karale Sachin 0,,:1
12Ant colony framework for optimal design and scheduling of batch plants显示文摘JAYARAMAN V K KULKARNI B D KARALE S 2000Computer and Chemical Engineering2000,24,8:1
13Association be- tween QT-interval and its dispersion with factors determi- ning prognosis of cardiovascular morbidity and mortality 显示文摘Pshenichnikov I Shipilova T Karal D 2009Kardiologiia2009,49,9:1
14Ant colony framework for optimal design and schedule of batch plants显示文摘Jayaraman V K Kulkarni B D Karale Sachin 2000Comp Chem Eng2000,24,:1
15COQ4 mutations cause a broad spectrum of mitochondrial disorders associated with Co Q10 deficiency显示文摘Brea-Calvo G Haack TB Karall D Ohtake A Invernizzi F Carrozzo R 2015Am J Hum Genet2015,96,:1
16Prolonged QT-c intervals and decreased left ventricular contractility in patients with propionic acidemia显示文摘Baumgartner D Scholl-Bürgi S Sass JO Sperl W Schweigmann U Stein JI Karall D 2007J Pediatr2007,150,2:1
17Ant colony framework for optimal design and scheduling of batch plants 显示文摘Jayaraman V K Kulkami B D Karale S 2000Computers and Chemical Engineering2000,24,8:1
18Ant colony framework for optimal design and scheduling of batch plants 显示文摘JAYARAMAN V K KULKARNI B D KARALE S 2000Computers and Chemical Engineering2000,24,:1
19Pro-inflammatory cytokine levels in human apical periodontitis: Correlation with clinical and histological findings 显示文摘Jakovljevic A Knezevic A Karalic D 2015Aust Endod J2015,41,2:1
20Biomass energy cost and feasibility of gasifier based biomass power generation system显示文摘The present research work has been carried out on biomass based on 10 kW capacity gasifier power generation system installed at College of Agricultural Engineering and Technology,Dr.Panjabrao Deshmukh Agricultural University(Dr.PDKV),Akola Maharashtra,India.The main objectives were to evaluate various costs and benefits involved in the power generation system.The costs of energy per unit were calculated for the first year of operation.The economics of gasifier based power generation system and thereby the feasibility of the system was examined by estimating per unit cost,Net Present Value(NPV),Benefit Cost Ratio(BCR),Internal Rate of Return(IRR)and payback period.The discount cash flow method was used to find out the IRR.In the present analysis,three costs viz.,installed capital cost,operation and maintenance cost,and levelised replacement cost were examined for the evaluation of the power generation per unit.Discount rate on investment in case of subsidy(Case I)and in case without subsidy(Case II)for installation cost of system was considered as 12.75%.The BCR comes in Case I for operating duration of 22 h,20 h,and 16 h are 1.24,1.18,and 1.13,respectively.Similarly for Case II BCR comes 1.44,1.38,and 2.39.The IRR comes in Case I for operating duration of 22 h,20 h,and 16 h are 26%,22%,and 19%,respectively.Similarly for Case II,IRR comes 52%,44%,and 39%for operating duration of 22 h,20 h,and 16 h,respectively.The payback period in the present analysis was worked out.The payback period for biomass based gasifier power generation system was observed to be for Case I from three to four years and for Case II it was one to two years.Khambalkar V P Kankal U S Karale D S Gangde C N 2013International Journal of Agricultural and Biological Engineering2013,6,4:0
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