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22篇 您的检索式:作者名="Rachan"
    题名 作者 年代 出处 被引量
1The Relation ship between Ty pe 2 Diabetes and Cognitive Dysfunction: Longitudinal Studies and their Methodological Limitations 显示文摘Allen KV Frier BM St rachan MW 2004Eur J Pharmacol (S0014- 2999)2004,490,13:1
2Assessment of strength development in blended cement admixed Bangkok clay 显示文摘Horpibulsuk S Rachan R Suddeepong A 2011Construction and Building Materials2011,25,4:1
3Assessment of strength development in blended cement admixed Bangkok clay显示文摘Suksun Horpibulsuk Runglawan Rachan Apichat Suddeepong 2010Construction and Building Materials2010,,4:1
4Analysis of Strength Develop-ment in Cement-stabilized Silty Clay from Microstruc-tural considerations显示文摘Suksun Horpibulsuk Runglawan Rachan AvirutChinkulkijniwat 2010Construction and Building Mate-rials2010,24,:1
5Analysis of Strength Development in Cement-stabilized Clay Form Microstructural Considerations显示文摘Horpibulsuk S Rachan R Chinkulkijniwat A 2010Construction and Building Materials2010,24,10:1
6Analysis of strength development in cement-stabilized silty clay from microstructural considerations显示文摘Horpibulsuk S Rachan R Chinkulkijniwat A 2010Construction and Building Materials2010,24,10:1
7Strength development in cement admixed Bangkok clay: Laboratory and field investigations显示文摘Horpibulsuk S Rachan R Suddeepong A 2011Soils and Foundations2011,51,2:1
8Role offly ash on strength and microstructure development inblended cement stabilized silty clay显示文摘HORPIBULSUK S RACHAN R RAKSACHON Y 2009Soils and Foundations2009,49,1:1
9Analysis of strength development in cement-stabilizedsilty clay from microstructural considerations显示文摘HORPIBULSUK S RACHAN R CHINKULKUNIWAT A 2010Construction and Building Materials2010,24,10:1
10Analy-sis of strength development in cement-stabilized silty clay from microstructural considerations显示文摘Horpihulsuk S Rachan R Chinkulkiiniwat A 2010Construct Build Ma- ter2010,24,10:1
11Role of fly ash on strength and microstructure development in blended cement stabilized silty clay显示文摘HORPIBULSUK S RACHAN R RAKSACHON Y 2009Soils and Foundations2009,49,1:1
12C-reactive protein: Relation to total mortality, cardiovascular mortality and cardiovascular risk factors in men 显示文摘Mendall M A St rachan D P Butland B K 2000Eur Heart J2000,21,19:1
13Strength development in cement admixed Bangkok clay:laboratory and field investigations显示文摘Horpibulsuk S Rachan R Suddeepong A 2011Soils and Foundations2011,51,2:1
14Assessment of strength development in blended cement admixed Bangkok clay显示文摘Horpibulsuk S Rachan R Suddeepong A 2011Construction and Building Materials2011,25,4:1
15Assessment of strength development in blended cement admixed Bangkok clay 显示文摘HORPIBULSUK S RACHAN R SUDDEEPONG A 2011Construction and Building Materials2011,25,:1
16Analysis of strength development in cement-stabilized silty clay based on microstructural considerations 显示文摘HORPIBULSUK S RACHAN R CHINKULKIJINIWAT A RAKSACHON Y SUDDEEPONG A 2010Constr Build Mater2010,24,:1
17Assessment of strength development in blended cement admixed Bangkok clay显示文摘HORPIBULSUK S RACHAN R SUDDEEPONG A 2011Construction and Building Materials2011,25,:1
18Production of biodiesel from unused algal biomass in Punjab, India显示文摘Biodiesel from inedible sources has become prominent in last few decades. But it is economically incompatible with petroleum diesel. At the same time, both petro-diesel and biodiesels are concerned with environmental pollution, global warming, etc. Algae, on the other hand, utilize CO2 for their growth and can minimize some sort of pollution level and results in carbon credit for a country. In Punjab, India, algae are seen to grow in many water bodies. But all those are taken away and dumped in vats. Some of this huge biomass was used for production of biodiesel in this work. Extraction of oil from algae was conducted by using Soxtherm(solvent extraction). An amount of 9 wt% of algal oil was extracted by comparatively costly hexane, whereas 8% extraction was done by cheaper acetone. In the transesterification reaction, molar ratio(methanol: oil) of 6:1, catalyst(KOH) concentration of 3 wt%, reaction temperature of 60 °C, 60 min reaction time and a settling time of 2.5 h were found to be optimum conditions to get maximum ester with minimum free fatty acid content and viscosity. A statistical analysis for the transesterification procedure also showed a methanol-to-oil molar ratio of 6:1 and catalyst concentration of 3 wt% to be the optimum. Characterization of biodiesel was done and compared with ASTM/BIS standards. Most important properties of biodiesel ester like viscosity(3.12 c St or 3.12 mm2/s), cloud and pour point(-1 and-6 °C, respectively), flash and fire point(153 and 158 °C), carbon residue content(0.03%), acid number(0.36 mg of KOH/gm) were within the range of concerned standards.Rachan Karmakar Anita Rajor Krishnendu Kundu Nitin Kumar 2018Petroleum Science2018,15,1:1
19Strength development in Cement Stablized Coarse Grained Soils 显示文摘Horpibulsuk S Rachan R Katkan W 2006Ground Modification and Seismic Mitigation(GSP 152) ASCE2006,2006,:1
20Role of fly ash on strength and microstructure development in blended cement stabilized silty clay 显示文摘Horpiulsuk S Rachan R Raksachon Y 2009Soils and Foundations2009,49,1:1
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