A Study on the Structural Effects of Bagasse Sugar Cane Stem In Structural Concrete Mixture in Sulfate and Chloride Environments

Publish Year: 1399
نوع سند: مقاله ژورنالی
زبان: English
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JR_JCEMA-4-2_002

تاریخ نمایه سازی: 1 مرداد 1399

Abstract:

Due to the high volume of agricultural waste, the use of some of them in the manufacture of concrete reduces the production residues and the problems caused by their lack of recycling. Bagasse is a pulp produced after sugar cane extraction. The sugar cane factories produce about 1.2 million tons of excess bagasse annually due to the lack of conversion industries. In today s modern world, due to advances made in various scientific fields, the concrete industry has also evolved. The production of concrete containing pozzolan bagasse is also the result of the same improvements; concrete. In this study, for the production of synthetic pozzolan sugarcane bagasse, according to studies bagasse was burned for 30 minutes at a controlled temperature of 4 ° C. Then, by replacing 1, 2, 3, 2, and 2% of bagasse ash instead of cement in concrete, compressive strength, electrical strength, chloride penetration were evaluated by RCMT, water pressure, and sulfate resistance. The results showed an increase in compressive strength of the specimens up to 5% of cement replacement at different ages and a higher percentage of compressive strength loss was observed in the control specimen, but the electrical resistance at different ages increased by up to two-fold in the control specimen and also decreased. Before this, attention was drawn to the amount of water and chloride ion penetration. Sulfate resistance also increased by up to 5% replacement, but the highest sulfate resistance was observed in the sample by 5% replacement.

Authors

Seyed Ali Mmousavi Davoudi

Department of Structural Engineering, Faculty of Engineering and Civil Engineering, Tabari University of Technology, Babol, Iran.

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  • ASTM C618-99 / Standard Specification for Coal Fly Ash and ...
  • Amezcua-Allieri MA, Martínez-Hernández E, Anaya-Reza O, Magdaleno-Molina M, Melgarejo-Flores LA, ...
  • M. Khani Oushani, The Optimization of Quality of Sugarcane Bagasse ...
  • Mohammadi F, Roedl A, Abdoli MA, Amidpour M, Vahidi H. ...
  • Goyal A, Kunio H, Hidehiko O. Mandula, Properties and Reactivity ...
  • Koo B, Park J, Gonzalez R, Jameel H, Park S. ...
  • El Naga AO, El Saied M, Shaban SA, El Kady ...
  • Amoah J, Ogura K, Schmetz Q, Kondo A, Ogino C. ...
  • Varshney D, Mandade P, Shastri Y. Multi-objective optimization of sugarcane ...
  • Cordeiro GC, Andreao PV, Tavares LM. Pozzolanic properties of ultrafine ...
  • Ingle AP, Philippini RR, da Silva SS. Pretreatment of sugarcane ...
  • Zhang X, Zhang W, Lei F, Yang S, Jiang J. ...
  • Su T, Zeng J, Gao H, Jiang L, Bai X, ...
  • Larissa CD, dos Anjos MA, de Sá MV, de Souza ...
  • Shafiq N, Nuruddin MF, Elhameed AA. Effect of sugar cane ...
  • Ghorbani F, Kamari S, Zamani S, Akbari S, Salehi M. ...
  • Chindaprasirt P, Sujumnongtokul P, Posi P. Durability and mechanical properties ...
  • Rerkpiboon A, Tangchirapat W, Jaturapitakkul C. Strength, chloride resistance, and ...
  • Rajasekar A, Arunachalam K, Kottaisamy M, Saraswathy V. Durability characteristics ...
  • Zareei SA, Ameri F, Bahrami N. Microstructure, strength, and durability ...
  • Franco-Luján VA, Maldonado-García MA, Mendoza-Rangel JM, Montes-García P. Chloride-induced reinforcing ...
  • Moretti JP, Nunes S, Sales A. Self-compacting concrete incorporating sugarcane ...
  • Ríos-Parada V, Jiménez-Quero VG, Valdez-Tamez PL, Montes-García P. Characterization and ...
  • Sounthararajan VM, Vardhan CV. Effects on dual fibres to act ...
  • da Conceição Gomes A, Rodrigues MI, de França Passos D, ...
  • AASHTO T. 64-03. Standard method of test for prediction of ...
  • AzariJafari H, Tajadini A, Rahimi M, Berenjian J. Reducing variations ...
  • ACI Committee 363. Report on High-Strength Concrete (ACI 363R-10). ACI; ...
  • Huang KS, Yang CC. Using RCPT determine the migration coefficient ...
  • AASHTO T. 358. Standard Method of Test for Surface Resistivity ...
  • ASTM C172 / C172M-17, Standard Practice for Sampling Freshly Mixed ...
  • Tam T, Daneti SB, Li W. EN 206 conformity testing ...
  • ASTM C88 / C88M-18, Standard Test Method for Soundness of ...
  • Zhao G, Li J, Han F, Shi M, Fan H. ...
  • Mostofinejad D, Hosseini SM, Nosouhian F, Ozbakkaloglu T, Tehrani BN. ...
  • Asrat FS, Ghebrab TT. Effect of Mill-Rejected Granular Cement Grains ...
  • fur Normung D. Testing Concrete: Testing of Hardened Concrete (Specimens ...
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