ENHANCING PERFORMANCE OF HIGH-STRENGTH CONCRETE USING BACILLUS MEGATERIUM AS SELF-HEALING AGENT

被引:0
作者
Mauludin, Luthfi Muhammad [1 ]
Permana, Rahmat [1 ]
Ruslan, Ujang [1 ]
Zulpanani, Ahmad [1 ]
Fauziah, Lulu [1 ]
Nurhayati, Siti Mutiara [1 ]
Savira, Mutia Gina [1 ]
机构
[1] Politeknik Negeri Bandung, Dept Civil Engn, Bandung, Indonesia
来源
INTERNATIONAL JOURNAL OF GEOMATE | 2024年 / 26卷 / 114期
关键词
High-strength concrete; Self-healing concrete; Bacillus megaterium; Compressive strength; Flexural strength; BACTERIA;
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The weak tensile properties of concrete allowed micro -cracks to emerge and propagate into macrocracks if they were left undetected. An innovation called self -healing concrete (SHC) was subsequently introduced, allowing concrete to cover micro -cracks independently without any human intervention. SHC utilizes healing agents in the form of bacteria, which react with oxygen and water when cracks occur, resulting in calcium carbonate (CaCO3) compounds that play a role in the concrete repair process. The aim of this study is to determine the effects of Bacillus megaterium on the compressive strength, flexural strength, depth of water penetration, and velocity of the 45 MPa high -strength concrete design based on ACI 211-4r.93 guidelines, with 25% of cement substitution by fly ash and 2% of bacteria percentage of the entire water composition. A 12.662% increase in compressive strength and a 1.690% increase in flexural strength were recorded for the age of 28 days bacterial concrete compared to the control concrete. The water penetration depth of the bacterial concrete was 4.49 cm, thereby meeting the DIN 1045 standard, which is less than 5 cm. From the ultrasonic pulse velocity (UPV) test, the average velocity value for bacterial concrete was 9.483 km/sec, which is categorized as having good concrete homogeneity based on the IS 1331 standard. This research offers promising insights into the SHC field by adding innovation to the design of high -quality bacterial concrete.
引用
收藏
页码:68 / 75
页数:8
相关论文
共 50 条
  • [1] Enhancing Structural Resilience: Microbial-Based Self-Healing in High-Strength Concrete
    Mohammed, Tesfaye Alemu
    Kasie, Yonathan Muche
    Assefa, Eleyas
    Getu, Yiglet Mebrat
    Tufa, Dereje Hailu
    INTERNATIONAL JOURNAL OF CONCRETE STRUCTURES AND MATERIALS, 2024, 18 (01)
  • [2] MECHANICAL AND PHYSICAL BEHAVIOR OF SELF-HEALING CONCRETE USING BACILLUS MEGATERIUM BACTERIA
    Farhan, Muhammad
    Lie, Han Ay
    Purwanto
    Hadikusumo, Bonaventura Harimurti W.
    INTERNATIONAL JOURNAL OF GEOMATE, 2025, 28 (125): : 83 - 91
  • [3] Increasing structural resilience in high-strength concrete via microbial-based self-healing
    Seenipeyathevar, Meenakshi Sudarvizhi
    Shanmugam, Balaji
    Murugesan, Vadivel
    Sisubalan, Samson
    Alagar, Hemalatha
    Rajan, Dinesh Kumar
    MATERIA-RIO DE JANEIRO, 2024, 29 (03):
  • [4] Assessment on Strength Characteristics of Microbial Concrete by using Bacillus Subtilis as Self-healing Agent: A Critical Review
    Priyom, Sudipto Nath
    Ismal, Md Moinul
    Shumi, Wahhida
    INTERNATIONAL JOURNAL OF SUSTAINABLE CONSTRUCTION ENGINEERING AND TECHNOLOGY, 2021, 11 (04): : 34 - 44
  • [5] Application potential of Bacillus megaterium encapsulated by low alkaline sulphoaluminate cement in self-healing concrete
    Su, Yilin
    Zheng, Tianwen
    Qian, Chunxiang
    CONSTRUCTION AND BUILDING MATERIALS, 2021, 273 (273)
  • [6] Enhancing self-healing in bio-mineralized concrete with steel slag aggregates and Bacillus subtilis
    Ahmad, Bilal
    Shabbir, Faisal
    Raza, Ali
    Shaheen, Nafeesa
    Ahmed, Mohd
    STRUCTURAL CONCRETE, 2024,
  • [7] Self-Healing of Cracks in Concrete using Bacillus cibi with Different Encapsulation Techniques
    Orozco, Christian
    Urbino, Ivan Jan A.
    JOURNAL OF ENGINEERING AND TECHNOLOGICAL SCIENCES, 2022, 54 (03): : 506 - 517
  • [8] The Effect of Self-Healing Microorganism-Encapsulating Concrete on Enhancing Concrete Compressive Strength
    Chen, Ming Ta
    Lin, Hui Yi
    MATERIALS SCIENCE-MEDZIAGOTYRA, 2023, 29 (04): : 474 - 480
  • [9] Strategies for Enhancing Self-Healing in Ultra-High Performance Concrete: An Experimental Investigation
    Khan, Muhammad Adeel
    Chen, Weizhen
    Zhang, Boshan
    Badar, Jahangir
    Rui, Zhao
    COMPUTATIONAL AND EXPERIMENTAL SIMULATIONS IN ENGINEERING, ICCES 2024-VOL 2, 2025, 173 : 814 - 824
  • [10] Performance of self-healing geopolymer paste produced using Bacillus subtilis
    Ekinci, Enes
    Turkmen, Ibrahim
    Birhanli, Emre
    CONSTRUCTION AND BUILDING MATERIALS, 2022, 325