The effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricks
Food waste raises severe concerns all around the globe. Thus, several researchers employed various food waste additives in the earthen matrix to improve their performance, decrease energy consumption, and efficient waste management. Therefore, this study evaluates the Tea Waste (T.W.) additive in pr...
| الحاوية / القاعدة: | Alexandria Engineering Journal |
|---|---|
| المؤلفون الرئيسيون: | , , , , , |
| التنسيق: | مقال |
| اللغة: | الإنجليزية |
| منشور في: |
Elsevier
2024-08-01
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| الموضوعات: | |
| الوصول للمادة أونلاين: | http://www.sciencedirect.com/science/article/pii/S111001682400560X |
| _version_ | 1849314544637181952 |
|---|---|
| author | Aseel Hussien Radhi Al Zubaidi Nusrat Jannat Ameera Ghanim Aref Maksoud Ahmed Al-Shammaa |
| author_facet | Aseel Hussien Radhi Al Zubaidi Nusrat Jannat Ameera Ghanim Aref Maksoud Ahmed Al-Shammaa |
| author_sort | Aseel Hussien |
| collection | DOAJ |
| container_title | Alexandria Engineering Journal |
| description | Food waste raises severe concerns all around the globe. Thus, several researchers employed various food waste additives in the earthen matrix to improve their performance, decrease energy consumption, and efficient waste management. Therefore, this study evaluates the Tea Waste (T.W.) additive in producing unfired clay brick by adding different ratios in the brick clay mixtures 2.5 %, 5 %, 7.5 %, and 10 % of the weight. Samples were prepared and dried under natural laboratory conditions at 20o C for 7 days until weight and shrinkage stabilization, followed by oven-dried for 48 h at 60 oC. Several tests were performed to examine the physical and mechanical characteristics of the samples, including flexural strength, density, compressive strength, linear shrinkage, capillary water absorption, thermal conductivity, and the U.P.V. The results demonstrated that porosity and shrinkage slightly increased. While density, flexural strength, and compressive strength values decrease. In addition, the thermal conductivity increased depending on the T.W. content. In addition, samples containing 2.5 % and 5 % of T.W. give better compressive strength results above 3.5 MPa, which is the least limit required according to the Indian standards IS 1077, while T.W. additive of 7.5 % and 10 % did not fulfill the standard's strength requirement and therefore could be used for isolation only due to the increased amount of porosity that improves the thermal conductivity. The results indicated that samples with suitable mechanical and physical properties could achieve a suitable amount of T.W. it is recomenned that the porous structure of the clay brick body impacted the clay brick's properties and can be an effective alternative to porosity makers for lightweight insulating brick production. |
| format | Article |
| id | doaj-art-e9506c42003e41ab830c9dc16dba2e70 |
| institution | Directory of Open Access Journals |
| issn | 1110-0168 |
| language | English |
| publishDate | 2024-08-01 |
| publisher | Elsevier |
| record_format | Article |
| spelling | doaj-art-e9506c42003e41ab830c9dc16dba2e702025-09-03T02:58:25ZengElsevierAlexandria Engineering Journal1110-01682024-08-0110128229410.1016/j.aej.2024.05.090The effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricksAseel Hussien0Radhi Al Zubaidi1Nusrat Jannat2Ameera Ghanim3Aref Maksoud4Ahmed Al-Shammaa5University of Sharjah, College of Engineering, Architectural Engineering Department, United Arab Emirates; Corresponding author.University of Sharjah, College of Engineering, Architectural Engineering Department, United Arab Emirates; University of Sharjah, College of Engineering, Civile Engineering Department, United Arab EmiratesChittagong University of Engineering and Technology, BangladeshUniversity of Sharjah, College of Engineering, Architectural Engineering Department, United Arab EmiratesUniversity of Sharjah, College of Engineering, Architectural Engineering Department, United Arab Emirates; University of Sharjah, College of Engineering, Civile Engineering Department, United Arab EmiratesUniversity of Khorfakkan, United Arab EmiratesFood waste raises severe concerns all around the globe. Thus, several researchers employed various food waste additives in the earthen matrix to improve their performance, decrease energy consumption, and efficient waste management. Therefore, this study evaluates the Tea Waste (T.W.) additive in producing unfired clay brick by adding different ratios in the brick clay mixtures 2.5 %, 5 %, 7.5 %, and 10 % of the weight. Samples were prepared and dried under natural laboratory conditions at 20o C for 7 days until weight and shrinkage stabilization, followed by oven-dried for 48 h at 60 oC. Several tests were performed to examine the physical and mechanical characteristics of the samples, including flexural strength, density, compressive strength, linear shrinkage, capillary water absorption, thermal conductivity, and the U.P.V. The results demonstrated that porosity and shrinkage slightly increased. While density, flexural strength, and compressive strength values decrease. In addition, the thermal conductivity increased depending on the T.W. content. In addition, samples containing 2.5 % and 5 % of T.W. give better compressive strength results above 3.5 MPa, which is the least limit required according to the Indian standards IS 1077, while T.W. additive of 7.5 % and 10 % did not fulfill the standard's strength requirement and therefore could be used for isolation only due to the increased amount of porosity that improves the thermal conductivity. The results indicated that samples with suitable mechanical and physical properties could achieve a suitable amount of T.W. it is recomenned that the porous structure of the clay brick body impacted the clay brick's properties and can be an effective alternative to porosity makers for lightweight insulating brick production.http://www.sciencedirect.com/science/article/pii/S111001682400560XTea Waste additiveUnfired clay bricksStructural construction materialBuildings |
| spellingShingle | Aseel Hussien Radhi Al Zubaidi Nusrat Jannat Ameera Ghanim Aref Maksoud Ahmed Al-Shammaa The effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricks Tea Waste additive Unfired clay bricks Structural construction material Buildings |
| title | The effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricks |
| title_full | The effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricks |
| title_fullStr | The effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricks |
| title_full_unstemmed | The effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricks |
| title_short | The effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricks |
| title_sort | effects of tea waste additive on the physical and mechanical characteristics of structural unfired clay bricks |
| topic | Tea Waste additive Unfired clay bricks Structural construction material Buildings |
| url | http://www.sciencedirect.com/science/article/pii/S111001682400560X |
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