وثيقة

Engineering properties of mortar containing calcined local clay as a supplementary cementitious material.

المعرف
DOI: 10.1088/1755-1315/1026/1/012015
المصدر
IOP Conference Series: Earth and Environmental Science. v. 1026, 1, 012015
مؤلف
المساهمون
Hago, A. W., مؤلف
الدولة
United Kingdom.
مكان النشر
London.
الناشر
Institute of Physics.
ميلادي
2022-01-01
اللغة
الأنجليزية
الملخص الإنجليزي
The use of natural and artificial cementitious and pozzolanic materials is gaining importance and become an essential component in today's cement-based materials. Supplementary cementitious materials are recognized to provide an added value to concrete/mortar both for mechanical and durability performances as well as to their sustainability with reduced environmental impacts of the construction industry. Developing locally produced natural pozzolans is vital in the efforts towards enhancing the construction industry's sustainability. Locally extracted raw soil from Nizwa city (NZS) in Oman was ground, calcined, characterized, and used at 10%, 25%, 35%, and 50% as partial replacement of ordinary Portland cement (OPC) in mortar mix. The blend mortar was assessed with regard to compressive strength and durability properties. The obtained results indicate a slight reduction in the flow of the blended mixes. An insignificant effect of the NZS replacement on the hardened mortar's density was observed while slightly reduced strength at 1-day and 28-day for some replacement levels. Meanwhile, around a 1% reduction in the porosity and absorption. Blended cement mortar with NZS demonstrated adequate resistance to sulphuric acid and (sulphate + chloride) exposure with lower weight and strength losses compared to the control mortar.
الوصف
International Conference on Sustainability: Developments and Innovations, ICSDI 2022; Prince Sultan UniversityRiyadh; Saudi Arabia; 19 February 2022 through 22 February 2022; Code 180794
ISSN
1755-1307
قالب العنصر
مؤتمرات وورش عمل

مواد أخرى لنفس الموضوع

الرسائل والأطروحات الجامعية
7
0
Wazwaz, Alaa Aref.
Sultan Qaboos University
2023