Recycling waste papers in green cement mortars

Other Title(s)

إعادة تدوير النفايات الورقية لإنتاج مونة سمنتية خضراء

Author

al-Zubaydi, Asil Basim Abd al-Husayn

Source

Iraqi Journal of Physics

Issue

Vol. 17, Issue 40 (30 Apr. 2019), pp.135-144, 10 p.

Publisher

University of Baghdad College of Science

Publication Date

2019-04-30

Country of Publication

Iraq

No. of Pages

10

Main Subjects

Materials Science , Minerals

Topics

Abstract EN

This work investigates the utilization of waste papers (natural and industrial) i.e (citrus aurantium and papers A4) mortars containing specified contents 0.5%, 1%, 1.5% of waste papers were prepared and cured.

Mechanical characteristics such as compressive and bending strengths, hardness and water absorption were determined for the mortars mixed with the waste papers and compared with those obtained from the pure mortars.

Results showed that the addition of waste paper leads to increase the hardness to (69 - 68.5) shore D for (natural and industrial) wastes materials respectively comparing with pure specimen 66 shore D.

The compressed strength of the mortar cement specimen cured for 28 days from 13 MPa to (17-18) MPa for (natural and industrial) wastes materials, respectively.

American Psychological Association (APA)

al-Zubaydi, Asil Basim Abd al-Husayn. 2019. Recycling waste papers in green cement mortars. Iraqi Journal of Physics،Vol. 17, no. 40, pp.135-144.
https://search.emarefa.net/detail/BIM-890725

Modern Language Association (MLA)

al-Zubaydi, Asil Basim Abd al-Husayn. Recycling waste papers in green cement mortars. Iraqi Journal of Physics Vol. 17, no. 40 (2019), pp.135-144.
https://search.emarefa.net/detail/BIM-890725

American Medical Association (AMA)

al-Zubaydi, Asil Basim Abd al-Husayn. Recycling waste papers in green cement mortars. Iraqi Journal of Physics. 2019. Vol. 17, no. 40, pp.135-144.
https://search.emarefa.net/detail/BIM-890725

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 144

Record ID

BIM-890725