Hazha Mohammed
School of Civil Engineering and Built Environment
Faculty of Engineering and Technology
Email: H.B.Mohammed@ljmu.ac.uk
Thesis/Dissertation
Mohammed H. 2023. Development of chloride resistant self-healing concrete with bio-agent immobilised polymer Armada Bras A, Sadique M, Shaw A. Public Url
Journal article
Brás A, Mohammed H, Romano A, Nakouti I. 2022. Biomineralisation to Increase Earth Infrastructure Resilience. Materials (Basel, Switzerland), 15 DOI Author Url Publisher Url Public Url
Mohammed H, Giuntini F, Sadique MM, Shaw A, Brás A. 2021. Polymer modified concrete impact on the durability of infrastructure exposed to chloride environments Construction and Building Materials, 317 DOI Author Url Publisher Url Public Url
Brás A, Van Der Bergh JM, Mohammed H, Nakouti I. 2021. Design Service Life of RC Structures with Self-Healing Behaviour to Increase Infrastructure Carbon Savings Materials, 14 DOI Author Url Publisher Url Public Url
Mohammed H, Sadique MM, Shaw A, Brás A. 2020. The Influence of Incorporating Plastic within Concrete and the Potential Use of Microwave Curing; A Review Journal of Building Engineering, 32 DOI Author Url Publisher Url Public Url
Mohammed H, Ortoneda-Pedrola M, Nakouti I, Brás A. 2020. Experimental characterisation of non-encapsulated bio-based concrete with self-healing capacity Mohammed H, Ortoneda-Pedrola1 M, Bras A. Construction and Building Materials, 256 DOI Author Url Publisher Url Public Url
Conference publication
Romano A, Mohammed H, De Sande VT, Bras A. 2021. Sustainable bio-based earth mortar with self-healing capacity Proceedings of Institution of Civil Engineers: Construction Materials, 174 :3-12 DOI Publisher Url
Romano A, Mohammed H, Torres-de-Sande V, Armada Bras A. Sustainable bio-based earth mortar with self-healing capacity. Construction Materials and Technologies (SCMT 2019) 14-17 July 2019, Kingston University, London Efficient and Sustainable Use of Construction Materials Author Url
Patent
Armada Bras A, Mohammed H, Nakouti I. Bioconcrete with self-healing behaviour for corrosion minimisation of structures