Civil Engineering Reference
In-Depth Information
Kogbara, Rb, Al-Tabbaa, A and Iyengar, SR (2010), Utilisation of magnesium phosphate
cements to facilitate biodegradation within a stabilised/solidified contaminated soil.
Water Air and Soil Pollution , 216 , 411-427.
Kogbara, RB (2011), Process envelope for and biodegradation within stabilised/solidified
contaminated soils. PhD Thesis, University of Cambridge, UK.
lau, WY (forthcoming), Shrinkage reduction of MgO concrete. Forthcoming PhD Thesis,
University of Cambridge, UK.
lei, Y, Zhang, Q, Nielsen, C and He, K (2011), An inventory of primary air pollutants
and CO 2 emissions from cement production in China, 1990-2020. Atmospheric
Environment , 45 , 147-154.
li, X (2012), Mechanical performance and durability of reactive magnesia cement
concrete. PhD Thesis, University of Cambridge, Cambridge, UK.
li, X, bie, A, Tsang, SS, Al-Tabbaa, A and Qian, J (2010), Initial study on mechanical
properties and durability of reactive MgO cement concrete. International Conference
on Structural Faults and Repair, Edinburgh, June, Engineering Technics Press.
lim, WJ (2012), MgO cements under CO 2 and geothermal conditions. Final Year
Undergraduate Research Project Report, University of Cambridge, UK.
liska, M (2009), Characterisation and properties of reactive magnesia cement in porous
blocks. PhD Thesis, University of Cambridge, Cambridge, UK.
liska, M and Al-Tabbaa, A (2008), Performance of magnesia cements in pressed masonry
units with natural aggregates: Production parameters optimisation. Construction and
Building Materials , 22 , 1789-1797.
liska, M and Al-Tabbaa, A (2009), Ultra green construction: Reactive magnesia masonry
blocks. ICE Journal of Waste and Resources Management , 162 (4), 185-196.
liska, M and Al-Tabbaa, A (2012), Performance of reactive magnesia cement in porous
blocks in HCl and MgSO 4 solutions. Advances in Cement Research , 24 , 221-232.
liska, M, Vandeperre, lJ and Al-Tabbaa, A (2006), Mixtures of pulverised fuel ash,
Portland cement and magnesium oxide: Characterization of pastes and setting
behaviour. Proceedings of WASCON 2006, Apollo Graphic Production, belgrade,
pp. 563-573.
Liska, M, Vandeperre, L and Al-Tabbaa, A (2008), Influence of carbonation on the
properties of reactive magnesia cement-based pressed masonry units. Advances in
Cement Research , 20 (2), 53-64.
Liska, M, Al-Tabbaa, A, Carter, K and Fifield, J (2012a), Scaled-up commercial production
of reactive magnesia cement pressed masonry units. Part I: Production. Proceedings
of the ICE Journal of Construction Materials , 165 , 211-223.
Liska, M, Al-Tabbaa, A, Carter, K and Fifield, J (2012b), Scaled-up commercial production
of reactive magnesia cement pressed masonry units. Part II: Properties of the blocks.
Proceedings of the ICE Journal of Construction Materials , 165 , 225-243.
litina, C (forthcoming), Green grouts. Forthcoming PhD Thesis, University of Cambridge,
UK.
Mackay, W (2012). Advanced CO 2 resistant cements for geological storage of CO 2 . Final
Year Research Project Report, University of Cambridge, UK.
March, A (2011). Effects of additives on the performance of MgO concrete. Final year
undergraduate project report, University of Cambridge, UK.
Mignardi, S, De Vito, C, Ferrini, V and Martin, RF (2011), The efficiency of CO 2
sequestration via carbonate mineralization with simulated wastewaters of high salinity.
Journal of Hazardous Materials , 191 , 49-55.
Nduagu, E (2008), Mineral carbonation: Preparation of magnesium hydroxide [Mg(OH) 2 ]
from serpentine rock, MSc(Eng.) Thesis, Åbo Akademi University, Finland.
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