Xinyuan Ke

Xinyuan Ke

University of Bath

H-index: 19

Europe-United Kingdom

About Xinyuan Ke

Xinyuan Ke, With an exceptional h-index of 19 and a recent h-index of 19 (since 2020), a distinguished researcher at University of Bath, specializes in the field of Construction material, alkali-activated materials, waste immobilisation.

His recent articles reflect a diverse array of research interests and contributions to the field:

Optimisation of CaCl2 impregnated expanded graphite and alginate matrices–Targeted salt loading

Improving the pozzolanic reactivity of clay, marl and obsidian through mechanochemical or thermal activation

The Effect of Salt-Impregnation on Thermochemical Properties of a Metakaolin Geopolymer Composite for Thermal Energy Storage

Carbonation Rate of Alkali-Activated Concretes: Effects of Compositional Parameters and Carbonation Conditions

Comparing the Carbonation Performances of a Low-Clinker Blended Slag Cement with an Alkali-Activated Slag via Thermodynamic Modelling

Development and characterisation of an alginate and expanded graphite based composite for thermochemical heat storage

Freeze Thaw Behaviour of Hemp Reinforced Geopolymer

Mechanochemical activation for improving the direct mineral carbonation efficiency and capacity of a timber biomass ash

Xinyuan Ke Information

University

Position

Lecturer (Assistant Professor) the

Citations(all)

1748

Citations(since 2020)

1524

Cited By

652

hIndex(all)

19

hIndex(since 2020)

19

i10Index(all)

27

i10Index(since 2020)

26

Email

University Profile Page

Google Scholar

Xinyuan Ke Skills & Research Interests

Construction material

alkali-activated materials

waste immobilisation

Top articles of Xinyuan Ke

Optimisation of CaCl2 impregnated expanded graphite and alginate matrices–Targeted salt loading

Energy Conversion and Management

2024/2/15

Improving the pozzolanic reactivity of clay, marl and obsidian through mechanochemical or thermal activation

Materials and Structures

2024/2

The Effect of Salt-Impregnation on Thermochemical Properties of a Metakaolin Geopolymer Composite for Thermal Energy Storage

2023/6/11

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Yulong Ding
Yulong Ding

H-Index: 5

Carbonation Rate of Alkali-Activated Concretes: Effects of Compositional Parameters and Carbonation Conditions

2023/6/9

Comparing the Carbonation Performances of a Low-Clinker Blended Slag Cement with an Alkali-Activated Slag via Thermodynamic Modelling

2023/6/9

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Development and characterisation of an alginate and expanded graphite based composite for thermochemical heat storage

Journal of Materials Science

2023/4

Freeze Thaw Behaviour of Hemp Reinforced Geopolymer

2023/2/8

Andrew Heath
Andrew Heath

H-Index: 22

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Mechanochemical activation for improving the direct mineral carbonation efficiency and capacity of a timber biomass ash

Journal of CO2 Utilization

2023/2/1

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Atomic-scale characterisation of sodium aluminosilicate hydrates (NASH) and Mg-substituted N (-M)-ASH using XANES

Applied Geochemistry

2022/12/1

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Jiaqi Li
Jiaqi Li

H-Index: 0

The impact of mechanochemical activation on the physicochemical properties and pozzolanic reactivity of kaolinite, muscovite and montmorillonite

Cement and Concrete Research

2022/12/1

Biomass bottom ash as supplementary cementitious material: the effect of mechanochemical pre-treatment and mineral carbonation

Materials

2022/11/24

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Carbonation rate of alkali-activated concretes and high-volume SCM concretes: a literature data analysis by RILEM TC 281-CCC

Materials and structures

2022/10

The effects of biomineralization on the localised phase and microstructure evolutions of bacteria-based self-healing cementitious composites

Cement and Concrete Composites

2022/4/1

Assessing the suitability of alkali-activated metakaolin geopolymer for thermochemical heat storage

Microporous and Mesoporous Materials

2021/10/1

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Activator anion influences the nanostructure of alkali-activated slag cements

The Journal of Physical Chemistry C

2021/9/9

Xinyuan Ke
Xinyuan Ke

H-Index: 9

RILEM TC 281-CCC Working Group 6: Carbonation of alkali activated concrete—preliminary results of a literature survey and data analysis

2021/8/29

Coupling machine learning with thermodynamic modelling to develop a composition-property model for alkali-activated materials

Composites Part B: Engineering

2021/7/1

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Yu Duan
Yu Duan

H-Index: 5

A Bayesian machine learning approach for inverse prediction of high-performance concrete ingredients with targeted performance

Construction and Building Materials

2021/2/8

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Yu Duan
Yu Duan

H-Index: 5

Thermodynamic properties of sodium aluminosilicate hydrate (N–A–S–H)

Dalton Transactions

2021

Xinyuan Ke
Xinyuan Ke

H-Index: 9

Thermodynamic modelling of phase evolution in alkali-activated slag cements exposed to carbon dioxide

Cement and Concrete Research

2020/10/1

Xinyuan Ke
Xinyuan Ke

H-Index: 9

See List of Professors in Xinyuan Ke University(University of Bath)

Co-Authors

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