The primary problem of eco-materials is how to judge whether a material is environmentally friendly or not, and the method of life cycle assessment is usually used to evaluate it. The depletion of mineral resources is a very important indicator of LCA, but its characterization is still filled with dispute. At present, the most commonly used method is CML, which is put forward by Leiden University, and its core idea is that using the ratio of exploitation amount and reserves of mineral resources as the degree of scarcity. Although being accepted by most of the scholars at work on LCA, CML doesn’t grasp the essence of the depletion of mineral resources. Recently, a new assessment method, injecting new ideas to the conventional life cycle assessment, combines exergy with LCA is arising, which can be used to solve some specific problems of LCA especially the depletion of mineral resources. In this paper, two results of elements’ exergy calculated by Rivero and Szargut respectively are compared, and the exergy of some natural minerals, which can be used in LCA and other minerals-related research, is calculated based on the data of Chinese mineral resources.
[1]
Ibrahim Dincer,et al.
Efficiency analysis of a cogeneration and district energy system
,
2005
.
[2]
D. Morris,et al.
Standard chemical exergy of some elements and compounds on the planet earth
,
1986
.
[3]
R Rivero,et al.
Exergy analysis of industrial process - Energy - Economy - Ecology
,
2001
.
[4]
Enrico Sciubba,et al.
Exergy and extended exergy accounting of very large complex systems with an application to the province of Siena, Italy.
,
2008,
Journal of environmental management.
[5]
I. Dincer.
The role of exergy in energy policy making
,
2002
.
[6]
Göran Finnveden,et al.
Exergies of natural resources in life-cycle assessment and other applications
,
1997
.
[7]
R. Rivero,et al.
Standard chemical exergy of elements updated
,
2006
.
[8]
Jan Szargut,et al.
Exergy Analysis of Thermal, Chemical, and Metallurgical Processes
,
1988
.
[9]
Jan Szargut,et al.
Chemical exergies of the elements
,
1989
.