scholarly journals Life Cycle Assessment model for the chlor-alkali process: A comprehensive review of resources and available technologies

2017 ◽  
Vol 12 ◽  
pp. 44-58 ◽  
Author(s):  
Isabel Garcia-Herrero ◽  
María Margallo ◽  
Raquel Onandía ◽  
Rubén Aldaco ◽  
Angel Irabien
Author(s):  
M. von der Thannen ◽  
S. Hoerbinger ◽  
C. Muellebner ◽  
H. Biber ◽  
H. P. Rauch

AbstractRecently, applications of soil and water bioengineering constructions using living plants and supplementary materials have become increasingly popular. Besides technical effects, soil and water bioengineering has the advantage of additionally taking into consideration ecological values and the values of landscape aesthetics. When implementing soil and water bioengineering structures, suitable plants must be selected, and the structures must be given a dimension taking into account potential impact loads. A consideration of energy flows and the potential negative impact of construction in terms of energy and greenhouse gas balance has been neglected until now. The current study closes this gap of knowledge by introducing a method for detecting the possible negative effects of installing soil and water bioengineering measures. For this purpose, an environmental life cycle assessment model has been applied. The impact categories global warming potential and cumulative energy demand are used in this paper to describe the type of impacts which a bioengineering construction site causes. Additionally, the water bioengineering measure is contrasted with a conventional civil engineering structure. The results determine that the bioengineering alternative performs slightly better, in terms of energy demand and global warming potential, than the conventional measure. The most relevant factor is shown to be the impact of the running machines at the water bioengineering construction site. Finally, an integral ecological assessment model for applications of soil and water bioengineering structures should point out the potential negative effects caused during installation and, furthermore, integrate the assessment of potential positive effects due to the development of living plants in the use stage of the structures.


2020 ◽  
Vol 6 (8) ◽  
pp. 2138-2152
Author(s):  
Jonathan P. Truslove ◽  
Andrea B. Coulson ◽  
Emma Mbalame ◽  
Robert M. Kalin

Life-cycle assessment model and regression analysis identifies drivers that negatively impact the lifecycle of community Afridev handpumps under various tariff scenarios for rural community water supply.


2017 ◽  
Vol 4 (8) ◽  
pp. 1705-1721 ◽  
Author(s):  
Michael P. Tsang ◽  
Dingsheng Li ◽  
Kendra L. Garner ◽  
Arturo A. Keller ◽  
Sangwon Suh ◽  
...  

A dynamic life cycle impact assessment model demonstrates a non-constant intake fraction of inhaled nano-TiO2 as total emissions changes.


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