Study on Application of Straw as Landscape Wall Construction Material

2016 ◽  
Vol 723 ◽  
pp. 716-719
Author(s):  
Wei Ning ◽  
Yi Fei Li

This paper considers the existing status of Jilin province crop straw in China. It expounds the comprehensive utilization situation. It reveals existing problems of straw in Jilin province. In this paper, the crop straw is used as the Landscape Wall construction material. Furthermore, the paper analyzes the compressive performance of the straw wall. It is concluded that the straw is feasible for the Landscape Wall construction. The paper can provide effective reference to speeding up the comprehensive utilization of crop straw in Jilin province. This method can also improve the use of new materials in botanical landscape. Besides, the means promotes the construct of saving landscape effectively.

2013 ◽  
Vol 807-809 ◽  
pp. 1211-1218 ◽  
Author(s):  
Hong Wei Wang ◽  
Wang Ying ◽  
Bo Lin Ma ◽  
Qing Lin Xue

The paper summarizes comprehensive utilization of crop straw methods, analyzes the existing problems and puts forward the countermeasures and prospect.


2016 ◽  
Vol 723 ◽  
pp. 706-710
Author(s):  
De Feng Xu ◽  
Li Mei Chen ◽  
Sheng Nan Tao ◽  
Shu Chao Cheng ◽  
Fei Xiao ◽  
...  

Combined with the research status of crop straws, and the comprehensive utilization of crop straws and the existing problems in Jilin Province, China. This paper proposes to crop straws to be used as the insulation materials of the precast concrete sandwich wall, which can’t only settle the problem of the lower utilization of crop straws, but also accelerate the development of the precast concrete structure in our country. Based on the research status of crop straws materials at home and abroad, the article summarizes the manufacture methods of crop straws as the insulation materials of precast concrete sandwich Wall. I hope that this article can provide valuable reference to speed up the comprehensive utilization of crop straws, and accelerate the process of building industrialization in Jilin province.


2012 ◽  
Vol 512-515 ◽  
pp. 343-346
Author(s):  
Xiao Li Ma ◽  
I Shin Chang ◽  
Jing Wu

As the effective and efficient means of resources utilization, biomass energy has become a very valuable and reliable source of alternative energy in China, especially for remote areas and countryside. First, in order to facilitate the development of biogas applications and promote the economic, social and ecological benefits from comprehensive utilization of biogas in rural areas in Urumqi (Capital of Xinjiang Uygur Autonomous Region, XUAR), the biogas potential was estimated, the biogas engineering construction and biogas comprehensive utilization were evaluated, and the existing problems of biogas development were analyzed, in this study. Second, countermeasures and recommendations were proposed in trying to resolved existing problems, based on international practical experience. And, according to local climatic situation and regional characteristics in Urumqi, ecological agriculture was proposed in this study as the development mode for the rural areas in Urumqi, based on the development of biogas technologies and international practical experience.


2013 ◽  
Vol 848 ◽  
pp. 135-138
Author(s):  
Jia Zi Shi ◽  
Xing Dang

Concrete is the most commonly used construction material in the world over the past decades. But the increase in concrete production leads to an increase in greenhouse gases emission and environmental damage. With the current focus on sustainability, it is necessary to evaluate concretes environmental impact and develop new materials for green concrete. Green recycled aggregates and mineral admixtures are important component materials for green concrete. In this paper, the development of green concrete industry is introduced, and the application of materials for green concrete such as green recycled aggregates and mineral admixtures are discussed.


2019 ◽  
Vol 279 ◽  
pp. 02015
Author(s):  
Petr Kacálek ◽  
Tomáš Petříček

Alternative solutions to joints of outer wooden solid log walls are based on the current situation on the construction market, which reflects general change in attitude towards the environment. Apart from the evaluation of materials and products in accordance with technological and economic aspects, attention is paid to the effect of individual elements on the environment. This trend is reflected in construction practice by a comeback to original materials and expanding designs of residential buildings on the basis of easily renewable material resources, e.g. wood, which is relatively easily available and renewable construction material. When designing and constructing wooden buildings, it is necessary to take into account specific properties of wood (particularly volume changes), which need to be considered for solutions of individual details. Bed joints of wooden solid log walls are still a problematic detail in terms of thermal technology. It is a contact of two horizontal construction elements – beams, where maximum weakening of the wall thickness occurs. This spot is a relatively frequent place of a recurring thermal bridge during the wall construction. Analysis and improvement of this critical place of wooden houses, which has been more and more frequently built in the Czech Republic, would lead to their better evaluation in terms of heat-technical properties. The aim of the project was to design and examine adjusted variants of shape solutions of joints in between individual solid wooden elements. The project particularly focused on monitoring of surface temperatures in the areas of critical details – bed joints.


2014 ◽  
Vol 936 ◽  
pp. 1378-1381 ◽  
Author(s):  
Wei Yao ◽  
Qian Qian Hu ◽  
Yan Mu ◽  
Jian Bo Chen ◽  
Feng Qing Zhao

Polymer modified cementitious waterproof coating is an important construction material. In this paper, starting from the classification and choice of waterproof coatings, the importance, advantages and application prospects of the polymer cement waterproof coatings were discussed. The approaches for solving the existing problems and limitations of polymer modified cementitious waterproof coatings were put forward.


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