Production of unburnt bricks polymerized from waste

The Prime Minister has approved the program of developing unburnt materials by 2020, in order to make the most of raw materials from bad soil, ash, sand, clean solid waste of mining and construction industries. build.

This is a new innovative solution, making the most of raw materials from bad soil, ash, sand and clean solid waste of the mining and construction industries.

The products created such as masonry bricks, pavement tiles, paving bricks, decorative bricks, tiles, making roads . have contributed to minimizing pollution from traditional brick kilns. Great impact on the environment.

Picture 1 of Production of unburnt bricks polymerized from waste

Currently, unburnt bricks have been widely used in the world, but mainly silicate bricks, ultra-light concrete AAC bricks, foam bricks . and polymerized soil bricks are less developed because they depend on financial conditions. raw soil and intensive technology, mostly made from clay materials.

"Stone soil" technology has applied indirect inorganic polymerization mechanism , this is a synthesis process without heat treatment stage so it does not affect the environment.

This technology is convenient for users, brings high economic efficiency, helps to eradicate poverty for remote, mountainous areas thanks to the use of on-site materials to make bricks and use that mortar to stick thin mortar circuits, smooth walls are not harsh.

In addition, this technology is not through burning to help save energy, does not cause environmental pollution, clean the environment (by taking advantage of fuel as solid waste in industry).

Hue Quang Trading Technology Joint Stock Company (under the Research Institute for Rural Development) is one of the units applying the technology of producing unburnt polymerized bricks from soil and clean solid wastes ' Land. fossil.'

In particular, investment in a unit of unburnt bricks from Hue Quang's land and waste is only 70% of the investment for a brick production unit of the same type.