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    • Home
    • About Us
    • Our Team
    • Projects
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    • Contact Us
  • Home
  • About Us
  • Our Team
  • Projects
  • Publications
  • Contact Us

Mobile Complex for the Disposal of Industrial Waste

As the demand for industrial and municipal waste disposal increases, various technologies have been  proposed to tackle this environmental issue. Our mobile waste processing complex is a technology  designed to safely process and dispose of industrial and municipal waste using the pyrolytic method. In  this method, wastes are incinerated in specialized heat-resistant chambers and converted into harmless  substances. Our mobile waste processing complex is fully capable of disposing of municipal waste and more than 500 types of wastes like oil, oil filters, oil rags, acid sludges, alkaline and acidic lignins, biohazardous and medical wastes, contaminated soil, paint and rubber goods.  


These wastes are placed in a non-metallic chamber regulated with a combustion temperature over 1500°C, which causes its destruction. Our technology is very well designed and does not cause the  emission of harmful gases or substances, even after the incineration process has been terminated. We  propose that emissions will be found to be in orders of magnitude significantly lower than known  industrial and vehicular emissions if this were the case. Additionally, we do not use any chemicals in our  technology to achieve the desired results.  


The main aim of our mobile complex is to solve the issue of waste disposal and avoid the problem of  waste accumulation. The current European market in Germany, France, UK, Italy and Spain represents  significant market growth opportunities for implementing mobile waste processing complexes due to  comparatively low recycling practices. However, our technology is not just limited to the European  market but aims to address inadequate recycling practices globally. Our mobile complexes make it  possible to reduce toxic substances with zero to negligible impact on the environment. It not only  reduces the cost of recycling, but the destruction of waste guarantees more than 90% reduction in  landfill burden. 


Currently, we have tested a prototype for the incineration of household waste at railroad ties. Positive  results obtained show the effectiveness of the incineration process and the absence of noticeable  harmful exhaust gas emissions. We propose a high productivity rate of 500 kg/hour or 12 metric tons  per day. Additionally, our technology aims to provide a dual advantage where the heat generated from  the incineration process is used to generate electricity. We have conducted tests where a turbine has  been powered with the resulting heat to generate electricity, showing positive results. We are in the  process of improving and fine-tuning our technology to suit the highest standards set in current global  environmental regulations and policies. As of 2020, the global market for waste incinerators has reached a value of US$ 13.3 Billion. 


This is a  positive economic opportunity given the technologically advanced features of our mobile waste  processing complex. We are driven by highly effective waste management as waste generation increases with the progressive expansion of urbanized areas. We believe that the technological demand for waste incinerators is undergoing significant economic growth.

Projects

Low-Temperature DeNox Catalysts

Oil & Gas Pipeline Monitoring and Leakage Detection

Oil & Gas Pipeline Monitoring and Leakage Detection

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Oil & Gas Pipeline Monitoring and Leakage Detection

Oil & Gas Pipeline Monitoring and Leakage Detection

Oil & Gas Pipeline Monitoring and Leakage Detection

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Kinetic Energy Storage

Oil & Gas Pipeline Monitoring and Leakage Detection

Recuperation of Garnet Sand Sludge after Waterjet Cutting

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Recuperation of Garnet Sand Sludge after Waterjet Cutting

Recuperation of Garnet Sand Sludge after Waterjet Cutting

Recuperation of Garnet Sand Sludge after Waterjet Cutting

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Microphones based on Fiber Optic Sensors

Recuperation of Garnet Sand Sludge after Waterjet Cutting

Microphones based on Fiber Optic Sensors

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Thermoelectric Generator

Recuperation of Garnet Sand Sludge after Waterjet Cutting

Microphones based on Fiber Optic Sensors

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