Schwing Stetter concrete equipment
Concrete batching plants and equipment for the production, transport and placing of concrete. Schwing Stetter equipment is supplied through the group companies (RENTEK).
Technologies and equipment
This direction is kept separate from the engineering and consultancy services and consists of two independent categories.
01 — Machinery and equipment
Schwing Stetter and SOMMER Anlagentechnik GmbH equipment: configuration selection, technical study, supply and service.
Concrete batching plants and equipment for the production, transport and placing of concrete. Schwing Stetter equipment is supplied through the group companies (RENTEK).
Quality Planning is the sales representative of SOMMER Anlagentechnik GmbH in Central Asia: Uzbekistan, Kazakhstan, Kyrgyzstan, Turkmenistan, Tajikistan. Equipment and production lines for precast concrete, production automation and the manufacture of building elements.
www.sommer-precast.deConfiguration selection, technical study and adaptation to the site, its infrastructure and the production process.
Technical coordination, commissioning, training, service and engineering support.
02 — Green technologies
Technology solutions for water, emissions, waste, recovery of valuable components, thermal processes and energy.
Our contribution here is engineering: assessment of the site's baseline conditions, feasibility study, integration of the equipment with the infrastructure and power supply, and preparation of material for approvals. Selection and supply of equipment is confirmed separately for each project.
Technologies for water production, treatment, purification and reuse, including atmospheric water generation. Atmospheric water generators operate from 15 % relative humidity and at 15–45 °C, with outputs from 1,000 to 20,000 litres per day, which covers conditions in Tashkent and the Gulf states. Model selection is preceded by an assessment of site conditions and the required power supply.
Water: services, verified projects and water technologyEquipment for flue and industrial gas cleaning, emissions reduction and air pollution control. The composition and volume of the off-gas governs the solution, so source data is collected before equipment is selected.
Municipal solid waste and industrial waste management, mining and metallurgical waste, waste collection and sorting systems, recycling and material recovery, landfill and waste-management infrastructure, Waste-to-Resource solutions and appropriate Waste-to-Energy applications, secondary raw-material utilisation, technical assessment and technology selection, feasibility studies and investment analysis, engineering and implementation support. The approach is based on the characteristics of the actual waste stream: technology and capacity are selected following assessment of waste composition, recoverable materials, energy and utility requirements, environmental conditions and the potential market for recovered products.
Technologies for recovering metals, minerals and other secondary raw material from waste and by-products. Assessment begins with sampling and assay of the specific feed: without that data, plant throughput says nothing about the result.
Equipment and process solutions for treating feedstock and recovering valuable components. Rare-earth content in industrial waste is normally low, so economic viability is confirmed by laboratory data before design decisions are taken.
Thermal equipment and process furnaces for industrial and processing applications, including electric arc and plasma furnaces for metal-bearing feed. The governing conditions are connected load and grid voltage, circulating water supply and feed moisture.
Solar power systems, battery energy storage, integration of renewables with facilities, and energy efficiency solutions. Configuration follows the facility's consumption profile and the grid connection conditions.
E-mobility strategies, EV charging infrastructure planning and its integration with electricity supply, renewable generation and storage. This area is set out in full under Mobility.
Mobility: ITS, traffic management and e-mobilityEnvironmental monitoring, environmental and social studies, and integration of green technologies into infrastructure projects. Scope follows the approval requirements of the specific facility.
Monitoring, control and optimisation systems for water, environmental and energy plant. The design part is produced within the facility's documentation.