• sponge city construction
    Propose recommended plans for the design institute for rainwater storage, storage and reuse; Provide high-strength, highly permeable ground paving systems; Create a circulation system that takes into account landscape and plant ecology.
  • black and odor water treatment
    Solve the problem of harmless treatment and resource utilization of dredged sediment in rivers and lakes. Dehydrated mud cakes are used to make planting soil, engineering soil, and non-sintering bricks.
  • solid waste resource utilization
    Collaborative disposal of engineering muck and industrial solid waste will complement each other's strengths and make the best use of everything.
  • mine restoration
    Through collaborative disposal of solid waste, the potential activity of slag is stimulated, and waste is used to treat waste to reduce the cost of backfilling and solidification of tailings slag; municipal sludge, dredged sediment, and agricultural waste are combined to achieve green restoration of tailings ponds.
  • Marine Engineering
    Steel slag powder, fly ash, etc. are used as gelling materials to mix clear silt from the harbor for blowing sand to build islands; cement, etc. are added to produce offshore wind power basic concrete prefabricated blocks, fish reefs, wave blocks, etc.
  • advanced recycled products
    Steel slag powder, fly ash, etc. are combined with slag, engineering muck to produce floor tiles, retaining walls, hydraulic blocks, wave blocks, fish reefs; High-quality quartz sand and high-strength granite aggregate produce granite imitation high-strength permeable square plates, curb stones, and permeable bricks.
scope of business
We mainly target general solid waste generated from urban construction, industrial production, harbor engineering, and mine rehabilitation, including construction waste, engineering muck, shield mud, dredged sediment from rivers, lakes, ditches, and harbors, steel slag, fly ash, tailings slag, and slag from domestic waste incineration plants. We conduct sintering-free collaborative disposal and comprehensive utilization of such solid waste.​ In the early feasibility study stage of construction projects, focusing on the disposal and resource utilization of solid waste that may be generated, we propose sintering-free methods for collaborative disposal and comprehensive utilization of solid waste. These methods can effectively reduce construction costs, save land occupation, and realize low-carbon environmental protection, so as to make the best use of materials and turn waste into treasure.