APEX Envirocare ensures all projects align with regulatory requirements, environmental guidelines, and site-specific constraints. We evaluate site conditions, terrain, and accessibility to confirm stability and suitability for planned works and ensure seamless operations while minimising disruption to surrounding areas.
Our site assessment includes the implementation of drainage channels, filtration systems, and sediment containment measures to enhance site efficiency and environmental compliance.
We can guide you through the necessary steps for proper site preparation and collaborate with you to design solutions tailored to your site’s specific needs.
Our team at APEX Envirocare can collaborate closely with you to design and build temporary bunds tailored to your specific site needs. These bunds are essential for controlling water flow and containing sediment during projects such as dredging and dewatering. Whether using impermeable materials, geotextiles, or inflatable barriers, we ensure the bunds provide reliable protection and containment while enabling a safe working environment.
With our comprehensive site assessment process, we evaluate ground conditions, ensuring your site is level and stable enough to support the planned works. APEX Envirocare guides you through the steps required for proper grading, reinforcement, and preparation to prevent erosion, protect structural integrity, and guarantee that your project proceeds smoothly.
As part of our initial site assessment, we develop a customised water management strategy, including the design of drainage channels, filtration systems, and sediment containment measures. Our expert team ensures that all runoff is controlled, sediment is contained, and water quality is preserved, and environmental compliance is maintained throughout the project.
APEX Envirocare supplied Aqua Barriers to dewater an environmentally sensitive area along the Swan River for road construction.
Our approach involved specialist dredge equipment with advanced features designed to handle challenging WWTP conditions.