Cement is the second-most used commodity in the world (second only to water). It is also responsible for nearly 8% of carbon emissions globally. Rather than focus on small problems that will result in marginal moves of the needle, Furno is tackling one of the heaviest industries on the planet to put an end to climate change. Furno is redesigning and decarbonizing the cement manufacturing process with novel kiln and combustion technologies, both of which increase efficiency, dramatically reduce reactor size and costs, and eliminate harmful emissions (CO2, NOx, SOx, CO, mercury, and others). Furno’s mission is to make the production of cement accessible, modular, and emissions-free.
NOC Energy has developed a highly innovative hot gas generator, designed to accelerate decarbonization in energy-intensive industries such as mining, cement, and steel, among others. This solution converts electricity from the grid or renewable sources into hot air of up to 1,500°C (2800°F) without green house gas emissions.
zupply uses AI-powered digital twins reduces carbon emissions by improving how resources are managed across products, buildings, and entire portfolios. By bringing together technical, financial, and environmental data and using AI, zupply helps companies simplify their operations, generate technical deliverables, and meet regulatory requirements. This boosts operational efficiency and empowers organizations to make data-driven decisions, ensuring a sustainable and profitable asset management.
Circotrade captures buildings’ unrealised value by inventorying, gauging and trading its components via an innovative “futures contract” and marketplace. By bringing the principles of futures commodity trading to the circular economy, Circotrade provides visibility and manages future risks to overcome the financial and logistical barriers facing reuse. In this way, Circotrade, boosts the uptake of secondary construction materials and products, saving carbon and waste at the same time.
revitalyze is the first digital platform to streamline the scouting and procurement of recycled aggregates by enabling automated workflows. Through their integrated, white-label portal, customer can easily track, manage, and receive orders in real-time. The award-winning solution connects pre-demolition data with just in time procurement, helping to unlock untapped value from construction waste and contributing to a more sustainable future.
The limited operational capacity of current vision systems prevents their direct use in the field, even though they are essential for reducing the overconsumption of natural resources.
IRIDESENSE introduces the world’s first multispectral 3D LiDAR, enhancing both human and vehicle perception. For mining and construction, the spectral power of our perception solution reveals the chemical properties of elements in 3D, regardless of lighting conditions and over long distances. This enables our clients to optimize their resources and reduce their carbon footprint. While guiding the vehicle and detecting and identifying obstacles day and night in the field or underground, it can also monitor at distance, day and night, moisture levels of gravels, piles, sands, the load in a truck’s bed…; it can sort out different types of ores and assess ores purity and even sort out hydrocarbon polluted soil from clean soil.
Skyline Cockpit leverages advanced robotics and automation technologies for crane remote operation.
Our solution optimises on-site operations through actionable insights derived from the data collected on-site, ensuring continual enhancement of performance metrics. Experience a 360-degree site panorama and crystal-clear visibility of the load line and hook. Take advantage of AR-predicted landing spot while seamlessly managing multiple cranes, unlocking an 8% surge in operational productivity.
Skyline Cockpit’s pioneering technology is your perfect fit regardless of your tower crane model. Multi-Angle Camera System
Using multi cameras placed on the tower crane, we display a panoramic view capturing every essential angle, including perspectives from the trolley winch, lift winch, and the cabin and a clear view of the hook and load line.
Cutting-Edge Software Fusion & AR
Our sophisticated software process interweave these visuals to presents a unified, intuitive display, enabling the crane operator to oversee diverse operational elements concurrently. On top of that, we offer an AR layer that anticipates the exact landing spot in real time.
Enhancing Remote
Indicators
Our proprietary algorithms and patented applications empower operators with real-time alerts and critical data, including safety warnings, based on weather and wind data during lifting tasks.
Hive Autonomy is shaping the future of AI-operated remote and autonomous machines, enabling a single operator to control multiple machines simultaneously from centralized operations stations. This provides immediate benefits to our customers, especially in terms of safety and cost efficiency, while paving the way for radical cost reductions through full autonomy. We believe that the future of load handling will be driven by AI, with artificial neural networks learning from operator actions and autonomously replicating those actions to perform optimized load handling operations. Our solution is today in operation at among others Yara, a large international fertilizer producer, where the company is taking advantage of our multi-site and multi-machine autonomy platform.
With Eternstar’s free online application and 3D printing robots, anyone can bring their designs to life for just $100 a day. With just a few simple steps, their 3D creations can become a reality.
Ready to start a new world of construction design? Visit Eternstar’s website to get started, or pick up your printing robot from one of its partnered warehouses with a pickup truck.
Eternstar invites people to explore the limitless possibilities of 3D concrete printing, empowering them to bring designs to life in every corner of the world.
Opacity is a foundational issue for processors of secondary material as they operate with limited material visibility, leading to hazard-related fires, downtime, and loss of downstream material provenance. True material visibility has remained an unsolved problem in the industry, given that the issue is predicated on an ever-evolving secondary material stream. Material composition can vary by time of day, season, municipality, city, and much more, and material depth (i.e. “burden depth”) makes it impossible to obtain accurate information on a facility’s material stream with conventional camera equipment.