{"id":115231,"date":"2023-06-30T06:31:12","date_gmt":"2023-06-30T10:31:12","guid":{"rendered":"https:\/\/wasteadvantagemag.com\/?p=115231"},"modified":"2023-06-30T06:31:12","modified_gmt":"2023-06-30T10:31:12","slug":"adding-intelligence-to-dust-collector-systems-improves-performance-and-lowers-operating-costs-2","status":"publish","type":"post","link":"https:\/\/wasteadvantagemag.com\/adding-intelligence-to-dust-collector-systems-improves-performance-and-lowers-operating-costs-2\/","title":{"rendered":"Adding Intelligence to Dust Collector Systems Improves Performance and Lowers Operating Costs"},"content":{"rendered":"
Capturing system data can help waste operations save energy and consume less compressed air.<\/em> Dust collector systems are an essential feature of waste management, ensuring the health and safety of the work environment, and satisfying the requirements of environmental regulations. For many waste management operations, dust Due to these aging systems and processes, the trend of adding intelligence to dust collector systems is continuing to grow. The use of new technologies, like data-capturing sensors, sophisticated valves, and status and analytics software, is producing measurable benefits. These benefits include better performance, lower operating costs, and reduced labor requirements\u2014all of which support the goals of a safer, healthier, and more productive work environment.<\/p>\n <\/p>\n <\/p>\n Addressing System Inefficiencies<\/strong> \u2022 \u0007Inefficient maintenance routines: General maintenance practice on dust collector systems includes manual checking of filter bags, which takes a lot of time and effort. This is due to not being able to locate where there are faulty solenoid valves, broken bags, or other maintenance issues and that the only indication of a problem occurring is often visual. These challenges create a domino effect of inefficiency: inefficient cleaning of the filters bags, and the system demands more time, energy, and resources to mitigate the effects. Digitizing and automating the system break this inefficient and potentially wasteful cycle.<\/p>\n <\/p>\n <\/p>\n <\/p>\n Solving Challenges by Adding Intelligence<\/strong> A dust collector system is a data gold mine. Sensors can extract such metrics as system particle level, hopper dust levels, blower current, dusty air temperature, the difference in differential pressure between pre- and post-filter chamber, and air\/gas tank pressure. This data can then be leveraged by diagnostic software to provide valuable insights into performance, including the location of filter leaks and solenoid failures by row. It can also provide individual device health diagnostics. A programmable logic controller (PLC) can then use this information to control the system for optimal performance.<\/p>\n For example, all of a dust collector system\u2019s controls can be compiled into one PLC. Using the data collected by a particle sensor, the PLC knows when the dust bags need to be cleaned and when to pulse the valve. This reduces compressed air usage by only pulsing when necessary. This process can be made even more efficient by updating the pulse valve with a modern valve that delivers extremely fast opening and closing times. Faster opening and closing reduces the amount of compressed air that is wasted while the valve is operating. Altogether, these enhancements can lower compressed air consumption and reduce CO2 emissions.<\/p>\n Furthermore, dust collector system data can be measured, displayed and stored using HMI or SCADA software. This provides an accessible platform for operators and technicians to review the status and performance of the system in real time. Some SCADA software can also display multiple dust collector systems across one or multiple plants, and the information can be accessed locally or via a web browser. Personnel can then receive alerts when the system identifies an issue or when maintenance is due. Another key feature is generating historical reports to satisfy government regulations posing restrictions, such as on plant energy usage.<\/p>\n <\/p>\n <\/p>\n The Benefits of Technology and the Future of Dust Collectors<\/strong> Olivia Demkowicz graduated from Rensselaer Polytechnic Institute with a B.S. in Mechanical Engineering and a B.S. in Design, Innovation, Society. In 2020, she joined Emerson\u2019s Engineers in Leadership Rotational Program where she worked in multiple business units across the globe. Currently, Olivia is the Product Marketing Manager for Dust Collector in the Americas under the Discrete Automation Business Group at Emerson. For more information, call (888) 889-9170.\u00a0<\/em><\/p>\n","protected":false},"excerpt":{"rendered":" Capturing system data can help waste operations save energy and consume less compressed air. By Olivia Demkowicz Dust collector systems are an essential feature of waste management, ensuring the health […]<\/p>\n","protected":false},"author":1775,"featured_media":115233,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"_price":"","_stock":"","_tribe_ticket_header":"","_tribe_default_ticket_provider":"","_tribe_ticket_capacity":"0","_ticket_start_date":"","_ticket_end_date":"","_tribe_ticket_show_description":"","_tribe_ticket_show_not_going":false,"_tribe_ticket_use_global_stock":"","_tribe_ticket_global_stock_level":"","_global_stock_mode":"","_global_stock_cap":"","_tribe_rsvp_for_event":"","_tribe_ticket_going_count":"","_tribe_ticket_not_going_count":"","_tribe_tickets_list":"[]","_tribe_ticket_has_attendee_info_fields":false,"_jetpack_memberships_contains_paid_content":false,"footnotes":"","jetpack_publicize_message":"","jetpack_publicize_feature_enabled":true,"jetpack_social_post_already_shared":true,"jetpack_social_options":{"image_generator_settings":{"template":"highway","enabled":false},"version":2}},"categories":[95],"tags":[1110,586],"class_list":["post-115231","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-magazine-articles","tag-dust-collector-systems","tag-dust-control"],"jetpack_publicize_connections":[],"acf":[],"yoast_head":"\n
\nBy Olivia Demkowicz<\/strong><\/p>\n
\ncollector systems\u2019 antiquated processes pose challenges at a large scale. These include high energy costs, expensive consumption of carbon dioxide-producing compressed air, and extra time and labor for system maintenance.<\/p>\n
better dust control. Images courtesy of Emerson.<\/figcaption><\/figure>\n
\nMany areas within waste operations require dust collector systems, and these systems are a critical component of keeping the work area safe and protecting the environment. Examples of areas where dust collectors are used include air filtration applications such as cement, chemical, and food production facilities, waste incineration, material handling applications such as pneumatic conveying and handling of bulk solids, or finishing applications like blasting, sanding, and powder coating.
\nDust collector systems often operate the same way for numerous years, resulting in inefficiencies that have made them ideal targets for updating with modern tools and technology. Some of the biggest challenges of outdated systems that can be addressed include:<\/p>\n
\n\u2022 \u0007Frequent shutdowns: Prolonged system shutdowns can occur due to the high maintenance time required to ensure a functional system, costing critical time and dollars at the plant level.
\n\u2022 \u0007Greater labor demand: Manual maintenance and shutdown troubleshooting consume more time and attention from personnel during a period when labor is already in short supply.
\n\u2022 \u0007Increased energy use and carbon emissions: There is much opportunity to optimize the efficiency and functionality of dust collector systems. For example, timer-based pulsing results in over-pulsing the valves and cleaning the filters when it is not necessarily needed. This wastes energy and compressed air and can harm the filter bags themselves. Additionally, this overruns the compressors, which produces carbon dioxide emissions. An alternative is switching to differential pressure or particulate-based pulsing that pulses only when conditions indicate that cleaning is needed. This optimizes functionality and is more sustainable.<\/p>\n<\/p>\n
\nTwo of the primary ways companies are resolving dust collecting issues are by adding sensors to the system to capture data and by automating tasks like pulse cleaning. Data can help an operations manager see the real-time status of the dust collector system and measure its impact on the plant\u2019s larger ecosystem. Data can be used to calculate the precise timing and location of maintenance tasks while intelligent automation can optimize system functionality for a more efficient dust collector system.<\/p>\n
\nApplying sensors, controllers, software, and overall intelligence to a dust collector system can result in real savings, and many benefits are achievable with the introduction of intelligent components. The digital transformation of the dust collector industry will take time to reach its full capacity, but the evolution of these systems across OEMs and end users is already apparent. The future of dust collectors looks like the future of all industrial equipment\u2014fully automated, optimally efficient and effectively participating in the effort to lower carbon emissions. | WA<\/p>\n