Valveless, Ceramic, Chemical Metering Pumps for Precision Low & Micro-Volume Fluid Control

Similar documents
MicroFluidics. Product Overview MASS FLOW CONTROLLERS SOLENOID CONTROL VALVES SOLENOID VALVES PROCESS VALVES PNEUMATICS SENSORS

Chemical Injection Methods for Irrigation 1

Chemical Injection Methods for Irrigation 1

Chemical Injection Methods for Irrigation 1

Turn-key packages - precise, accurate and dependable. Dosing, metering & monitoring systems

Industrial Drum Transfer Pumps

Drive Elements Made of Piezoelectric Materials

capabilities & solutions

QUANTIM Coriolis Precision Mass Flow Precise, continuous, totally process-immune measurement and control

For Safe and Delicious Water

Production. 33

RC400G FC400G RESIDUAL CHLORINE ANALYZER RC400G NON-REAGENT FREE CHLORINE ANALYZER FC400G RESIDUAL CHLORINE ANALYZER

testo 350. For emission testing and combustion analysis. Portable Emission Analyzer

mosquito LCP A fast and fully automated solution for Lipidic Cubic Phase screening Joby Jenkins, Product Manager

Product brochure. Solid-Liquid (SL) separators

Husky Process Equipment Contractors Guide

SECTION CHEMICAL FEED SYSTEM

Chemigation. in Georgia

Filtration Systems TM. Wherever Water Flows...

News. Power Generation 11. ph Control Reduces Acid Consumption in Neutralization Process up to 90 % Perspectives in Pure Water Analytics THORNTON

ECLIPSE. NSF/ANSI 61* *Non-metallic Only EXTERNAL GEAR PUMP ENGINEERED PRODUCTS. Flow: up to 33 gpm (125 lpm)

Advanced S O L U T I O N S

Pumps & Systems. Dosing Technology. Emptying Conveying Dosing

NOVADOS Metering Pumps

Technical Description Package Micro Auto Gasification System (MAGS )

Choosing the Right Residential Water Metering Technology

Chemical Injection. Systems and Equipment for Oil and Natural Gas

White Paper. Chemical dosing and blending - the role of precision actuators

Parafos. FAQ: Frequently Asked Questions. A) How does Parafos Work. B) Registration. C) Health. D) General. E) Feed and Control

MARKETS/APPLICATIONS. Aerosol Infection/Nebulization Aerosol instruments Aerosol Spray Aesthetic Products Agricultural Research

Cl500/Cl1000 BROCHURE

RELIANCE HIGH THROUGHPUT AUTOSAMPLER

Application Oily Water

Drip Irrigation Operation and Management

Innovating. Changing World. for a MARKETS SERVED: Petrochemical and Refining Natural Gas Offshore OEM

Sum Parameter Analysis AOX/TOX. AOX Analyzer multi X 2500

PERISTALTIC METERING PUMPS SINCE 1957

We place your needs. in the center. of our universe

Solidification: A New Approach to Zero Liquid Discharge (ZLD) in the SAGD Industry

Reverse Osmosis, Nano Filtration and Ultra Filtration

D, T, & P SERIES. Magnetically Coupled Precision Pumps. Pump Your Heart Into It

Handling Fluid Fertilizers Selecting the Right Equipment Components

HI Multiparameter Photometers with up to 44 Measurement Methods. ISO 9001:2000 Certified

KNOWLEDGE SERVICE EXPERIENCE. John Crane Sealing Systems in Waste Water Treatment

Ronningen-Petter. Mechanically Cleaned Filter Systems

OsmoBC Integrated Membrane Systems

Pneumatic Cement Grout Pump

GM-V. Chemical gear pumps Highly Corrosion-Resistant Sealless Gear Pump

Constant Chlor. Plus. Dry Calcium Hypochlorite Feeding System. Municipal Applications Food Safety Applications Industrial Applications PATENTED

AIR-OPERATED DOUBLE DIAPHRAGM PUMP

Sprint analysis of lubricating oils using the Thermo Scientific icap 7600 ICP-OES

DOSING-METERING PUMPS & DOSING SYSTEM

since 1928 ALBIN PUMP ALP PERISTALTIC PUMP ALP brochure-2011ee-gb.indd 1 24/08/11 14:07

Thermo Scientific Dionex ICS-900 Ion Chromatography System

Automated Soluble Salt Meter

Accu-Tab System TABLET CHLORINATION. Simple, Low-Cost System for Improved Operational Performance

Agri-Inject.com. Fluid injection technology systems for precise control over what happens on your course. Product Guide 1. Agri-Inject.

Water Treatment Solutions

Best Practices for Chemical Facility Design in Water Treatment. Sara N. Gibson, P.E.

CIRRUS MAGNETIC FLOW METER CLA1-MF

Proven Solutions for the Most Challenging Wastewaters

Complete. Compact. Compliant.

T Series. Self-Priming Centrifugal Pumps

Duotek. Air operated double diaphragm pumps

Rapid Large Scale Mixing of Clumped Powder Validated by Testing

Isco EZ TOC. TOC and TC Analysis Made Easy. Continuous on-line TOC/TC measurement using low-temperature oxidation

SPECIFICATIONS - DETAILED PROVISIONS Section Chlorination System (On-site Sodium Hypochlorite Generation System) C O N T E N T S

in critical A new dispensed. accuracy all other availability begin to

GE Power. Smarter. Cleaner. Industry. Iron & Steel 2017 STEAM POWER SYSTEMS INDUSTRY PRODUCT CATALOG

Ozone Injection - a Superior Choice for Clean-In-Place (CIP) Applications

Streamlined Blow-Fill-Seal Insertion Technology Increases Flexibility and Safety in Aseptic Packaging of Pharmaceutical Liquids

CHEMICAL INJECTION METHODS Pros & Cons

POREX Clinical Science Products, Media & Filters

Chameleon Adaptable Reactor Technology

BIOSTAT B-DCU. Product Presentation. Page 1

Dosing, Metering and Control Systems

Plural Component Materials and Proportioning

AP1000 European 9. Auxiliary Systems Design Control Document

EMISSION MEASUREMENT TECHNICAL INFORMATION CENTER NSPS TEST METHOD. Method 10 - Determination of Carbon Monoxide Emissions from Stationary Sources

Reverse Osmosis, Nano Filtration and Ultra Filtration

Close Coupled Sealless Pumps

Close Coupled Sealless Pumps

The types of industrial exhaust streams that present particular pollution-control challenges include:

Benefits of running organic matrices using the Agilent 5100 ICP-OES fast, robust, high performance analysis

to deliver the promised results

ASA Publication #185. Chloramination Analyzer Life Cycle Cost Comparison. August 3, Published by

G L Pumps. SSV Series. Vertical Multistage Pumps. New!! Expanded Range Capable of Flows up to 650 GPM!! Goulds Pumps.

Proven Flow Measurement Solutions for the Oil and Gas Industry

5400 Continuous Flow Tubular Reactors

ProMinent Evolution Series

Cells and Calibration Standards

Orbital Systems Tube Welding Made Easy

Size Reduction Specialists

Buffer In-line Dilution: Superior Performance with Volume Based Control. Mary Jo Wojtusik, Ph.D.

The Impact of Spare Parts. Performance

Micro Process Server. Standard Specifications. Hitachi Microreactor System

Operation and Maintenance Plan

Agilent SD-1 Purification System. Purify your way SD-1

METHOD 3 - GAS ANALYSIS FOR THE DETERMINATION OF DRY MOLECULAR WEIGHT. NOTE: This method does not include all of the

Installation Training For Space Heating Systems

Transcription:

25 September 2012 Pumps & Systems Magazine Herb Werner By Herb Werner Marketing Manager at Fluid Metering, Inc. Valveless, Ceramic, Chemical Metering Pumps for Precision Low & Micro-Volume Fluid Control From R&D applications in the laboratory to small scale pilot plants, a broad array of low flow and micro-fluidic applications rely on precision dispensing or chemical metering of fluids. But, as diverse as the applications, so are the variety of fluids, their chemical and physical characteristics, as well as the specific application parameters. For the purpose of this article, we will designate low flows as those below 1 liter per minute (L/m) all the way down to just a few milliliters per minute (ml/m). Micro-volume flows range from microliters per minute (ul/min) up to a few ml/min. In addition to low flow chemical metering process applications, such as pilot plants, there are an increasing number of low flow applications emerging as more and more industries use chemicals available in ultra-high concentrations. It could then be concluded that fluid control components, including pumps, need to have the flexibility to handle many different fluids and applications with accuracy and precision, even at what is considered extremely low flow rates. CeramPump Valveless Piston Pump Technology from Fluid Metering, Inc. (FMI) has been proven to be an extremely accurate, yet versatile method for low volume and micro-fluidic chemical metering in a broad range of process, production and OEM instrumentation. Pilot Plants Pilot plants, test stands, and bench-top systems comprise the majority of low flow chemical metering applications. These small scale chemical processing systems are the bridge between R&D process design and full scale production and are used in a broad spectrum of process industries. They generate vital information, which will be incorporated into the design of fullscale process and production facilities. Not only do Pilot Plants reduce the financial risk associated with building larger facilities, but they also test process feasibility and accommodate process refinement. Chemical, petroleum, pharmaceutical, power generation, waste treatment facilities, mining operations, and food processing are just a few examples of industries which utilize small scale systems to test, evaluate, and refine process concepts and designs before moving to full scale process plants. Page 1

Chemical feed systems used in pilot plants are scaled down as well, and as a result need to accommodate much lower flow rates than their full process counterparts at an increased accuracy. In addition, because very often process parameters are undefined, the chemical feed pumps used in small scale systems need to handle a broad range of fluid chemical properties, including varying ph, viscosities, pressures, and temperatures, all changing while maintaining an accurate flow rate. Therefore, the metering pump technology used for pilot plant and lab scale processes must accurately meter fluid independent of these variables. Fluid Metering s CeramPump valveless, ceramic metering pumps have proven to be ideal for pilot plant applications primarily due to the pump s sapphire-hard ceramic internal components. These ceramic internals are both chemically inert and wear resistant. Dimensionally stable ceramic components also eliminate accuracy drift typical of pumping systems that rely on elastomers, (flexible tubing and diaphragms), to move fluid through the pump. Fluid Metering pumps unique valveless rotating and reciprocation piston design also eliminates the need for check valves, which can clog, leak or fail over time. Metering of Concentrated Chemicals Depending on the industry and the specific application, there are several reasons why highly concentrated chemicals are being used more frequently. For example. in agriculture, precision placement fertilization is an alternative to broadcast spraying to increase effectiveness, as well as reduce the overall environmental impact of residual chemicals in the soil. For pesticide & mosquito spraying, the cost of transporting and storing large volumes of dilute malathion is significantly higher than shipping small concentrated volumes and diluting them onsite. This is also true for water treatment disinfectant chemicals like sodium hypochlorite, as well as industrial cleaning chemicals such as those used in automatic car wash equipment. In most cases, users of the dilute chemicals found that they were basically paying to ship and store large drums of chemicals that consisted mostly of water. Other examples of low flow process metering of concentrated chemicals for power generation include metering of bromine for algae control in cooling towers, injecting hydrazine into boiler feed lines for corrosion control, and more recently, a number of fuel cell fluidic applications. However, metering chemicals at high concentrations has many challenges. As the concentration increases, chemical feed rates significantly decrease. At these low flows, metering precision, and long-term accuracy become more difficult to achieve. Higher concentrations typically have increased corrosive properties as well. The CeramPump from Fluid Metering, Inc. having chemically inert, sapphire-hard ceramic internals can accommodate all of these application challenges. Micro-Volume Fluid Control for Medical Instrumentation: In addition to the applications mentioned above, The FMI CeramPump is used in a broad array of critical medical applications which require high precision, micro-volume fluid control. Clinical Diagnostic instrumentation incorporates fluidic control down to the microliter range as blood analyzers strive to perform more and more tests using smaller samples. FMI s CeramPump has been recognized globally as the solution for micro-volume fluid control in clinical chemistry instrumentation. For these critical applications, accuracy and precision are measured in millions of maintenance-free cycles. Typically, the valveless CeramPump, having only one moving part in the fluid path (and no valves) replaces multi-component syringe pump systems. Page 2

Fluid Metering s CeramPump is used for fluid control in hemodialysis equipment as well as in a broad range of applications for manufacturing of medical components. These including drugeluting stents, disposable IV tubing sets, catheters, contact lenses, hearing aid batteries, to name a few. FMI CeramPump Basics The CeramPump is a low volume piston pump, manufactured by Fluid Metering, Inc., which uses one moving part to accomplish both the pumping and valving functions thereby eliminate check valves which are present in all other reciprocating (syringe, diaphragm, bellows, piston) designs. The CeramPump uses a unique rotating and reciprocating ceramic piston, moving within a precision mated ceramic liner to accurately pump fluid in one direction without allowing any backflow. The reciprocation action of the piston acts very similar to a standard piston pump. As the piston moves back, it draws fluid into the pump chamber. As it moves forward, fluid is pushed out of the pump. However, what is truly unique is that in addition to reciprocating, the piston also simultaneously and continuously rotates in one direction. The piston is designed with a flat cut into the end closest to the inlet and outlet port (See figure 1). As the piston rotates, the flat is alternately aligned with the inlet and outlet port, essentially functioning as a valve. At no time is the inlet and outlet ports interconnected, and therefore the need for check valves is eliminated. One complete synchronous rotation and reciprocation is required for each suction and discharge cycle as shown in figure 1. An animation of continuous metering using the CeramPump principle can be found on the web site www.fmipump.com. Figure 1: Illustration of FMI s Valveless Pumping Principle Page 3

Easy Adjustment of Flow Rate & Dispense Volume The piston displacement (or volume pumped per stroke) is variable and controlled by the angle of the pump head to the drive. When the pump angle is zero, the pump head is in straight alignment with the drive, the flow is zero. In this situation, there is no reciprocation and the piston is only rotating. As the angle of the pump head increases above zero in either direction with respect to the drive, the piston reciprocates, and fluid is moved through the pump (See figure 2). The greater the angle, the greater the displacement per cycle (also know as stroke). Adjustment is infinite between zero and 100% and a flow rate indicator provides for accurate and simple linear calibration. The pump is designed so that at any angle and flow rate, the piston always bottoms for maximum bubble clearance. This is especially important at very small dispenses and flow rates, as the presence of even a minute bubble will significantly affect accuracy. Figure 2: Flow Rate Adjustment KEY FEATURE SUMMARY Valveless Design The valveless feature of the CeramPump design is its most significant feature. There are typically four check valves present in diaphragm, bellows, and traditional piston pumps. Even during normal operation, these will wear over time and not seal properly allowing backflow. As a result, accuracy will drift, and minimally the pumps will need periodic recalibration. Eventually, the check valves need to be serviced. Ceramic Internals The CeramPump uses sapphire-hard ceramics for both the piston and mated liner. These components are dimensionally stable in that they will not change shape or dimension over time. Therefore, the pumping chamber remains stable for millions of dispenses without downtime or recalibration. Accuracy & Precision Consistency in dispensing can be measured by monitoring both the accuracy and precision of the dispenses. Accuracy is a comparison of the average value of the dispense volume compared to the desired or target value. Precision is the range or degree of variation from Page 4

dispense to dispense. FMI s CeramPump will maintain an accuracy better than 1% with repeatability better than 0.5%. (See figures 3 & 4) Figure 3: Precision & Accuracy Figure 4: Typical Long Term Precision Note: Pump life not limited to 84.8 million cycles More examples of the versatility of FMI s Valveless CeramPump chemical metering applications: - Blending performance additives to diesel and home heating oil on-site - Sampling of stack gases for environmental air quality monitoring - Injecting hydrazine into boiler feed lines for corrosion resistance - Enhancing dairy products with vitamins and other nutrients - Chemical feed in a broad array of CPI industries including the manufacture of paints, pigments, plastics, specialty papers, adhesives, foundry & metal stamping products, electronics & semiconductor components. - Micro-dispensing of liquid crystal in the manufacture of LCD displays - Dispensing micro-volumes of a conductive fluid (ferrofluid) for the manufacture of speakers, headphones, and ear buds. - Dispensing of potassium hydroxide (KOH) electrolytes in the manufacturing of button cell batteries. - Metering concentrated hypochlorite for municipal drinking water disinfection - Micro-fluidic control of samples, reagents and wash chemicals used in medical diagnostic instrumentation, as well as dialysate recirculation in hemodialysis equipment. - Injecting tracer dyes into streams and groundwater for environmental flow studies. Page 5

- Metering and injection of acids and solvents used in hydrometallurgy mining to extract uranium and other ores. - Agricultural spraying of concentrated nutrients - Injection of concentrated malathion for mosquito spraying systems In Conclusion For over 50 years, from microliters per dispense to liters/min flow, FMI s CeramPump metering pumps have provided long-term, drift free accuracy in a broad range of applications and industries. The valveless design, having only one moving part made of sapphire-hard ceramics, will maintain drift-free accuracy of better than 1% for millions of maintenance-free cycles, without the need for recalibration. These features make the CeramPump ideal for low and micro-volume process applications. In addition, long-term drift-free accuracy makes the CeramPump metering pump especially suited for applications in remote locations (environmental monitoring and hydrogen fuel cells used to power remote cellphone towers). FMI CeramPump chemical metering pumps are available in a variety of configurations ranging from simple lab pumps to complete programmable metering and dispensing systems, as well as many compact OEM designs for medical, analytical, and process instrumentation. About Fluid Metering, Inc. Located on Long Island about 30 from New York City, Fluid Metering, Inc. patented the first rotating and reciprocating valveless pump and has been providing fluid control solutions for medical, analytical, chemical process, and industrial applications for over 50 years. In each of these markets FMI pumps can be found from the laboratory to the production floor, incorporated into OEM equipment and instrumentation, as well as process control and field installations. About the Author Herb Werner has been the Marketing Manager for Fluid Metering, Inc. for 17 years with over 35 years fluid control experience in chemical process, water treatment, medical & analytical instrumentation, pharmaceutical, and semiconductor industries. He has a B.S in Environmental Biology and is an active member of ISA, AWWA, & WEF societies. Page 6