Our flow meters and oxygen analyzers can improve accuracy and enhance reliability with on-demand readings and tablet to transmitter communication and reduce your maintenance costs. Download our e-book “Measurement that Matters” and discover how our comprehensive systems are a proven solution for water and wastewater operations: https://lnkd.in/etZafezj #flowmeasurement #portableflowmeter #oxygenanalyzer #wateroperations #Panametrics
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With OXY World PSA Nitrogen Production Systems, you can produce your own nitrogen gas instead of procuring it from external sources. Additionally, with the optional booster, you can fill your nitrogen cylinders on-site. 1.COMPRESSOR The component that collects the air needed for the PSA nitrogen production system. 2.OIL TRAP (OPTIONAL) Prevents oil from leaking into the nitrogen generator. 3.AIR TANK Stores the air coming from the compressor. 4.DRYER Used to separate water vapor from the air coming from the air tank. 6.ACTIVE CARBON TOWER (OPTIONAL) Used for filtering odors and oil vapor. 7.NITROGEN GENERATOR Converts dry and clean air into pure nitrogen using carbon filtration. 8.NITROGEN TANK The pressurized component where the gas produced by the nitrogen generator is stored. 9.FILTER GROUP A component used to filter particles and oil vapor from the air. Effective in capturing dust and oil. 10.BOOSTER Enables the filling of produced high-purity nitrogen into cylinders. #Health #MedicalSector #OxyWorldPsa #NitrogenGenerator #OxygenGenerator #MedicalGas #Innovation #Healthcare #MedicalSolutions #MedicalSystem #MedicalExpert #NextGenNitrogen #InnovationInGas #EnergyEfficient #Oxyworld #PSATechnology17h
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With OXY World PSA Nitrogen Production Systems, you can produce your own nitrogen gas instead of procuring it from external sources. Additionally, with the optional booster, you can fill your nitrogen cylinders on-site. 1.COMPRESSOR The component that collects the air needed for the PSA nitrogen production system. 2.OIL TRAP (OPTIONAL) Prevents oil from leaking into the nitrogen generator. 3.AIR TANK Stores the air coming from the compressor. 4.DRYER Used to separate water vapor from the air coming from the air tank. 6.ACTIVE CARBON TOWER (OPTIONAL) Used for filtering odors and oil vapor. 7.NITROGEN GENERATOR Converts dry and clean air into pure nitrogen using carbon filtration. 8.NITROGEN TANK The pressurized component where the gas produced by the nitrogen generator is stored. 9.FILTER GROUP A component used to filter particles and oil vapor from the air. Effective in capturing dust and oil. 10.BOOSTER Enables the filling of produced high-purity nitrogen into cylinders. #Health?#MedicalSector?#OxyWorldPsa?#NitrogenGenerator?#OxygenGenerator?#MedicalGas?#Innovation?#Healthcare?#MedicalSolutions?#MedicalSystem?#MedicalExpert?#NextGenNitrogen?#InnovationInGas?#EnergyEfficient?#Oxyworld?#PSATechnology
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?? Say goodbye to measurement frustrations on Dissolved Oxygen readings with these three pro tips: ? ?????????????????? ??????????????????: Regular calibration is essential for accurate dissolved oxygen measurements. Follow the manufacturer's guidelines for calibration frequency and use standardised calibration solutions to ensure the instrument's accuracy. Calibration compensates for sensor drift over time, providing reliable readings. ? ???????????????? ???????????? ??????????????????: Keep the dissolved oxygen sensor in optimal condition by rinsing it with distilled water after each use. Avoid touching the sensor membrane with bare hands, as oils and contaminants can affect readings. Proper storage in a protective case or storage solution prevents drying and damage, contributing to accurate and reliable measurements. ? ???????????????? ?????????????????????? ????????????????????????: Dissolved oxygen levels can vary with changes in water temperature. Choose a water quality measurement instrument, like The TPS Ranger, that incorporates temperature compensation. This feature automatically adjusts dissolved oxygen readings based on water temperature, providing more accurate and precise results under varying environmental conditions. At TPS, we are committed to addressing water quality measurement challenges, ?????????? ???? ?????? ???? ?????????????????? ?????? ???????????? ?????????? ???? ???????????????? ???????????????? ???????? ?????? ?????????????????? ???????? ??????. ?? ?????? ???????????????? ?????? ????????-???????????????? ???????????? ???? ???????????? ???? ?????????? ?????? ???????? ???? ?????? ????????????, ???????????????? ???? ???????????? ???????????????????????? ???? ?????????? ????????????????. ???? Discover more about the Ranger and how it can benefit you: https://lnkd.in/g8UGfVgA
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Unlock the full potential of your business with our cutting-edge oxygen compressors. Designed for peak performance, these compressors deliver unmatched efficiency and reliability across all industrial applications. Amindus Consulting and Solutions’ oxygen compressors are engineered to maximize productivity, minimize downtime, and cut operational costs. Built to last and easy to maintain, our compressors meet the highest standards of quality and safety. Choose Amindus Consulting and Solutions for top-tier oxygen compression solutions that propel your business forward. Experience excellence and superior support with every compressor. #IndustrialSolutions #OxygenCompressors #PeakPerformance #Efficiency #Reliability #ProductivityBoost #CostEffective #QualityEngineering #SafetyStandards #AmindusConsulting #OperationalExcellence #TopTierEquipment #CustomerSupport #IndustrialEfficiency #CuttingEdgeTechnology
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How about taking an integrated probe to monitor water quality outside? What water quality parameters can be tested? Monitoring pH, depth, temp, Dissolved oxygen, orp, conductivity, ammonia, turbidity, Chlorophyll, Blue-green algae, Ammonia nitrogen, Nitrate, Chloride, Fluoride and so on..... A reliable water analayzer instruments ISO factory. #water #environment #waterquality #waterqualitymonitor #mutiparameterwatertest #mutiparameterswatermonitoring #OnlineWaterQualityMonitoring #watermonitoring #wateranalysis #wateranalyzer #turbiditysensor #dosensor #turbidity
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INDUSTRIAL EFFLUENT - Case Study Industrial effluent (3.3 MGD) discharged to a municipal WWTP was being treated with a liquid oxygen diffusion system for the purpose of sulfide control. The liquid oxygen system was unable to control the sulfide in the short retention time available (68% reduction), so the AOTech process was introduced to boost reaction rates, resulting in a 99% reduction in sulfide concentrations. #Bioremediation?#Remediation?#Water?#Soil?#IndustrialEnergy #Wastewater
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Keeping oxygen levels at a minimum matter when it comes to maintaining inert atmospheres in glove boxes. Whether it's for research or industrial processes, eliminating the operator’s risk of exposure to the product or process is a primary concern. Our gas measurement solutions ensure a stable, inert environment, minimizing contamination and exposure risks and enhancing operational reliability. Discover how we support critical glove box applications: https://bit.ly/3YFRZ7Y #InertAtmospheres #GloveBox #GasMeasurement #IndustrialGases #ProcessControl
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Limiting oxygen concentration test is predominantly used for either design of nitrogen inerting systems or to confirm a material is appropriate for processes with an established limited oxygen atmosphere. Search here - https://lnkd.in/gtB8yWg2 #limitedoxygenconcentration #processsafetytesting #processsafetystudy #sigmahse #ehsconsultant #powdertesting
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#Variable Rate Proportional Feeders If the rate of flow of water being treated varies, proportional feeding of coagulants is necessary and is a preferred method. This is carried out by accurately measuring the amount of coagulant fed by the pump. This pump is a proportioning and metering device which delivers a definite volume of coagulant with each stroke. A water metre with an electrical contractor is placed in the raw water line. The contactor closes a circuit every time a given volume of water flows through the metre. The closing of the circuit energises the motor of the reciprocating pump, which then operates to deliver a given volume of coagulant until an electric time switch breaks the circuit, thereby stopping the pump. The cycle repeats itself approximately every 30 seconds, at maximum flow, with the pump operating for approximately 20 seconds after each contact. The amount of coagulant fed is thus accurately proportioned to the flow of water regardless of variations in the rate of flow, because both the volume of water treated between metre contacts and the volume of coagulant added to treat the water are accurately measured. However, this suffers from the disadvantage that, particularly when used with alum solutions, the water is subject to an overdose and no-dose sequence. It is better to have the coagulant pump run continuously and to modulate the stroke of the pump with a mechanical device. Reciprocating / Positive Displacement Pump Chemical Feeders are shown in Figure 8.8. follow Suraj Sarkar ?? for more YouTube:https://lnkd.in/gSSqzq9a Instagram:https://lnkd.in/gmF4KwRU Linkedin:https://lnkd.in/gpAQANM8 Newsletter:https://lnkd.in/gMFUNth5 X (Twitter): https://lnkd.in/dAKfECaC #wtp #feeder
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Understanding the importance of oxygen monitoring in industrial applications is essential. Our latest blog delves into how effective oxygen monitoring improves gas quality and system efficiency, ensuring optimal performance and safety. Discover more about its critical role and benefits. https://bit.ly/4cQv3qU #IndustrialSafety #OxygenMonitoring #Efficiency #GasQuality
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