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Experimental device LPK-SSTR for measuring the mixing performance of multiple reactors in series

NegotiableUpdate on 06/26
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Overview

The experimental device LPK-SSTR for measuring the mixing performance of multiple reactors in series uses pulse tracing method to measure the residence time distribution. The conductivity meter can accurately and real-time detect the concentration of tracer at the outlet of each reactor, and the residence time distribution curve is obtained through computer software processing. The device consists of a reaction kettle, water tank, motor, water pump, digital conductivity meter, rotor flowmeter, and electronic control system. It is possible to analyze and study the residence time distribution and degree of backmixing in a kettle reactor through the parameters of a multi kettle series model, where the model parameter N represents the degree of backmixing in the reactor.

Product Details

Experimental device LPK-SSTR for measuring the mixing performance of multiple reactors in series

Attribute:

Type: Experimental Teaching Special Device

Scope of application: Experimental teaching of chemical engineering principles, small and medium-sized scientific research trials

Surface treatment: wire drawing treatment

Size:2200mm*580mm*1700mm

Voltage:220v

Power:0.25kw

Color: Grey white

Model:LPK-SSTR

Brand: Lepark

Sales location: National region

Experimental device LPK-SSTR for measuring the mixing performance of multiple reactors in series

Experimental device for measuring the mixing performance of multiple reactors in seriesThe pulse tracing method is used to determine the residence time distribution, and the conductivity meter can accurately and real-time detect the concentration of tracer at the outlet of each reaction kettle. The residence time distribution curve is obtained through computer software processing.The device consists of a reaction kettle, water tank, motor, water pump, digital conductivity meter, rotor flowmeter, and electronic control system.Can be connected in series through multiple potsmodel parametersAnalyze and study the residence time distribution and backmixing degree of the kettle reactor, model parametersN represents the degree of backmixing in the reactor.

The following knowledge points can be taught:

1Learn the method for measuring the residence time of single reactor and three reactor series reactors;

2Understand the characterization of the residence time distribution and degree of backmixing in a kettle reactor by the parameters of the serial model

3Understand the model parametersNThe physical significance of

4Understand the two ideal modes of flat flow and fully mixed flow;

Device features:

Experimental device for measuring the mixing performance of multiple reactors in seriesApplicable tochemical industryclassprofessionaldevicetotalfloor area1.28Square meters, height1.7Mi,Overall adoptionEuropean standard aluminum profilesframeworkHigh quality aluminum alloy frame with movable castersDurable.All liquid and gas pipelines of the equipment are made of hard transparent visible pipelines, and the whole set adopts a quick detachable connection method, which is pressure resistant≥0.6MPa, wall thickness≥2.0mmAuxiliary pipelines such as pressure pipes are made of transparent soft materialsPVCEnsure that the overall transparency of the equipment exceeds80%Make experimental phenomena more intuitive. Equipped with an intelligent learning system, through preview videos3DSimulate and conduct online assessment tests to cultivate students' self-learning awareness, stimulate their interest in learning, and reduce teaching pressure for teachers. provide6-year warranty to solve users' worries.