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LAB & PILOT VALIDATION

Sample Testing & Pilot Validation
for Membrane Process Scale-Up

Use real industrial wastewater and process-fluid samples to validate membrane fit, operating windows, separation results, fouling and cleaning behavior, continuous-run boundaries, and engineering scale-up inputs.

MF / UF / NF / ROMembrane validation coverage
Real samplesBuild evidence with actual water and process-fluid samples
Bench test → pilot validationGenerate design inputs for engineering scale-up

Test scope, required sample quantity, safety conditions, and the need for pilot validation are confirmed project by project after data pre-review.

Plum pilot-validation platform for lithium recovery from salt-lake brine and ore
Public pilot record: a 500 L/h pilot platform for lithium recovery from salt-lake brine and ore in 2024.

WHEN TO VALIDATE

Which projects should validate samples before engineering design?

When published parameters cannot represent the actual feed, fouling, or cleaning behavior, experience-based scale-up can carry uncertainty into the project. Validation converts critical risks into measurable, reviewable boundaries before design.

01

Complex or highly variable feed composition

High suspended solids, oil, colloids, salinity, viscosity, or organics coexist, so one water-quality parameter is insufficient to determine membrane fit.

First answer: can the feed be filtered stably?
02

Product quality or selectivity is sensitive

Clarification, concentration, decolorization, fractionation, or purification projects require simultaneous observation of permeate, concentrate, and target components.

First answer: does separation meet the objective?
03

Fouling and cleaning boundaries are uncertain

Use operating cycles, differential-pressure changes, and cleaning recovery to determine whether fouling is controllable and to screen compatible cleaning strategies.

First answer: can performance recover and repeat?
04

Scale-up risk is high

New feedstocks, new processes, high-pressure duties, or safety-sensitive projects require continuous data to support membrane area, circulation method, materials, and control boundaries.

First answer: is there sufficient scale-up evidence?
Feed
Source, composition, variability, and safety properties
Objective
Clarification, retention, concentration, fractionation, or recovery
Current process
Existing flowsheet, constraints, and downstream interfaces
Scale
Sample conditions, target capacity, and operating mode

VALIDATION PATH

Move from one sample to data suitable for engineering discussion

Not every project requires every stage. Plum uses a decision gate at each point to continue, adjust the route, request more information, or stop an unsuitable approach.

  1. 01

    DESK REVIEW

    Data pre-review

    • Review the feed and separation objective
    • Identify safety, transport, and analytical gaps
    Decision gate: direct selection or testing required?
  2. 02

    SAMPLE SCREENING

    Sample screening

    • Confirm sample representativeness and testability
    • Define membrane candidates, analyses, and test boundaries
    Decision gate: define the bench-test scope
  3. 03

    BENCH TEST

    Bench validation

    • Screen membrane routes and an initial operating window
    • Observe flux, differential pressure, retention, and cleaning response
    Decision gate: continue, adjust, or stop
  4. 04

    CONTINUOUS PILOT

    Continuous pilot

    • Validate cycle length, stability, and mass balance
    • Confirm controls, CIP, and upstream and downstream interfaces
    Decision gate: sufficient evidence for scale-up?
  5. 05

    DESIGN INPUT

    Engineering design inputs

    • Establish membrane area, materials, and operating boundaries
    • Recommend the process route and next steps
    Output: proceed to process design or continue validation

EVIDENCE, NOT A SAMPLE ONLY

A valuable test delivers a basis for decision-making

Validation should answer why the route was selected, where its boundaries lie, and what remains to be verified. The analytical program and report depth are defined in the test scope against project objectives.

PLUM VALIDATION RECORD Membrane validation output framework

Project-specific content follows the mutually approved test scope

01 Membrane-fit assessment
Candidate membrane types, screening logic, and suitable and unsuitable duty boundaries.
02 Operating window
Time-based records of flux, pressure, temperature, concentration factor, or circulation conditions.
03 Separation results
Record key permeate and concentrate parameters and material destinations against the objective.
04 Fouling and cleaning
Differential-pressure or flux change, cleaning response, recovery, and risks requiring further confirmation.
05 Continuous-run performance
Pilot-cycle stability, response to variation, control points, and operating records.
06 Next-step recommendation
Recommendation to proceed to engineering design, adjust pretreatment, add testing, or stop the current route.

TEST PLATFORM

Configure equipment around the validation task, not one model in place of process judgment

The available platforms cover microfiltration, ultrafiltration, nanofiltration, reverse osmosis, and dedicated tubular membrane routes. Membrane type, pressure class, wetted materials, controls, and safety configuration must match the sample and test objective.

TUF

Standard tubular membrane platform

Membrane type
PVDF / PEK tubular membrane
Pressure reference
<5 bar
Control
Manual control with real-time temperature and pressure display
TUF · EX

Automated explosion-protected tubular membrane platform

Membrane type
PVDF / PEK tubular membrane
Pressure reference
<5 bar
Control
Automatic control + explosion-protected configuration
UF / NF / RO

Standard spiral-wound membrane platform

Membrane type
4040 UF / NF / RO
Pressure reference
2–28 bar
Control
Manual control with real-time temperature and pressure display
HP NF / RO

High-pressure spiral-wound membrane platform

Membrane type
High-pressure NF / RO
Pressure reference
Up to 80 bar
Control
Confirmed by project
AUTO · EX

Automated explosion-protected spiral-wound membrane platform

Membrane type
UF / NF / RO
Pressure reference
Configured to the project pressure class
Control
Automatic control + explosion-protected configuration

PUBLIC MODEL EXAMPLES

Public model examples indicate platform scale, not a fixed test plan

Only clearly bounded example fields from source documents are shown. Capacity is an equipment-data range and does not represent stable permeate production or engineering design flux for any sample.

ModelMembrane configurationCapacityPressure / temperatureWetted materialsControl boundary
PL-G4-1000-M4 × 1″ × 1 m PVDF / PEK tubular membranes20–100 L/h<5 bar / ≤60℃304 / 316 / 2205 / UPVC / CPVCManual valves; temperature and pressure display
PL-G8-1000-A-EX8 × 1″ × 1 m PVDF / PEK tubular membranes40–200 L/h<5 bar / ≤60℃304 / 316 / 2205 / UPVC / CPVCAutomatic + explosion-protected; project safety review required
PL-D3-4040-M3 × 4040 UF / NF / RO spiral-wound elements50–200 L/h2–28 bar / ≤80℃304 / 316 / 2205Manual valves; temperature and pressure display
PL-D3-2540-M-HP3 × 2540 high-pressure NF / RO spiral-wound elements10–50 L/h2–80 bar / ≤80℃304 / 316 / 2205Controls and safety configuration require technical approval

An automated explosion-protected spiral-wound platform can be configured by project. Membrane specification, pressure class, electrical design, and explosion-protection requirements are confirmed after sample safety review and technical approval.

SAMPLE & DATA READINESS

Better input data enables validation to answer the real engineering question

Plum first confirms sample quantity and analytical scope against the project objective; this page does not promise one sample quantity or a fixed schedule. Solvents, flammable or explosive materials, toxicity, biological risks, or special storage and transport conditions require prior safety-data review.

A

Project and process data

  • Feed source, industry, and existing process
  • Current capacity, operating mode, and primary constraints
  • Quality requirements for the target product, permeate, or concentrate
  • Planned project scale and upstream and downstream interfaces
B

Sample and analytical data

  • Representative sample and available quantity
  • Applicable data such as pH, temperature, viscosity, TDS, SS, oil, and COD
  • Target components and components that should not pass or be retained
  • Existing bench-test, filtration, or cleaning records
C

Safety and transport data

  • SDS, hazardous components, and biological-risk statement
  • Storage temperature, light protection, sealing, or time-limit requirements
  • Transport, opening, disposal, and site-protection conditions
  • High-pressure, explosion-protection, or special electrical requirements
Data not complete yet?

Submit the available data and the problem to be solved. Plum can use it to identify the initial information gaps.

Submit available data

SCALE-UP DECISION

A feasible test does not by itself establish an engineering commitment

Before scale-up, test observations must be converted into design boundaries. Data stability, sample representativeness, run duration, and risk level together determine whether a project proceeds to pilot validation or engineering design.

Question to answer Test or pilot evidence Engineering input generated
How large must the membrane section be?

Usable operating flux, circulation conditions, recovery, and decline trend

Membrane area, train count, pumps, and circulation boundary
How long can it run?

Continuous cycle, differential-pressure change, cleaning trigger, and recovery record

Operating cycle, CIP logic, and redundancy strategy
How should the equipment be configured?

Temperature, pressure, pH, corrosion, solvents, and safety conditions

Wetted materials, seals, electrical design, and control requirements
How does it connect to the existing process?

Pretreatment, concentrate, permeate, and downstream quality requirements

Process interfaces, material destinations, and design responsibility boundary

Validation data establishes project-specific boundaries and cannot be applied directly to another project without the corresponding sample, equipment, analytical method, and operating conditions.

PUBLIC PILOT RECORD

Public pilot record: from laboratory work to continuous operation

This record demonstrates Plum continuous-pilot capability and multi-membrane integration experience. It is not a treatment-performance or design-value commitment for another project.

Pilot-validation platform for lithium recovery from salt-lake brine and ore
Source: existing Plum public reference material; customer name not disclosed.

2024 · 500 L/h

Pilot project for lithium recovery from salt-lake brine and ore

The pilot platform bridges laboratory work and industrialization. It validated an integrated route under continuous conditions for salt-lake brine and spodumene extract and generated a data basis for subsequent scale-up.

Feed
Salt-lake brine and spodumene extract
Route
PEK tubular ultrafiltration + resin adsorption + NF + high-pressure RO
Validation task
Continuous stability, separation route, and engineering scale-up data
01

Complex industrial wastewater

Validate solids separation, oil removal, softening, or downstream NF/RO protection routes.

02

Production and product fluids

Validate clarification, concentration, fractionation, purification, and target-component destinations.

03

High-pressure membrane separation

Validate NF/RO pressure windows, concentration boundaries, and integrated membrane routes.

BEFORE YOU APPLY

About sample testing and pilot validation

Submit the available information first. Plum will identify missing data, assess whether testing is appropriate, and determine the correct starting stage according to objectives and risks.

Start a validation request →

When should a project start with bench testing instead of direct engineering selection?

Bench testing is generally appropriate when feed composition is complex, target components are sensitive, fouling and cleaning behavior are uncertain, or published parameters cannot represent the real sample.

Does every project require pilot validation?

No. The need for a pilot depends on feed variability, continuous-operation risk, product-quality sensitivity, project scale, and the available scale-up evidence. Plum recommends the next stage after bench testing or data pre-review.

What data can validation provide?

Depending on the approved scope, outputs can include membrane-fit assessment, operating windows, permeate and concentrate analysis, fouling and cleaning response, continuous-run records, and scale-up recommendations.

How much sample is required and how long will testing take?

Sample quantity and duration depend on membrane type, analyses, circulation volume, continuous-run requirements, and sample safety conditions. Plum confirms them after data pre-review rather than using a universal commitment on this page.

Can solvent-containing, flammable, explosive, or high-pressure duties be validated?

These duties require an SDS, hazardous-component information, and operating data, followed by safety, wetted-material, electrical, and explosion-protection review before testing can be scheduled.

Is a bench-test result equivalent to an industrial project performance guarantee?

No. Test results are valid only for the corresponding sample, equipment, analytical method, and operating conditions. An engineering commitment also requires continuous-pilot evidence, scale-up factors, design boundaries, and a formal technical agreement.

Can a customer request witnessed testing or a site demonstration?

Witnessed testing, site demonstrations, or overseas technical demonstrations can be discussed during project evaluation. Method, timing, safety requirements, and responsibilities must be confirmed separately.

REQUEST SAMPLE TESTING

Submit the sample and validation objective for Plum assessment

Provide the available water-quality or process-fluid data, the question to validate, and sample availability. Plum will review the information before confirming test scope, required sample, safety conditions, and next steps.

Recommended attachments Water / process-fluid analysis SDS and safety information Existing process diagram Product or permeate objective

Inquiry topicMembrane sample testing and pilot validation

This form supports preliminary project assessment and does not commit a test schedule, treatment performance, engineering performance, or safety configuration.