Products & ReviewLab Automation

LCTech D-EVA

VelarisAvailable: Worldwide

The LCTech D-EVA is an automated vacuum centrifuge for rapid, parallel concentration of organic solvents. Using infrared heating and sensor-controlled end-point detection, it delivers high analytical reliability, increased throughput, and reduced manual effort for routine laboratories.

Request Pricing
Velaris

Receive your quote directly from the manufacturer.

Ease of Use
After Sales Service
Value for Money
Be the first to leave a review
Description

The LCTech D-EVA automates critical concentration steps within PFAS workflows and many other applications. Its sensor-controlled end-point detection reliably prevents samples from going to dryness - an essential feature for volatile analytes such as neutral PFAS.

By minimizing manual intervention, the system enhances reproducibility, reduces handling errors, and improves overall laboratory efficiency. Designed for demanding routine use, D-EVA supports standardized workflows and helps laboratories meet stringent regulatory requirements while maintaining high data quality at trace levels.

Key Features & Benefits

  • Automated and reliable evaporation
  • Sensor-controlled end-point detection (prevents dryness)
  • High reproducibility and process reliability
  • Increased sample throughput through parallel processing
  • Standardized routine workflows (default methods)
  • No cross-contamination
  • PFAS-free background due to closed system design

Applications

  • PFAS analysis
  • Dioxin and furan analysis
  • PCB analysis
  • MOSH/MOAH analysis
  • Any application requiring evaporation of analytes from organic solvents

Product Overview

Links

Xprep C-IC

Velaris

TRACE's Xprep C-IC is an automated sample preparation solution for the analysis of total fluorine, chlorine, bromine, and iodine by combustion ion chromatography method - ideal for PFAS monitoring

(0)

SPE-03

Velaris

The SPE-03 is a compact 8-channel automated solid phase extraction (SPE) system designed to improve laboratory efficiency, accuracy, and reproducibility through fully automated sample preparation and parallel processing.

(7)