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TAGAT® V 20 is a non-ionic emulsifier that is based on POE-20 glycerol oleoricinoleate. It is a low-foaming emulsifier that finds use in a wide range of applications such as metal working fluids, concrete release agents, textile auxiliary formulations, and pulp and paper defoamers. TAGAT® V 20 is derived from natural raw materials, which makes it dermatologically safe and environmentally friendly. It has excellent emulsifying and stabilizing properties, which ensure the formation of finely dispersed and long-lasting stable oil-in-water emulsions. TAGAT® V 20 also enhances the solubility of biocides in mineral oil-based lubricants and improves the lubricating properties of water-mixed fluids. It has a low foaming tendency and provides excellent thermal stability.

Functions: Defoamer, Emulsifier

Applicable Processes: Release Agent Manufacturing

Physical Form: Liquid

Knowde Enhanced TDS

Identification & Functionality

Fluids & Lubricants Functions
Industrial Additives Functions

Features & Benefits

Fluids & Lubricants Features
Industrial Additives Features

Applications & Uses

Applicable Processes
Fluids & Lubricants Type
Fluids & Lubricants End Use
Industrial Additives End Use

Properties

Physical Form

Technical Details & Test Data

Framework of LCA

Goal:

  • Calculation of the environmental performance of products manufactured and sold by Business Line Interface & Performance.

System Boundary:

  • Cradle-to-Gate

Functional Unit (FU):

  • 1 kg TAGAT® V 20

Methodology:

  • All our Life Cycle Assessments are following the principles of ISO 14040/44 and ISO 14067 standards.
  • The established method of the Dutch Environmental Science Research Center Leiden (CML) with characterization factors from November 2013 was used.

Data Sources:

  • The LCA was created in 2020 by an internal Life Cycle Management team.
  • The LCA is based on primary data from the year 2014 by Evonik for the production process, while secondary data from databases (such as GaBi and ecoinvent), suppliers or literature is utilized for external processes and raw materials.
  • The software GaBi 10 was used for the LCA modeling.
  • The data for energy consumption were updated with values from 2021.

Cut-off rules for the inventory:

  • In general, 1% for single inputs and below 5% for the sum.
  • No environmentally relevant flows were neglected.
  • Some utilities of production processes have been modeled analog to known processes.
  • Transports have been considered but distances have mainly been estimated.
  • The result uncertainty in all categories is about +/- 20 % as these results base on several assumptions.

Result (Cradle-to-Gate):

Evaluation variables Value Unit per FU
Blue water consumption 16.5 kg
Acidification Potential 0.02 kg SO2 eq.
Global Warming Potential incl. LUC 2.08 kg CO2 eq.
Primary Energy Demand 63.3 MJ