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Review
. 2018 Apr;48(4):273-296.
doi: 10.1080/10408444.2017.1408567. Epub 2018 Jan 8.

Toxicological and ecotoxicological properties of gas-to-liquid (GTL) products. 2. Ecotoxicology

Affiliations
Free article
Review

Toxicological and ecotoxicological properties of gas-to-liquid (GTL) products. 2. Ecotoxicology

Graham F Whale et al. Crit Rev Toxicol. 2018 Apr.
Free article

Abstract

Gas-to-liquid (GTL) products are synthetic hydrocarbons produced from natural gas using a catalytic process known as the Fischer-Tropsch process. This process yields a synthetic crude oil that consists of saturated hydrocarbons which can subsequently be refined to a range of products analogous to those obtained from petroleum refining. However, in contrast to their petroleum-derived analogs, GTL products are essentially free of unsaturated or aromatic compounds and do not contain any sulfur-, oxygen-, or nitrogen-containing compounds. Under new chemical substance notification requirements, an extensive testing program covering the entire portfolio of GTL products has been undertaken to assess their hazardous properties to human health and environment. The results of these studies have been summarized in a two-part review. Part 1 provides an overview of the mammalian toxicity hazardous properties of the various GTL products. This second part of the review focuses on the aquatic, sediment, terrestrial, and avian toxicity studies which assess the ecotoxicological hazard profile of the GTL products. Many challenges were encountered during these tests relating to dosing, analysis and interpretation of results. These are discussed with the intent to share experiences to help inform and shape future regulatory mandates for testing of poorly soluble complex substances. As was the case with the mammalian toxicology review, there were a few cases where adverse effects were found, but overall the GTL products were found to exert minimal adverse ecotoxicological effects and these were less severe than effects observed with their conventional, petroleum-derived analogs.

Keywords: Fischer–Tropsch; Gas-to-liquid; aquatic toxicity; base oil; ecotoxicology; environmental hazard; fuel; sediment toxicity; soil toxicity; solvents.

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