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March 10, 2026CLEAN - Soil Air Water0 citationsOpen Access

Ecotoxicological Evaluation of Soil Irrigated With Cattle Slaughter Effluent Disinfected With Peracetic Acid Using the Bioindicators Eisenia fetida and Vibrio fischeri

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RERose Bertilde EstiméLBLeydiane Barbosa BezerraEFEllen Cristini de Freitas

Key Points

  • This research aims to assess the ecological impact of cattle slaughter effluent and its disinfection with peracetic acid on soil health.
  • Analyzed characteristics of cattle slaughter effluent before and after treatment with peracetic acid.
  • Conducted escape tests with Eisenia fetida to measure earthworm responses to treated and untreated effluents.
  • Performed toxicity tests using Vibrio fischeri to evaluate luminescence inhibition.
  • Executed soil biodegradability tests to assess oxygen consumption in soils treated with effluents.
  • Earthworms showed a higher escape rate from effluent treated with peracetic acid (75%) compared to untreated (65%).
  • Vibrio fischeri tests indicated no toxicity in non-disinfected effluent, but detectable toxicity (luminescence inhibition >20%) in the effluent treated with peracetic acid.
  • Increased oxygen consumption was observed in soils moistened with treated effluent, indicating enhanced biodegradability.

Abstract

ABSTRACT The increasing volume of effluents generated by slaughterhouses is driving studies that seek sustainable alternatives for their reuse in agriculture. However, the reuse of these effluents must be done with caution because when applied to the soil, they can interfere with terrestrial ecology or even in aquatic ecosystems when transported by leaching or runoff. In this context, this study aimed to evaluate the ecotoxicological effects of cattle slaughter effluent and effluent disinfected with peracetic acid (PAA) using the terrestrial bioindicator Eisenia fetida (earthworms) and the aquatic bioindicator, Vibrio fischeri (bioluminescent bacteria). After defining the PAA dosage 10 mg L −1 ), the physicochemical characteristics of the effluent were analyzed before and after the application of the disinfectant. Regarding the ecotoxicological tests, the escape test with E. fetida showed a higher rate in the effluent with PAA (75%), whereas the non‐disinfected effluent showed an escape rate of 65%. According to the tests using V. fischeri , the effluent did not present toxicity, but there was toxicity (luminescence inhibition >20%) in the effluent disinfected with PAA in the two tests performed in different collections. The soil biodegradability tests demonstrated that there was an increase in oxygen consumption in the soil moistened with the effluent. In decreasing order of soil biodegradability, the following were obtained: Soil moistened with effluent disinfected with PAA, soil moistened with effluent without disinfectant, and control soil. Therefore, further studies are needed to optimize the effluent treatment process, its disinfection, and to reduce potential impacts on terrestrial and aquatic ecosystems.

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Cite This Study

Estimé et al. (2026) studied this question.

synapsesocial.com/papers/69af95de70916d39fea4de89https://doi.org/10.1002/clen.70129
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