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April 15, 2026Discover Environment5 citationsOpen Access

Preliminary monitoring of physicochemical parameters and assessment of heavy metal contamination of textile industry effluents as emerging environmental threats

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HMHansa MathurMody University of Science and TechnologyRPRobert PopekWarsaw University of Life SciencesNJNavneet JoshiMody University of Science and Technology

Key Points

  • This research aims to evaluate the heavy metal contamination and physicochemical properties of textile effluents and their environmental impact.
  • Analyzed soils and wastewater from the Sanganer textile hub using standard analytical techniques.
  • Measured pH, cation exchange capacity, and organic carbon levels in soil samples.
  • Determined total dissolved solids, biological oxygen demand, and chemical oxygen demand in wastewater samples.
  • Assessed heavy metal concentrations in both soil and wastewater samples.
  • Soil was alkaline with pH values between 8.6 and 9.4 and low organic carbon content (0.12–0.25%).
  • Wastewater showed high pollution loads: total dissolved solids reached 2976 mg/L, BOD ranged from 410 to 499 mg/L, and COD varied between 1347 and 2582 mg/L.
  • Heavy metals like lead (Pb) and chromium (Cr) were found in elevated levels in both soil and wastewater samples.

Abstract

Textile industries release large volumes of effluents enriched with azo dyes and heavy metals, posing severe risks to soil, water quality, agriculture, and human health. This study assessed the physicochemical parameters and heavy metal contamination of soils and wastewaters in the Sanganer textile hub, Jaipur district, India. Standard analytical methods revealed alkaline soils (pH 8.6–9.4) with low cation exchange capacity (2.26–2.52 meq/100 g) and depleted organic carbon (0.12–0.25%), indicating reduced fertility. Wastewater samples exhibited extremely high pollution loads, including total dissolved solids (up to 2976 mg/L), biological oxygen demand (410–499 mg/L), and chemical oxygen demand (1347–2582 mg/L), all far exceeding WHO standards. Heavy metal concentrations were elevated in both soil (Pb up to 5.44 ppm; Cr up to 7.88 ppm) and wastewater (Cu up to 5.43 ppm; Cr up to 3.10 ppm). These findings demonstrate that untreated textile effluents substantially degrade soil and water quality, threatening sustainable agriculture and ecosystem health. The results emphasize the urgent need for effective treatment strategies and sustainable bioremediation approaches to mitigate pollution and safeguard environmental resources.

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Cite This Study

Mathur et al. (2026) studied this question.

synapsesocial.com/papers/69df2b04e4eeef8a2a6aff06https://doi.org/10.1007/s44274-026-00633-3
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