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April 13, 2026Applied Water Science0 citationsOpen Access

An eco-friendly flocculation treatment of wastewater treatment plant influent using natural anionic flocculants from Phyllanthus emblica and Moringa oleifera

VBVarsha BishtNMNeelam ManolaBLBanwari Lal

Key Points

  • The study investigates the potential of natural flocculants from Moringa oleifera and Phyllanthus emblica for wastewater treatment.
  • Lab-scale testing of mucilage as natural flocculants
  • Assessment of pollutant reduction efficiency in wastewater influent
  • Phytochemical screening and spectroscopy techniques used for active component analysis
  • Kinetic models established for chemical oxygen demand (COD) reduction
  • M. oleifera and P. emblica achieved flocculation efficiencies of 94.34% and 90.04%, respectively.
  • Reductions in COD of 76% and 73.2% for M. oleifera and P. emblica flocculants, respectively.
  • Biological oxygen demand (BOD) reductions of 72.4% and 70.1% were noted.
  • Total suspended solids reductions of 81.2% for M. oleifera and 78.4% for P. emblica were observed.
  • Chloride ion concentrations decreased by 58.3% and 55.7% with M. oleifera and P. emblica flocculants, respectively.

Abstract

Present study explores the efficacy of mucilage from Moringa oleifera pods and Phyllanthus emblica leaves as potential natural flocculants. Their flocculation ability was assessed at lab-scale using influent from wastewater treatment plant (WWTP), focusing on the pollutant reduction efficiency. The presence of significant active components was confirmed through phytochemical screening, ultraviolet–visible (UV–Vis) spectroscopy, nuclear magnetic resonance (NMR), and Fourier transform infra-red spectroscopy (FT-IR). Flocculants from M. oleifera and P. emblica achieved flocculation efficiency of 94.34 ± 3.55% and 90.04 ± 1.15% at 150 mg/L and 300 mg/L dosages, respectively. Significant reductions in chemical oxygen demand (76 and 73.2%), biological oxygen demand (72.4 and 70.1%), and total suspended solids (81.2 and 78.4%) were observed in WWTP influent with M. oleifera and P. emblica flocculant, respectively. Notably, this study also highlights the reduction in chloride ion concentrations by 58.3% (M. oleifera) and 55.7% (P. emblica). Kinetic models; pseudo-first-order, pseudo-second-order, and intra-particle diffusion were established for COD reduction. The results suggest plant-based natural anionic flocculants as a potential sustainable alternative to chemical coagulants for WWTP influent treatment.

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Cite This Study

Bisht et al. (2026) studied this question.

synapsesocial.com/papers/69dc88b93afacbeac03ea7b7https://doi.org/10.1007/s13201-025-02723-8
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