1 Department of Chemistry, Faculty of Science, Menoufia University, Shebin El-Kom, Egypt.
2 Department of Analytical Chemistry, Faculty of pharmacy, Tobruk University, Libya.
3 Department of Chemistry, Faculty of Science, Alasmarya Islamic University, Libya.
4 Medical Laboratories Division, High Technology Institute of Applied Health Sciences, Badr Academy, Badr City Egypt.
International Journal of Science and Research Archive, 2026, 20(01), 792–804
Article DOI: 10.30574/ijsra.2026.20.1.1506
Received on 15 June 2026; revised on 21 July 2026; accepted on 24 July 2026
Untreated sewage poses severe threats to ecosystems, public health, and economies, particularly in developing nations where treatment facilities often fail due to poor maintenance. Concurrently, rising natural gas prices have escalated chemical fertilizer costs. This study evaluates an eco-friendly biological and chemical sewage sludge treatment using a modified Down-flow Hanging Sponge (DHS) reactor with organic additives at hydraulic retention times of 3 and 6 hours. The modified DHS system demonstrated high removal efficiency for organic pollutants, suspended solids (COD, BOD, TSS, VSS), oil/grease, nitrogenous compounds (NH3, NO3−), total coliforms, and toxic heavy metals (Pb,Ni,Cu,Zn,Cr,Cd,Fe). Agricultural trials on radish plants (Raphanus sativus) under identical cultivation conditions revealed significantly lower heavy metal accumulation in plants fertilized with DHS-treated sludge compared to untreated sludge. These findings confirm that modified DHS reactors offer an effective, sustainable, and cost-efficient solution to treat sewage sludge while producing a safe, nitrogen-rich alternative to synthetic fertilizers.
Wastewater treatment; Down-flow Hanging Sponge (DHS) reactor; Sewage sludge; Heavy metal removal; Biofertilizers
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Abdou S. El-Tabl, Sameh Z. Mohamed, Abdullah A.A. Alhalib, Shaimaa M. Faheem and Ahmed M. Ashour. Utilizing a modified down-flow sponge reactor for the treatment of industrial sewage sludge, offering a solution to the fertilizer crisis through agricultural applications. International Journal of Science and Research Archive, 2026, 20(01), 792–804. Article DOI: https://doi.org/10.30574/ijsra.2026.20.1.1506.






