Effectively Recycling Swine Wastewater by Coagulation–Flocculation of Nonionic Polyacrylamide
Эффективная переработка свиных сточных вод методом коагуляции–флокуляции с использованием неионогенного полиакриламида
2022-02-02
SCID: 54.1/45cuup5s
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coagulation–flocculationnon-ionic polyacrylamidepH 11 optimizationremoval rates (Cu, Zn, NH4+–N, TP, TN)swine wastewater
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Abstract (AI)
Recycling swine wastewater is an environmental and economic issue for promoting the sustainable development of the pig industry worldwide. The application of a flocculant, non-ionic polyacrylamide (NPAM) for treating the contaminants in wastewater was trialed in this study. Firstly, the optimal pH value for the coagulation–flocculation of NPAM was adjusted by hydrochloric acid and sodium hydroxide. The viscosity of the flocculant solution was examined by a rotational viscometer and the morphology of the flocculant on the glass surface was examined by an optical microscope and an atomic force microscope. The result showed that a pH value of 11 or more was best for NPAM coagulation–flocculation. Subsequently, the swine wastewater from the anoxic reactor of a three-stage manure treatment system was adjusted by a pH adjuster, calcium hydroxide, followed by the coagulation–flocculation of NPAM. The quality of the final, treated water was examined by a regular wastewater analysis. The results showed that the removal rates for copper ions, zinc ions, NH4+–N, total phosphate (TP), and total nitrogen (TN) were 96.3%, 97.8%, 99.2%, 94.9%, and 99.1%, respectively. Our study concluded that this water recycling method combining the existing organic fertilizer production and power generation enhanced the recycling strategy for swine wastewater treatment and could further the sustainable development of the pig industry.
Key Findings
1
Applying calcium hydroxide to adjust pH followed by NPAM coagulation–flocculation achieved removal rates of 96.3% Cu, 97.8% Zn, 99.2% NH4+–N, 94.9% total phosphate, and 99.1% total nitrogen.
2
Combining NPAM treatment with existing organic fertilizer production and power generation can enhance swine wastewater recycling and support sustainable pig industry development.
3
Non‑ionic polyacrylamide (NPAM) was trialed as an effective flocculant for treating contaminants in swine wastewater.
4
Optimal coagulation–flocculation performance of NPAM occurred at pH 11 or higher.
5
Viscosity and surface morphology of NPAM were characterized using rotational viscometry, optical microscopy, and atomic force microscopy to inform treatment conditions.
Research Object
Swine wastewater treated by coagulation–flocculation with non-ionic polyacrylamide (NPAM)
Research Subject
Effectiveness of NPAM coagulation–flocculation (including optimal pH, flocculant viscosity and morphology, and removal efficiencies of Cu2+, Zn2+, NH4+–N, TP, and TN) for recycling swine wastewater
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2022-02-02
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