Comparing the leaching behavior of phosphorus, aluminum and iron from post-precipitated tertiary sludge and anaerobically digested sewage sludge aiming at phosphorus recovery

Phosphorus (P) is a key nutrient for agriculture and global food security, but the remaining phosphate rock reserves are finite and contain increasing toxic impurities. Thus, phosphorus recovery from secondary waste sources, such as sewage sludge, became a strategic goal for the European Union to re...

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Published in:Journal of cleaner production Vol. 247; p. 119129
Main Authors: Monea, Marlena Cristina, Löhr, Dirk Karsten, Meyer, Carsten, Preyl, Volker, Xiao, Jingsi, Steinmetz, Heidrun, Schönberger, Harald, Drenkova-Tuhtan, Asya
Format: Journal Article
Language:English
Published: Elsevier Ltd 20-02-2020
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Summary:Phosphorus (P) is a key nutrient for agriculture and global food security, but the remaining phosphate rock reserves are finite and contain increasing toxic impurities. Thus, phosphorus recovery from secondary waste sources, such as sewage sludge, became a strategic goal for the European Union to reduce its import dependency and stimulate circular economy. Previous studies focused on phosphorus recovery predominantly from primary, activated and anaerobically digested sludge but not from post-precipitated (tertiary) chemical sludge. In this research, leaching tests were performed with aluminum and iron containing tertiary sludge from two different wastewater treatment plants. The feasibility to re-dissolve the phosphorus bound into the sludges was investigated systematically by applying acidic or alkaline treatment. The shift in pH causes the dissolution of phosphorus which makes it readily available for further recovery as a high-value fertilizer product. For the aluminum containing sludge, the phosphorus re-dissolution efficiency after acidic leaching was ∼95% at pH 2.0. For the iron containing sludge, ∼80% efficiency was achieved only after significant acidification to pH 1.5. Alkaline leaching at pH 13 showed considerably lower potential with ∼70% phosphorus re-dissolution for the aluminum containing and ∼40% for the iron containing tertiary sludge. Additionally, the co-dissolution of the associated aluminum and iron metals was also analyzed and all experimental results were compared against data obtained from the leaching of anaerobically digested sewage sludge and synthetically precipitated sludge. In conclusion, the optimal pH for phosphorus dissolution depended strongly on the type of metal-phosphate compounds in the sludge. [Display omitted] •Sludge composition influences greatly the leaching behavior and chemical consumption.•Acidic pH is better for solubilization of tertiary and digested sludge (with chemical P-removal).•For Fe-containing tertiary sludge, P-leaching efficiency of ∼80% was achieved at pH 1.5•For Al-containing tertiary sludge, P-leaching efficiency>80% was achieved at pH 3.0•Anaerobically digested sludge contains mainly Fe(II) and tertiary sludge Fe(III) phosphates.
ISSN:0959-6526
1879-1786
DOI:10.1016/j.jclepro.2019.119129