Abstract

In the Mediterranean basin, the treatment and disposal of olive mill pomace (OMP) remain a salient environmental issue for the olive oil-producing industry. This study assesses the effects of olive-processing technology (three-phase and two-phase systems) on the potential use of OMP as a soil amendment. Samples from 12 Croatian olive mills were analyzed for their total phenolic content (TPC), residual oil fraction, and elemental concentration. The samples were profiled using Fourier transform infrared spectroscopy (FT-IR) and structurally characterized using scanning electron microscopy-energy-dispersive X-ray spectroscopy (EDS). Compared to three-phase samples, two-phase OMP was more acidic (pH 4.5vs. 5.0), with a higher TPC (3835vs. 1576mg/kg fresh weight), oil content (11.7%vs. 7.5% d.w., where d.w. is dry weight), electrical conductivity (EC, 5.1vs. 3.0 mS/cm), and levels of calcium (Ca, 1.34vs. 1.20g/kg d.w.) and copper (Cu, 10.4vs. 7.0mg/kg d.w.). Similar values of carbon/nitrogen (C/N; 61vs. 72), N (10vs. 8.1g/kg d.w.), phosphorus (1040vs. 691mg/kg d.w.), and potassium (K, 13.7vs. 8.1g/kg d.w.) were observed. The amounts of chromium, copper, nickel, and zinc were below EC limits in both cases. The EDS mapping revealed that Ca was concentrated at sharp-edged OMP particles while K was evenly distributed, suggesting that pelletized OMP compost is preferable for amending soil to obtain a homogeneous distribution of nutrients. It was also possible to distinguish between OMPs based on oil and lignin absorption bands in their FT-IR spectra. According to the obtained results, composting is recommended for both types of OMP to produce a safe product for amendment purposes.

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