Passalacqua Elena, Correcher Rubén, Mantovani Marco, Collina Elena, Fullana Andrés
Department of Earth and Environmental Sciences (DISAT), Università degli Studi di Milano - Bicocca, Milano, Italy.
Department of Chemical Engineering, Universidad de Alicante, San Vicente del Raspeig, Alicante, Spain.
Waste Manag Res. 2025 May;43(5):684-696. doi: 10.1177/0734242X241273800. Epub 2024 Sep 15.
This study evaluates the use of carbon-encapsulated zero-valent iron nanoparticles for biogas upgrading in wet systems. The nanoparticles were produced by hydrothermal carbonization, using olive mill waste (OMW) or microalgae as carbon sources. The solids were characterized to investigate the specific surface area, total and zero-valent iron content, pH and chemical and crystalline composition. Their adsorption performance towards hydrogen sulphide (HS) was tested by treating two types of synthetic biogas with and without CO. In both cases, the starting HS concentration was approximately 60 ppm and the experiments lasted until the complete saturation of the nanoparticles. Optimal Fe/C ratios of 0.05 for OMW nanoparticles and 0.2 for microalgae nanoparticles demonstrated HS-specific adsorption capacities of 9.66 and 9.55 , respectively, in a synthetic biogas without CO. The addition of CO in biogas reduced adsorption, possibly due to system acidification. X-ray photoelectron spectroscopy analysis revealed surface compounds on the surface of the spent nanoparticles, including disulphides, polysulphides and sulphate. The saturated adsorbents were effectively regenerated with air, leading to the oxidation of sulphur species and desorption. The regeneration allowed a total adsorption capacity of 53.25 and 34.14 , after 10 consecutive cycles of adsorption/regeneration with a single batch of olive mill and microalgae nanoparticles, respectively.
本研究评估了碳包覆零价铁纳米颗粒在湿式系统中用于沼气升级的情况。这些纳米颗粒是通过水热碳化法制备的,使用橄榄渣(OMW)或微藻作为碳源。对固体进行了表征,以研究比表面积、总铁和零价铁含量、pH值以及化学和晶体组成。通过处理两种含CO和不含CO的合成沼气来测试它们对硫化氢(HS)的吸附性能。在这两种情况下,起始HS浓度约为60 ppm,实验持续到纳米颗粒完全饱和。对于OMW纳米颗粒,最佳Fe/C比为0.05;对于微藻纳米颗粒,最佳Fe/C比为0.2。在不含CO的合成沼气中,它们对HS的特定吸附容量分别为9.66和9.55。沼气中添加CO会降低吸附,这可能是由于系统酸化所致。X射线光电子能谱分析揭示了用过的纳米颗粒表面的化合物,包括二硫化物、多硫化物和硫酸盐。饱和吸附剂通过空气有效地再生,导致硫物种氧化和解吸。在用一批橄榄渣和微藻纳米颗粒分别进行10次连续吸附/再生循环后,再生后的总吸附容量分别为53.25和34.14。