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Scanning Electron Microscopy (SEM) images of biochar before and after chromium adsorption. ( a ) Low-magnification SEM image showing the rough, porous surface morphology of pristine biochar. ( b ) Higher magnification image revealing fibrous structures and abundant adsorption sites. ( c ) SEM image of biochar post-Cr adsorption, with visible chromium deposits localized in porous regions (highlighted in yellow boxes). ( d ) SEM evidence of chromium accumulation on the biochar surface, with inset images showing Cr deposition within micropores

Journal: BMC Biotechnology

Article Title: Assessment of biochar filter application in improving chromium stress tolerance and plant physiology in Chinese cabbage ( Brassica rapa ) under a flow-through water setup

doi: 10.1186/s12896-025-01010-3

Figure Lengend Snippet: Scanning Electron Microscopy (SEM) images of biochar before and after chromium adsorption. ( a ) Low-magnification SEM image showing the rough, porous surface morphology of pristine biochar. ( b ) Higher magnification image revealing fibrous structures and abundant adsorption sites. ( c ) SEM image of biochar post-Cr adsorption, with visible chromium deposits localized in porous regions (highlighted in yellow boxes). ( d ) SEM evidence of chromium accumulation on the biochar surface, with inset images showing Cr deposition within micropores

Article Snippet: The surface morphology of the biochar was analyzed using scanning electron microscopy (SEM; Verios G4 UC, Thermo Fisher Scientific, Czech Republic), while elemental composition and spatial distribution were assessed through energy-dispersive spectrometry (EDS) on the same instrument.

Techniques: Electron Microscopy, Adsorption