Rodrigo Almeida de Lima, Juliano Backes Scherer, Bruna Willig Kopplin, Rafael Franco Pires, Daniel Joner Daroit
Waste radiographic films are hazardous materials, and methods for recycling the silver contained therein raise environmental concerns. Concurrently, slaughterhouse by-products remain underutilized, causing ecological impacts upon inadequate disposal. Therefore, a crude protease from Bacillus pumilus CL33A was evaluated for recovering silver from X-ray films and generating bioactive hydrolysates from slaughterhouse by-products. Protease was obtained via a 4-day submerged fermentation using chicken viscera meal (VM) as non-conventional substrate, and culture supernatants also showed enhanced antioxidant activities. The crude protease (0-80% dilutions) stripped the gelatin-silver emulsion from X-ray films in 4.3-9.4 min (55 °C), while chemical removal took 8.7 min. Enzyme preparations remained effective for three removal cycles (6.4-12.5 min), and biostripped silver formed colloidal suspensions. Furthermore, the crude protease hydrolyzed porcine liver, kidneys, lungs, spleen, VM, and blood meal (4 h; 55 °C), significantly increasing radical-scavenging (1.3- to 4.2-fold), Fe2+-chelating (1.2- to 1.5-fold), and reducing power (1.4- to 4.9-fold) abilities compared to non-hydrolyzed controls. Time-course monitoring demonstrated that a 3-h hydrolysis period sufficed to obtain VM hydrolysates with maximal antioxidant activities. Thus, bacterial processing of a low-cost biomass yields a multi-purpose protease (and antioxidants as co-products), whose applications offer cleaner, sustainable opportunities to advance bio-based frameworks for material and nutrient recycling.