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Kinetic Studies on Delignification and Heavy Metals Uptake by Shiitake (Lentinula edodes) Mushroom Cultivated on Agro-Industrial Wastes (CROSBI ID 308359)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Kumar, Pankaj ; Eid, Ebrahem ; Al-Huqail, Arwa ; Širić, Ivan ; Adelodun, Bashir ; Fayssal, Sami ; Valadez-Blanco, Rogelio ; Goala, Madhumita ; Ajibade, Fidelis ; Sook, Kyung et al. Kinetic Studies on Delignification and Heavy Metals Uptake by Shiitake (Lentinula edodes) Mushroom Cultivated on Agro-Industrial Wastes // Horticulturae, 8 (2022), 4; 316, 16. doi: 10.3390/horticulturae8040316

Podaci o odgovornosti

Kumar, Pankaj ; Eid, Ebrahem ; Al-Huqail, Arwa ; Širić, Ivan ; Adelodun, Bashir ; Fayssal, Sami ; Valadez-Blanco, Rogelio ; Goala, Madhumita ; Ajibade, Fidelis ; Sook, Kyung ; Kumar, Vinod

engleski

Kinetic Studies on Delignification and Heavy Metals Uptake by Shiitake (Lentinula edodes) Mushroom Cultivated on Agro-Industrial Wastes

This study investigates the sustainable production of Shiitake (Lentinula edodes) mushroom using agro-industrial wastes. The substrate of Shiitake (80% rice straw + 20% sugar cane bagasse) was moistened with 0 (freshwater as control), 50, and 100% concentrations of secondarily treated dairy plant and sugar mill wastewaters (DPWand SMW). After proper sterilization, the cultivation was carried out under controlled environmental conditions using the bag log method for 100 days. The results revealed that DPWand SMWmoistening significantly (p < 0.05) increased the nutrient levels of the formulated substrate which later gave better mushroom yield. The highest Shiitake mycelial coverage (90.70  1.47 and 88.65  1.82%), yield (186.00  3.10 and 176.09  4.12 g/kg fresh substrate), biological efficiency (80.00  0.58 and 75.73  0.93%), total phenol (2.84  0.03 and 2.69  0.03 mg/g), ascorbic acid (0.34  0.03 and 0.32  0.02 mg/g), and -carotene (2.48  0.06 and 2.29  0.02 g/g) contents with the minimum time taken for spawn running (60  1 days) was observed using a 50% concentration treatment of both DPWand SMW, respectively. Besides this, the kinetic studies using a first-order-based model showed acceptable accuracy in predicting the rate constant for substrate delignification and heavy metal uptake by Shiitake mushroom. These findings suggest a novel approach for sustainable mushroom cultivation using agro-industrial wastes. The concept can be used for the production of high-quality mushrooms for edible and medicinal purposes while contributing toward the United Nations’ Sustainable Development Goals (SDGs 12) on responsible consumption and production of superfoods.

kinetic modeling ; mushroom cultivation ; sustainable horticulture ; waste conversion ; wastewater management

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Podaci o izdanju

8 (4)

2022.

316

16

objavljeno

2311-7524

10.3390/horticulturae8040316

Povezanost rada

Poljoprivreda (agronomija)

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