Kumar Vinod, Kumar Pankaj, Singh Jogendra, Kumar Piyush
Agro-Ecology and Pollution Research Laboratory, Department of Zoology and Environmental Science, Gurukula Kangri (Deemed To Be University), Haridwar, 249404 Uttarakhand India.
3 Biotech. 2021 Apr;11(4):164. doi: 10.1007/s13205-021-02712-z. Epub 2021 Mar 10.
This study investigated the yield and biochemical potential of mushroom cultivated on agricultural waste substrate supplemented with treated sugar industry effluent (SIE). Laboratory-scale experiments were performed for the cultivation of on a mixture of wheat straw and sugar cane bagasse moistened with different doses of borewell water (BWW) and treated SIE (0-100%). Besides this, the simultaneous effects of the SIE amendment on total Kjeldahl's nitrogen (TKN) and total phosphorus (TP) contents of substrate and kinetics of their utilization by were studied. Results showed a relatively higher utilization of TKN (38.10 ± 1.60%) and TP (47.4 ± 6.44%) in a 25:75 ratio of BWW and SIE, respectively. The kinetics studies of TKN and TP utilization using Lineweaver-Burk models described the maximum specific utilization rates ( ) of 0.165 and 0.125 mg·kg·d and saturation points ( ) of 72.401 and 33.283 mg·kg, respectively, which are in good agreement as indicated by values (> 0.90). In addition, the maximum significant ( < 0.01) yield (159.31 ± 8.85 g·Kg), biological efficiency (106.21 ± 3.84%), total phenols (3.03 ± 0.07 mg·g), ascorbic acid (0.44 ± 0.03 mg·g), and β-carotene (3.36 ± 0.05 μg·g) of were observed using the same treatment. Therefore, this paper reported sustainable utilization of TKN and TP nutrients from SIE for mushroom cultivation.
本研究调查了在添加经处理的制糖工业废水(SIE)的农业废弃物基质上栽培蘑菇的产量和生化潜力。进行了实验室规模的实验,在小麦秸秆和甘蔗渣的混合物上栽培蘑菇,该混合物用不同剂量的井水(BWW)和经处理的SIE(0 - 100%)润湿。此外,研究了SIE添加对基质总凯氏氮(TKN)和总磷(TP)含量的同时影响以及蘑菇对它们的利用动力学。结果表明,在BWW和SIE比例为25:75时,蘑菇对TKN(38.10 ± 1.60%)和TP(47.4 ± 6.44%)的利用率相对较高。使用Lineweaver - Burk模型对TKN和TP利用的动力学研究表明,最大比利用率( )分别为0.165和0.125 mg·kg·d,饱和点( )分别为72.401和33.283 mg·kg, 值(> 0.90)表明二者吻合良好。此外,使用相同处理时,观察到蘑菇的最大显著产量(< 0.01)(159.31 ± 8.85 g·Kg)、生物学效率(106.21 ± 3.84%)、总酚(3.03 ± 0.07 mg·g)、抗坏血酸(0.44 ± 0.03 mg·g)和β - 胡萝卜素(3.36 ± 0.05 μg·g)。因此,本文报道了制糖工业废水中TKN和TP养分在蘑菇栽培中的可持续利用。