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Potential use of pulp and paper solid waste for the bio-production of fumaric acid through submerged and solid state fermentation

机译:纸浆和纸固体废物通过沉浸和固态发酵生物生产富马酸的潜在用途

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摘要

Pulp and paper solid waste (PPSW) originating from paper industry, was experimented for the production of fumaric acid (FA) through submerged and solid state fermentation by utilizing the filamentous fungus Rhizopus oryzae 1526. Physicochemical characterization, pH and moisture content analysis of PPSW was carried out. Pre-treatment of PPSW by size reduction resulted in particles of different size ranges (1.7 mm < x <= 335 mm, 850 mu m < x <= 1.7 mm, 300 mu m < x <= 850 gm, 75 mu m < x <= 300 mu m and 33 mu m < x <= 75 mu m). In submerged fermentation with all particle size ranges, a maximum of 23.47 +/- 0.70 g/L of FA was obtained with 33 mu m < x <= 75 gm under the fermentation conditions of 30 degrees C, 200 rpm, 5% pre-cultured inoculum (v/v) and at 48 h. Viscosity measurement and analysis of by-product of the fermented broths were performed. Microwave-phosphoric acid mediated hydrolysis of 33 mu m < x <= 75 gm particle size produced hydrolysate with maximum glucose (11.2 +/- 0.8 g/L) and xylose (20.22 +/- 0.85 g/L) contents. Submerged fermentation with this hydrolysate confirmed the utilization of xylose for both FA production and fungal growth. Solid state fermentation with 75 mu m < x <= 300 mu m particle size resulted in highest FA production (41.45 g/kg dry weight) after 21 days. Scanning electron microscopy revealed the morphological features of the fungus grown on the particles. The results of the present study confirmed the utilization of PPSW as a source of carbon and trace elements by the fungus oryzae 1526 and also the bioconversion into FA during fermentation. FA being a high value platform chemical, its bioproduction from the low cost PPSW, is a value addition approach. (C) 2015 Elsevier Ltd. All rights reserved.
机译:利用丝状真菌米根霉(Rhizopus oryzae)1526,通过浸没和固态发酵,对源自造纸工业的纸浆和纸固体废物(PPSW)进行了富马酸(FA)生产的实验。PPSW的理化特性,pH和水分含量分析为执行。通过减小尺寸对PPSW进行预处理可得到不同尺寸范围的颗粒(1.7 mm

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