Alternative for increasing enzymatic activity and sugar release in organic solid waste during aerobic degradation process

Q4 Biochemistry, Genetics and Molecular Biology Mexican Journal of Biotechnology Pub Date : 2024-01-05 DOI:10.29267/mxjb.2024.9.1.1
Castillo-Minjarez J.M., Vargas-León E.A., Quezada M., Martínez-Valdez F. J.
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Abstract

The impact of inoculum (mature compost) was assessed in an aerobic system for the rapid degradation of organic solid waste, with a focus on the release of reducing sugars. Isothermal (35 and 55 °C) and non-isothermal (35-55 °C) treatments were conducted. Key indicators, including the rate of oxygen consumption (O2) and carbon dioxide production (CO2), were measured to assess microbial activity. Additionally, the concentration of reducing sugars, pH, enzymatic activity, and the presence of pathogens were evaluated. Treatments with inoculum at 35 °C and without inoculum at 55 °C exhibited an increase in oxygen consumption and CO2 production, indicating heightened microbial activity and, consequently, greater mineralization of organic matter. The treatment without inoculum at 35-55 °C presented the highest concentration of reducing sugars (160 mg/g dry weight), suggesting its potential as a pretreatment for bioconversion processes aimed at generating value-added products. At a temperature of 55 °C, there was a reduction of 84.4, 87.28, and 67.33 % in the concentrations of fecal coliforms, Escherichia coli, and parasites, respectively. This result suggests that elevated temperature contributes to the effectiveness of pathogen elimination.
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在有氧降解过程中提高有机固体废物中酶的活性和糖分释放的替代方法
在有氧系统中评估了接种物(成熟堆肥)对快速降解有机固体废物的影响,重点是还原糖的释放。进行了等温(35 和 55 °C)和非等温(35-55 °C)处理。测量了主要指标,包括氧气消耗率(O2)和二氧化碳产生率(CO2),以评估微生物活性。此外,还评估了还原糖的浓度、pH 值、酶活性和病原体的存在。在 35 °C和 55 °C条件下分别接种了接种物和未接种接种物的处理显示耗氧量和二氧化碳产生量增加,这表明微生物活动增强,从而使有机物矿化程度提高。在 35-55 °C温度下不添加接种物的处理过程中,还原糖的浓度最高(160 毫克/克干重),这表明它有潜力作为生物转化过程的预处理,以产生高附加值产品。温度为 55 ℃ 时,粪大肠菌群、大肠杆菌和寄生虫的浓度分别降低了 84.4%、87.28% 和 67.33%。这一结果表明,温度升高有助于有效消除病原体。
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来源期刊
Mexican Journal of Biotechnology
Mexican Journal of Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.30
自引率
0.00%
发文量
12
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