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首页> 外文期刊>Annals of Agricultural Science >Biotechnological Application of Thermotolerant Cellulose-Decomposing Bacteria in Composting of Rice Straw
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Biotechnological Application of Thermotolerant Cellulose-Decomposing Bacteria in Composting of Rice Straw

机译:耐热纤维素分解菌在稻草堆肥中的生物技术应用

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摘要

The main objective of this study is to investigate the potentiality of cellulase producing isolates, Bacillus licheniformis 1-1v and Bacillus sonorensis 7-1v, as microbial additives on composting of rice straw materials. Different pyramid shape piles were constructed, and each contained 80 kg of rice straw and 288 kg of cattle manure, with/without 5 kg of feldspar supplementation (0.75%, w/w ). C / N ratio was adjusted to 35.8 before microbial inoculation. The piles were inoculated with either single strain or mixed cultures. The physical, chemical and biological parameters indicating the decomposition of organic material, maturation and quality of the compost product were investigated during the composting process. A rapid increase in compost temperature was obtained in inoculated piles. Moreover, piles containing mixed inoculants exhibited longer time at high temperatures 55 °C for 15 consecutive days compared to control treatments that lasted for only 5 consecutive days. The microbial inoculation had greatly reduced the composting time by 40–43% (from 89–96 days to 51–58 days). Additionally, it resulted in a higher decrease in the total organic carbon and carbon-to-nitrogen ratio, as well as increase in compost quality by an increase in total nitrogen, phosphorus, and potassium content. The analysis of moisture content, bulk density, pH value, electrical conductivity, phytotoxicity, and pathogenic bacterial content of the final compost products exhibited maturation and good quality of final product to be used without any limitations.
机译:这项研究的主要目的是研究产生纤维素酶的分离株,地衣芽孢杆菌1-1v和sonorensis 7-1v,作为微生物添加剂在稻草堆肥中的潜力。建造了不同的金字塔形桩,每个桩包含80公斤稻草和288公斤牛粪,有/没有5千克长石的补充(0.75%,w / w)。接种微生物前,将C / N比调整为35.8。用单一菌株或混合培养物接种该堆。在堆肥过程中,研究了指示有机材料分解,成熟度和堆肥产品质量的物理,化学和生物学参数。堆肥后堆肥温度迅速升高。此外,与仅持续5天的对照处理相比,包含混合接种剂的堆在> 55°C的高温下连续15天显示出更长的时间。微生物接种使堆肥时间大大减少了40-43%(从89-96天减少到51-58天)。另外,由于总氮,磷和钾含量的增加,导致总有机碳和碳氮比的降低更大,以及堆肥质量提高。对最终堆肥产品的水分含量,堆积密度,pH值,电导率,植物毒性和致病细菌含量的分析显示出成熟度和所用最终产品的优良品质,而没有任何限制。

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