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Microbial consortium culture and vermi-composting technologies for recycling on-farm wastes and food production

机译:微生物联合体养殖和蠕虫堆肥技术,用于回收农场废物和食品生产

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摘要

PurposeudA study was conducted to characterize the ‘Madhyam culture’ (Excel Crop Care Limited.), an aerobic-composting microbial consortium culture, and understand composting dynamics, product quality and use in crop production vis-à-vis vermi-composting (using earthworms).ududMethodsud16S rDNA analysis was used to characterize aerobic-composting culture. Aerobic-composting and vermi-composting technologies were evaluated to decompose sorghum straw and dung biomass (80:20 ratio; primed with 0.5% urea and 4% rock phosphate) to study days to maturity and composting dynamics in terms of changes in temperature and microbial population. Compost quality was tested for macro-, micro-nutrients and C:N ratio, and evaluated for food production in on-farm trials.ududResultsud16S rDNA analysis screened sixteen bacterial isolates—eight related to genus Bacillus, three to each Halobacillus and Staphylococcus, one to each Microbacterium and Streptomyces. The population of bacteria was 4.5 cfu ml−1 at 10−7 dilution. Aerobic- and vermi-composts matured in around 50 and 60 days, respectively. Aerobic-composting throughout recorded relatively higher bacterial population, and higher temperatures during the initial phase. Aerobic-compost tested for high nutrient (1.55% N, 0.93% P, 1.00% K) content and stable C:N ratio (10.3) compared to vermi-compost (1.11% N, 0.43% P, 0.96% K and C:N ratio of 11.7). Field evaluation of both composts showed yield benefit and saving of chemical fertilizers up to 25%.ududConclusionsudAerobic-composting (using microbial consortium culture), like vermi-composting, proved to be an effective technology with advantage of no requirement to maintain ambient living conditions in lean periods as is required for earthworms in vermi-composting, but needs more energy/labor for biomass turnings.ududKeywords
机译:目的 ud进行了一项研究,以鉴定有氧堆肥微生物联合体培养物“ Madhyam文化”(Excel Crop Care Limited。)的特征,并了解堆肥动力学,产品质量以及作物在作物生产中的使用(相对于普通堆肥)。 ud udMethods ud16S rDNA分析用于表征有氧堆肥文化。对有氧堆肥和蠕虫堆肥技术进行了评估,以分解高粱秸秆和粪便生物量(比例为80:20;用0.5%尿素和4%磷酸岩作底料),以研究温度和微生物变化方面的成熟天数和堆肥动态人口。对堆肥的质量进行了宏观,微量营养元素和C:N比的测试,并在农场试验中评估了食物的生产。 ud udResults ud16S rDNA分析筛选了16种细菌分离株,其中8种与芽孢杆菌属有关,每种3种嗜盐葡萄球菌和葡萄球菌,每个属于微细菌和链霉菌。在10-7稀释下,细菌种群为4.5 cfu ml-1。有氧堆和ver堆堆分别在约50和60天内成熟。整个过程中有氧堆肥记录的细菌数量相对较高,并且在初始阶段温度较高。有氧堆肥测试了高营养素(1.55%N,0.93%P,1.00%K)含量和稳定的C:N比(10.3),而Vermi-堆肥(1.11%N,0.43%P,0.96%K和C: N比为11.7)。两种堆肥的田间评估均显示出增产效益并节省了高达25%的化肥。 ud ud结论 ud像ver堆肥一样,需氧堆肥(使用微生物联合培养)是一种有效的技术,其优点是不需要 ud ud关键字:在ver堆肥中保持earth所需的贫瘠时期的环境生活条件,但需要更多的能量/劳动力。

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