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首页> 外文期刊>The Journal of General and Applied Microbiology >Seasonal microbial community dynamics in a flowerpot-using personal composting system for disposal of household biowaste
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Seasonal microbial community dynamics in a flowerpot-using personal composting system for disposal of household biowaste

机译:花盆中使用个人堆肥系统处理家庭生物废物的季节性微生物群落动态

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Microbial community dynamics in a flowerpot-using solid biowaste composting (FUSBIC) process were monitored seasonally by quinone profiling and conventional microbiological methods. The FUSBIC system, which consisted of three flowerpots (14L or 20L capacity) with 5-6 kg each of a soil-compost mixture (SCM) as the primary reactors, was loaded daily with household biowaste from November 1998 to October 1999. The monthly average waste reduction rate was 88.2% for the 14-L system and 92.5% for the 20-L system on a wet weight basis.The direct total microbial count detected in the 14-L primary reactors ranged from 4.5 to 9.6×10~(11) cells. g~(-1) of dry wt of SCM, and the viable count of aerobic heterotrophic bacteria recovered on agar plates at 28deg C varied from 1.9 fto 5.7×10~(11) CFU.g~(-1) of dry wt. The quinone content of SCM samples from the 14-L and 20-L systems ranged from 160 to 353 nmol.g~(-1) of dry SCM. Ubiquinones, unsaturated menaquinones, a nd partially saturated menaquinones constituted 15.0-36.4, 14.8-22.0, and 41.8-61.6 mol% of the total content, respectively. THe major quinone types detected were usually MK-8(H_2), MK-9(H_2), and Q-10. Variations in quinone profiles were evaluated numerically by using two parameters, the dissimilarity index (D) and microbial divergence index (MD_q). The upper limit of seasonal changes in the microibal community structure was about 30% as expressed by D values. The MD_q values calculated ranged from 18 to 22. A significant positive correlation was found between seasonal temperature and bacterial populations containing partially saturated menaquinones. These results indicated that the FUSBIC system contained highly diverse microbial populations that fluctuated to some extent depending on seasonal temperature. Members of the Actinobacteria were suggested to be the major constituents of the total population present.
机译:通过醌分析和常规微生物学方法,季节性监测花盆使用固体生物废物堆肥(FUSBIC)过程中的微生物群落动态。 FUSBIC系统由三个花盆(14L或20L容量)组成,每个土壤垃圾混合物(SCM)为5-6 kg,作为主要反应器,从1998年11月至1999年10月,每天对其进行装载。以湿重计,14升系统的平均废物减少率为88.2%,20升系统的平均废物减少率为92.5%。在14升一级反应器中检测到的直接总微生物数为4.5至9.6×10〜( 11)细胞。 SCM的干重g〜(-1)和在28°C琼脂平板上回收的好氧异养细菌的活菌数在1.9 f至5.7×10〜(11)CFU之间变化。 14-L和20-L系统的SCM样品中醌的含量为干SCM的160-353 nmol.g〜(-1)。泛醌,不饱和甲萘醌和部分饱和甲萘醌分别占总含量的15.0-36.4、14.8-22.0和41.8-61.6 mol%。检测到的主要醌类型通常为MK-8(H_2),MK-9(H_2)和Q-10。通过使用两个参数,相异指数(D)和微生物散布指数(MD_q),对醌轮廓的变化进行了数值评估。如D值所示,小ib群落结构的季节性变化的上限约为30%。计算得出的MD_q值范围为18至22。在季节性温度与含有部分饱和甲萘醌的细菌种群之间发现显着正相关。这些结果表明,FUSBIC系统包含高度多样化的微生物种群,这些种群在一定程度上根据季节温度而波动。放线菌的成员被认为是目前总人口的主要组成部分。

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