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首页> 外文期刊>Asia-Pacific Journal of Science and Technology >Microbial decomposition of Longan leaf: II. screening of effective cellulolytic microorganisms and development of microbial product prototype for accelerating composting process
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Microbial decomposition of Longan leaf: II. screening of effective cellulolytic microorganisms and development of microbial product prototype for accelerating composting process

机译:龙眼叶片的微生物分解:II。用于加速堆肥过程的有效纤维素微生物和微生物产品原型的筛选

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Microorganisms are the main decomposer of cellulose, hemicellulose and lignin in composting process. In the present study, we screened bacteria, fungi and actinomycetes showing high cellulolytic activity from longan leaves cow dung (LC). The results showed that Comf3004 gave the highest clear zone ratio (3.5). Three isolates exhibited the highest Carboxymethyl (CM) case activity were bacterial isolate Comb3012 (0.596 U/mL), fungal isolate Comf6012 (0.875 U/mL) and actinomycetal isolate Comac9009 (0.525 U/mL). The LC was inoculated with the prototype of three selected microbial inoculants; LC Comb3012 (LCb), LC Comf6012 (LCf), LC Comac9009 (LCac) and the mixture of the three inocula (LCbfac). The LC plus sterile carrier (LCC) was also applied for comparison. Over 120 days, the maximum germination index (GI) value (95.13%) was recorded in LCf. The LCf and LCb compost exhibited a remarkably low organic matter (OM) content (23.0 and 26.3%, respectively). The results indicated that inoculation of microbial inoculants could effectively accelerate the decomposition of LC. The nutrient contents of all treatments with microbial inoculation were also higher than LC and LCC. The lowest cellulose and hemicellulose content were obtained with LCf (18.5 and 12.5%, respectively). Moreover, the lowest content of lignin was obtained with LCac (4.9%). All inoculated treatments exhibited higher degradation of cellulose, hemicellulose and lignin than the control and sterile carrier treatments. Fungal isolate Comf6012 performed the best in breaking down cellulose and hemicellulose fractions while actinomycetal isolate Comac9009 exhibited the highest lignin degradation. The results highlight the high possibility in the application of effective microbial inoculum for rapid composting process of longan leaves.
机译:微生物是纤维素,半纤维素和木质素的主要分解器在堆肥过程中。在本研究中,我们筛查了来自龙眼饲养牛粪(LC)的梭菌,真菌和放线菌,显示出龙眼叶片牛粪(LC)的纤维化活性。结果表明,COMF3004提供了最高透明区比(3.5)。三个分离株表现出最高的羧甲基(CM)壳体活性是细菌分离物COMP3012(0.596U / mL),真菌分离物COMF6012(0.875 U / mL)和放射腺癌分离物COMAC9009(0.525 U / mL)。用三种选定的微生物接种剂的原型接种LC; LC COMB3012(LCB),LC COMF6012(LCF),LC COMAC9009(LCAC)和三个接种物(LCBFAC)的混合物。 LC Plus无菌载体(LCC)也用于比较。 120天超过120天,在LCF中记录了最大的发芽指数(GI)值(95.13%)。 LCF和LCB堆肥显着低有机物(OM)含量(分别为23.0和26.3%)。结果表明,接种微生物孕育剂可以有效加速LC的分解。微生物接种的所有治疗的营养物质也高于LC和LCC。用LCF(分别为18.5和12.5%)获得最低纤维素和半纤维素含量。此外,用LCAC(4.9%)获得木质素的最低含量。所有接种的治疗方法都表现出更高的纤维素,半纤维素和木质素的降解,而不是对照和无菌载体处理。真菌分离物COMF6012在分解纤维素和半纤维素级分的情况下表现最佳,而放大缩醛分离物COMAC9009表现出最高的木质素降解。结果突出了在龙眼叶片快速堆肥过程中施加有效微生物接种的高可能性。

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