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好氧和部分厌氧条件下生物强化堆肥处理麻风树脱油饼和蔬菜废物。

Bioaugmented composting of Jatropha de-oiled cake and vegetable waste under aerobic and partial anaerobic conditions.

机构信息

Department of Chemistry, Indian Institute of Technology, New Delhi, India.

出版信息

J Basic Microbiol. 2013 Apr;53(4):327-35. doi: 10.1002/jobm.201100634. Epub 2012 Jun 26.

Abstract

This study was conducted to assess the effect of microbial inoculation in Jatropha cake composting with different vegetable waste. The microbial inoculums composed of fungal strains (Aspergillus awamori, Aspergillus nidulans, Trichoderma viride, Phanerochaete chrysosporium) and bacterial inoculums (Pseudomonas striata as phosphorus solublizer and Azotobacter chroococcum as nitrogen fixer) were added to the compost mixture after the thermophilic phase was over for bioaugmenting of Jatropha cake under aerobic and partial anaerobic conditions. Addition of both fungal and bacterial inoculum with mixed substrate (Jatropha cake + vegetable waste) during composting (aerobic and partial anaerobic) showed, better results as compared to compost with only fungal inoculants. Increased enzymatic activity initially, during composting (like dehydrogenase, alkaline phosphatase activity and FDA) proved role of inoculated microbes in rapid decomposition. Analysis of compost (with both bacterial and fungal inoculum) showed presence of high humus (12.7%), humic acid (0.5%), fulvic acid (5.68%), soluble protein content and low C/N ratio. Decreased in concentration of extractable metals (Cu, Fe and Mn) were recorded at maturity in all the substrate composts. The C/N ratio was significantly correlated to parameters like humic acid, humus, fulvic acid, protein and also microbial activity parameters. We conclude that the composting of de-oiled Jatropha cake with different vegetables waste could be feasible and sustainable approach in recycling of agricultural and industrial residues in huge quantities.

摘要

本研究旨在评估在不同蔬菜废物中添加微生物接种剂对麻疯树饼堆肥的影响。在高温期结束后,将由真菌菌株(aspergillus awamori、aspergillus nidulans、trichoderma viride、phanerochaete chrysosporium)和细菌接种剂(作为磷溶解剂的 pseudomonas striata 和作为固氮菌的 azotobacter chroococcum)组成的微生物接种剂添加到堆肥混合物中,以在有氧和部分厌氧条件下对麻疯树饼进行生物增强。与仅添加真菌接种剂的堆肥相比,在堆肥(有氧和部分厌氧)过程中添加真菌和细菌接种剂与混合基质(麻疯树饼+蔬菜废物)的效果更好。堆肥过程中(如脱氢酶、碱性磷酸酶活性和 FDA)初始酶活性增加,证明接种微生物在快速分解中的作用。对堆肥(添加细菌和真菌接种剂)的分析表明,腐殖质(12.7%)、腐殖酸(0.5%)、富里酸(5.68%)、可溶性蛋白质含量和低 C/N 比含量高。在所有基质堆肥中,成熟时可提取金属(Cu、Fe 和 Mn)的浓度降低。C/N 比与腐殖酸、腐殖质、富里酸、蛋白质等参数以及微生物活性参数显著相关。我们得出结论,用不同蔬菜废物堆肥脱油麻疯树饼是一种可行和可持续的方法,可以大量回收农业和工业废物。

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