Experimental Investigations on the Effect of Pretreatment in Anaerobic Digestion of Coir Pith Agro Waste

Smitha Warrier, P. Sindhu
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Abstract

The coir industry in India’s southern coastal regions, especially in the state of Kerala, is becoming increasingly concerned about the environmental impact of the accumulation and incremental increase of coir pith each year. The objective of this study was to assess the effect of pretreatment on the anaerobic digestion of coir pith. The characterization study of coir pith shows high organic content, which can be anaerobically digested to produce biogas. But, the high lignin content (30.91%) makes the process slow. To overcome this, a biological pretreatment method was tried using two microbial cultures belonging to fungal genera known to be lignin decomposers, viz., Trichoderma and Pleurotus. By using Trichoderma, lignin content was reduced by 3.7%, and the maximum gas production was obtained in a shorter time (19 days) in comparison with the sample without any pretreatment (24 days). When Pleurotus was used for lignin degradation, the lignin content was reduced by 6.78%, and the maximum gas production was obtained in a much shorter time period (14 days) in comparison with the former two methods. The gas produced comprises 74 ppm of methane, which has fuel value. The sludge after digestion was tested, which indicated a marginal increase in NPK value and hence can be used as fertilizer. The results of the study appear to be quite promising in the transition towards green energy by providing scope for the process of biomethanation, with the conclusion that further research can transform coir pith into a good renewable energy resource.
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关于预处理对厌氧消化椰壳髓农业废弃物的影响的实验研究
印度南部沿海地区,尤其是喀拉拉邦的椰壳纤维业越来越关注椰壳纤维髓的积累和逐年增加对环境的影响。本研究的目的是评估预处理对椰壳纤维厌氧消化的影响。对椰壳髓的特性研究表明,椰壳髓的有机物含量很高,可以通过厌氧消化产生沼气。但是,高木质素含量(30.91%)使消化过程变得缓慢。为了克服这一问题,我们尝试了一种生物预处理方法,使用了两种属于已知可分解木质素的真菌属的微生物培养物,即毛霉和褶菌。与未经任何预处理的样品(24 天)相比,使用毛霉可使木质素含量降低 3.7%,并在更短的时间(19 天)内获得最大产气量。使用 Pleurotus 降解木质素时,木质素含量减少了 6.78%,与前两种方法相比,在更短的时间内(14 天)就能获得最大产气量。产生的气体包括 74 ppm 的甲烷,具有燃料价值。对消化后的污泥进行了检测,结果表明其氮磷钾价值略有增加,因此可用作肥料。这项研究的结果为生物甲烷化过程提供了空间,在向绿色能源过渡方面似乎大有可为。
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来源期刊
Nature Environment and Pollution Technology
Nature Environment and Pollution Technology Environmental Science-Environmental Science (all)
CiteScore
1.20
自引率
0.00%
发文量
159
审稿时长
36 weeks
期刊介绍: The journal was established initially by the name of Journal of Environment and Pollution in 1994, whose name was later changed to Nature Environment and Pollution Technology in the year 2002. It has now become an open access online journal from the year 2017 with ISSN: 2395-3454 (Online). The journal was established especially to promote the cause for environment and to cater the need for rapid dissemination of the vast scientific and technological data generated in this field. It is a part of many reputed international indexing and abstracting agencies. The Journal has evoked a highly encouraging response among the researchers, scientists and technocrats. It has a reputed International Editorial Board and publishes peer reviewed papers. The Journal has also been approved by UGC (India). The journal publishes both original research and review papers. The ideology and scope of the Journal includes the following. -Monitoring, control and management of air, water, soil and noise pollution -Solid waste management -Industrial hygiene and occupational health -Biomedical aspects of pollution -Toxicological studies -Radioactive pollution and radiation effects -Wastewater treatment and recycling etc. -Environmental modelling -Biodiversity and conservation -Dynamics and behaviour of chemicals in environment -Natural resources, wildlife, forests and wetlands etc. -Environmental laws and legal aspects -Environmental economics -Any other topic related to environment
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