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Anaerobic digestion is the dominant pathway for pit latrine decomposition and is limited by intrinsic factors

机译:厌氧消化是坑厕所分解的主导途径,受到内在因素的限制

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In vitro methods were used to assess the full potential for decomposition (measured as biogas formation) from pit latrine samples taken from the top layer of 15 Tanzanian latrines. We found considerable variability in the decomposition rate and extent. This was compared with decomposition in the same latrines, measured by comparing top layer composition with fresh stools and deeper (older) layers, to assess whether this potential was realised in situ. Results showed a close match between the extent of organic material breakdown in situ and in vitro, indicating that anaerobic digestion is the dominant pathway in latrines. The average potential decrease in chemical oxygen demand (COD) (determined as methane production in vitro within 60 days) and actual measured decrease in situ are 68.9% +/- 11.3 and 69.7% +/- 19.4, respectively. However in the in vitro tests, where samples were diluted in water, full decomposition was achieved in 2 months, whereas in situ it can take years; this suggests that water addition may offer a simple route to improving latrine performance. The results also allowed us to estimate, for the first time to our knowledge using experimental data, the contribution that latrines make to greenhouse gas emissions globally. This amounts to similar to 2% of annual US emissions.
机译:在体外方法用于评估从15坦桑尼厕所顶层采集的坑厕所样品中分解(测量为沼气形成)的全部潜力。我们在分解率和范围内发现了相当大的变化。将其与同一厕所中的分解进行比较,通过将顶层组合物与新鲜粪便和更深的(较旧的)层进行比较来评估该潜力是否原位实现。结果表明,原位和体外有机质崩解程度之间的良好匹配,表明厌氧消化是厕所的主要途径。化学需氧量(COD)的平均潜力降低(在60天内确定甲烷产量)和原位实际测量的降低分别为68.9%+/- 11.3和69.7%+/- 19.4。然而,在体外测试中,其中在水中稀释样品,在2个月内实现全部分解,而原位可能需要数年;这表明水加入可能提供简单的途径来提高厕所性能。结果还允许我们估算,首次使用实验数据的知识,厕所在全球范围内对温室气体排放的贡献。这相当于美国年度排放量的2%。

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