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Greenhouse gas emissions from sludge treatment reed beds

机译:污泥处理芦苇床产生的温室气体排放

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Sludge treatment reed bed systems (STRBs) are considered as an alternative technology for surplus sludge treatment. Organic matter is decomposed by various microbial reactions, resulting in gases such as CO2 and CH4 emitting into the atmosphere. The aim of this study is to investigate gas emission from STRBs. The static transparent chamber was adopted to measure gas emission; it allows sunlight to enter and plants to photosynthesise. The comparison of total solids and volatile solids showed STRBs have a higher efficiency in dewatering and mineralization than a conventional unplanted sludge drying bed (USDB). The CO2 emission ranged from 28.68 to 100.42 g CO2 m(-2) d(-1) in USDB, from 16.48 to 65.18 g CO2 m(-2) d(-1) in STRBs; CH4 emission ranged from 0.26 to 0.99 g CH4 m(-2) d(-1) in USDB, from 0.43 to 1.95 g CH4 m(-2) d(-1) in STRBs. Both gas fluxes decreased towards the end of vegetation and reached the highest rates during the hot and dry summer. After the system was loaded by sludge, the fluxes of CO2 and CH4 significantly decreased in the USDB, whereas they increased in STRBs. In terms of CO2 equivalent, the global warming potential of CH4 was 13.13 g CO(2)eq m(-2) d(-1) and 15.02 g CO(2)eq m(-2) d(-1) in USDB and STRBs, respectively.
机译:污泥处理芦苇床系统(STRBs)被认为是剩余污泥处理的替代技术。有机物会通过各种微生物反应分解,导致诸如CO2和CH4的气体散发到大气中。这项研究的目的是调查STRB的气体排放。采用静态透明室测量气体排放;它允许阳光进入,植物可以进行光合作用。对总固体和挥发性固体的比较表明,STRBs的脱水和矿化效率比常规的非种植式污泥干燥床(USDB)高。 USDB中的CO2排放量范围为28.68至100.42 g CO2 m(-2)d(-1),STRBs中的CO2排放量为16.48至65.18 g CO2 m(-2)d(-1); CH4排放在USDB中为0.26至0.99 g CH4 m(-2)d(-1),在STRB中为0.43至1.95 g CH4 m(-2)d(-1)。在炎热干燥的夏季,两种气体通量都在植被接近尾声时下降,并达到最高速率。系统被污泥加载后,USDB中的CO2和CH4通量显着下降,而STRB中的通量却增加。就CO2当量而言,CH4的全球变暖潜能为USDB中的13.13 g CO(2)eq m(-2)d(-1)和15.02 g CO(2)eq m(-2)d(-1)和STRB。

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