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Methane potentials of wastewater generated from hydrothermal liquefaction of rice straw: focusing on the wastewater characteristics and microbial community compositions

机译:稻草水热液化产生的废水的甲烷电位:专注于废水特征和微生物群落组成

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摘要

Abstract Background Hydrothermal liquefaction (HTL) has been well studied for the bio-oil production from biomass. However, a large amount of wastewater with high organic content is also produced during the HTL process. Therefore, the present study investigated the methane potentials of hydrothermal liquefaction wastewater (HTLWW) obtained from HTL of rice straw at different temperatures (170–320 °C) and residence times (0.5–4 h). The characteristics (e.g., total organic content, organic species, molecular size distribution, etc.) of the HTLWW were studied, and at the same time, microbial community compositions involved in AD of HTLWW were analyzed. Results The highest methane yield of 314 mL CH4/g COD was obtained from the sample 200 °C–0.5 h (HTL temperature at 200 °C for 0.5 h), while the lowest methane yield 217 mL CH4/g COD was obtained from the sample 320 °C–0.5 h. These results were consistent with the higher amounts of hard biodegradable organics (furans, phenols, etc.) and lower amounts of easily biodegradable organics (sugars and volatile fatty acids) present in sample 320 °C–0.5 h compared to sample 200 °C–0.5 h. Size distribution analysis showed that sample 320 °C–0.5 h contained more organics with molecular size less than 1 kDa (79.5%) compared to sample 200 °C–0.5 h (66.2%). Further studies showed that hard biodegradable organics were present in the organics with molecular size higher than 1 kDa for sample 200 °C–0.5 h. In contrast, those organics were present in both the organics with molecular size higher and less than 1 kDa for sample 320 °C–0.5 h. Microbial community analysis showed that different microbial community compositions were established during the AD with different HTLWW samples due to the different organic compositions. For instance, Petrimonas, which could degrade sugars, had higher abundance in the AD of sample 200 °C–0.5 h (20%) compared to sample 320 °C–0.5 h (7%). The higher abundance of Petrimonas was consistent with the higher content of sugars in sample 200 °C–0.5 h. The higher Petrimonas abundance was consistent with the higher content of sugars in sample 200 °C–0.5 h. The genus Syntrophorhabdus could degrade phenols and its enrichment in the AD of sample 320 °C–0.5 h might be related with the highest content of phenols in the HTLWW. Conclusions HTL parameters like temperature and residence time affected the biodegradability of HTLWW obtained from HTL of rice straw. More hard biodegradable organics were produced with the increase of HTL temperature. The microbial community compositions during the AD were also affected by the different organic compositions in HTLWW samples.
机译:摘要背景水热液化(HTL)已经很好地研究了生物油的生物质制备。然而,在HTL过程也产生具有高有机含量的大量废水。因此,本研究调查从在不同的温度(170-320℃)和停留时间(0.5-4 1H)稻草HTL得到水热液化的废水(HTLWW)的甲烷电位。特性的HTLWW的(例如,总有机含量,有机物质,分子大小分布等)进行了研究,并在同一时间,参与HTLWW的AD微生物群落的组合物进行了分析。结果从样品200°C-0.5小时(HTL温度在200℃下0.5小时)中得到314毫升CH4 /克COD的最高甲烷产量,而最低的甲烷产率217毫升CH4 /克COD从所得样品320°C-0.5小时。这些结果320℃C-0.5小时相比,样品中的样品都具有较高量的可生物降解的硬有机物(呋喃,酚类等)和较低量的易于生物降解的有机物(糖和挥发性脂肪酸)存在的一致的200°C- 0.5小时。尺寸分布分析表明,样品320°C-0.5小时含有更多的有机物用分子尺寸小于1千道尔顿(79.5%)相比,样品200°C-0.5小时(66.2%)。进一步的研究表明,可生物降解的硬有机物存在于有机物用分子大小大于1 kDa的更高样品200℃C-0.5小时。相反,那些有机物存在于二者与分子大小更高且小于1千道尔顿为样品320°C-0.5小时的有机物。微生物群落分析表明,具有不同HTLWW样品AD期间,由于不同的有机组合物,建立不同的微生物群落的组合物。例如,Petrimonas,能够降解糖,不得不在相对于样品320°C-0.5小时(7%)的样品的AD 200°C-0.5小时(20%)更高的丰度。丰度更高Petrimonas的是与糖在样品200°C-0.5小时的含量​​较高是一致的。较高Petrimonas丰度与糖在样品200°C-0.5小时的含量​​较高是一致的。属Syntrophorhabdus可降解酚和其在样品320°C-0.5小时的AD富集可能与酚在HTLWW含量最高有关。结论HTL参数,如温度和停留时间的影响稻草的HTL获得HTLWW的生物降解性。更硬的可生物降解的有机物产生具有HTL温度的升高。在AD中的微生物群落的组合物也受到HTLWW样品中的不同的有机组合物。

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