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121.
两相厌氧工艺处理草浆黑液甲烷相动力学模型 总被引:5,自引:0,他引:5
两相厌氧工艺处理草浆黑液,对甲烷相进行动力学分析。结果表明:经过修正的Monod方程能够描述甲烷相基质降解规律。当酸化相进水COD为7661~12958mg/L,甲烷相进水(酸化相出水)COD为5312~8957mg/L时,由模型计算得难厌氧降解物质(COD)为1212mg/L。由此得出,在该实验条件下甲烷相COD的最大去除率为86.47% 相似文献
122.
A systematic effort was made to assess the emission of methane from paddy fields using closed chamber technique. Methane emission measurements were performed over a year during the Kharif (wet season), Rabi (dry season), and fallow periods. Various soil parameters like redox potential, organic carbon and ferrous ion were determined to evaluate their control on methane emissions. Diurnal measurement of the flux showed a minimum (0.44?mg?m?2?h?1) in the morning (8?a.m.), which increased gradually to a value of 1.16?mg?m?2?h?1 till the evening due to the rise in soil temperature. The seasonally integrated flux (E SIF) for CH4 was calculated. The E SIF for methane during Kharif and Rabi crops were found to be 5.97?g?m?2 and 2.59?g?m?2, respectively. It was observed that the methane flux was maximum during flowering and fertilizer application stages for both paddy cropping seasons. The redox potential was low and the ferrous ion was higher during flowering and tiller stages. The methane emission was higher at 200?mV redox potential values. Based on the emission data obtained from the cropping and fallow period measurements, an annually integrated flux (E AIF) was calculated for methane to make a budget estimate of methane emission from rice cultivated under rain fed drought prone water regime. 相似文献
123.
采用自制垃圾填埋甲烷测量装置对衡阳某垃圾处理站临时堆放的处于发酵期的垃圾开展浓度测定试验,探究垃圾填埋气中甲烷在短期内产生的时空规律。结果表明:填埋场中甲烷浓度存在明显的气体分层现象,其浓度主要与纵向填埋深度呈正相关,与距填埋场边界的水平距离呈负相关;填埋初期,距离地表越近,同一水平方向甲烷浓度在不同区域变化较大,随着填埋时间的增长其浓度变化趋于稳定;填埋场内部温度与垃圾埋深和外界温度成线性相关,并且与垃圾埋深成反比,与外界温度成正比。 相似文献
124.
研究了一种实验室范围内源分类生物有机垃圾制取甲烷潜能的方法.37℃条件下,添加20 g新鲜物料和300 mL来自于沈阳市污水处理厂接种体.于3个平行反应器中进行为期50 d的厌氧消化实验,通过气相色谱定期检测甲烷气体的浓度.在37℃条件下,BMW及其各组分厌氧消化产气速率为:淀粉>BMW>蛋白质>食用油>脂肪>纸,BMW、淀粉、蛋白质、食用油、脂肪和纸最终甲烷化潜能(CH4/VS)分别为:218.15、209.11、194.20、238.86、257.82和131.41 mL/g,其厌氧生物降解率分别为:67.73%、72.88%、65.84%、78.38%、74.11%和47.98%. 相似文献
125.
126.
High-pressure gaseous methane release is a relevant safety-related problem mainly in the Oil and Gas industry. As well documented, the reason for these safety concerns is connected with the severe consequences of the domino effect subsequent to the possible ignition. In risk assessment activities, estimation of the damage area is of primary importance in order to draw up proper safety guidelines. To do this, loss prevention specialists use quick and well-established numerical tools (i.e., integral models) in their daily activities. However, the presence of an obstacle in the flow field of the jet (e.g., the ground) is a more probable situation to deal with. It is known that integral models fail in this kind of scenario, leading to unreliable predictions. Hence, the present work investigates how an industrial ground surface influences the LFL cloud size of a horizontal high-pressure methane jet. An innovative quick procedure is proposed allowing to determine the height below which the ground begins to influence the LFL cloud size and the extent of such influence. Therefore, this procedure allows practitioners to establish when integral models can be used and when not to use them, and also provides a simple and reliable alternative to their use. These analytical instruments are derived from an extensive computational fluid dynamics analysis performed with Ansys Fluent 19.0. 相似文献
127.
本文使用了详细化学反应动力学机理计算模拟了混合有乙醇及典型自由基引导的甲烷预混火焰结构.该反应机理由Marinov研究组研究发表,包含有56个组分以及372个反应.本文的计算使用了CHEMKIN-3以及预混火焰代码,热力学及输运部分的计算基于Sandia国家实验室和Marinov研究室发布的数据库.火焰结构中主要产物的变化,关键中间产物和次要组分的计算结果显示加入乙醇和自由基都可以减少着火延迟.本文计算了三种不同条件下的火焰结构,分别为预混CH4/O2/N2火焰;预混甲烷/乙醇火焰;和加入引导自由基在甲烷/乙醇混合燃料中.此外还有含有自由基的甲烷火焰和加入乙醇的甲烷火焰比较. 相似文献
128.
Methane emissions in longwall coal mines can arise from a variety of geologic and production factors, where ventilation and degasification are primary control measures to prevent excessive methane levels. However, poor ventilation practices or inadequate ventilation may result in accumulation of dangerous methane-air mixtures. The need exists for a set of rules and a model to be used as guidelines to adjust coal production according to expected methane emissions and current ventilation conditions.In this paper, hierarchical classification and regression tree (CART) analyses are performed as nonparametric modeling efforts to predict methane emissions that can arise during extraction of a longwall panel. These emissions are predicted for a range of coal productivities while considering specific operational, panel design and geologic parameters such as gas content, proximate composition of coal, seam height, panel width, cut height, cut depth, and panel size. Analyses are conducted for longwall mines with and without degasification of the longwall panel. These models define a range of coal productivities that can be achieved without exceeding specified emissions rates under given operating and geological conditions.Finally, the technique was applied to longwall mines that operate with and without degasification system to demonstrate its use and predictive capability. The predicted results proved to be close to the actual measurements to estimate ventilation requirements. Thus, the CART-based model that is given in this paper can be used to predict methane emission rates and to adjust operation parameters under ventilation constrains in longwall mining. 相似文献
129.
Sonoko Dorothea Bellingrath-Kimura Ayaka Wenhong Kishimoto-Mo Noriko Oura Seiko Sekikawa Seichiro Yonemura Shigeto Sudo Atsushi Hayakawa Kazunori Minamikawa Yusuke Takata Hiroshi Hara 《Ambio》2015,44(1):55-66
The spatial variability of carbon dioxide (CO2), methane (CH4), and nitrous oxide (N2O) fluxes from forest soil with high nitrogen (N) deposition was investigated at a rolling hill region in Japan. Gas fluxes were measured on July 25th and December 5th, 2008 at 100 points within a 100 × 100 m grid. Slope direction and position influenced soil characteristics and site-specific emissions were found. The CO2 flux showed no topological difference in July, but was significantly lower in December for north-slope with coniferous trees. Spatial dependency of CH4 fluxes was stronger than that of CO2 or N2O and showed a significantly higher uptake in hill top, and emissions in the valley indicating strong influence of water status. N2O fluxes showed no spatial dependency and exhibited high hot spots at different topology in July and December. The high N deposition led to high N2O fluxes and emphasized the spatial variability. 相似文献
130.