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21.
目的 在一台增压中冷电控单体泵的四缸柴油机上采用柴油/甲醇双燃料(DMDF)燃烧方式进行台架实验,研究了甲醇替代率和不同后处理装置对有害气体、烟度和微粒排放特性的影响。结果 结果表明:在排气管加装柴油机氧化催化转化器(DOC)耦合微粒催化转化器(POC)可以大幅降低双燃料燃烧产生的THC和CO,基本可以实现零排放;与催化前相比,微粒的总数量浓度和总质量浓度均有大幅度降低,平均降幅分别为91.7%和88.1%;烟度排放得到改善,平均降幅为21.9%;同时,该后处理装置对DMDF发动机的NOx排放无明显影响。与之不同,双DOC耦合的后处理装置对THC和CO的催化效率略优于DOC+POC,但在大部分工况下会导致NOx和烟度排放的同时增加。  相似文献   
22.
五台山土壤水稳性团聚体有机碳分布特征   总被引:3,自引:2,他引:1  
为揭示五台山垂直带土壤不同形态团聚体有机碳的分布特征,以五台山垂直带土壤为研究对象,于2016年8月从高海拔至低海拔对亚高山草甸土、山地草甸土、棕壤、淋溶褐土、石灰性褐土样品进行采集,并且通过湿筛法和物理分组技术获得不同土壤类型中2,2~0.25,0.25~0.053,0.053mm水稳性团聚体,进一步分析了土壤及各级水稳性团聚体的总有机碳、颗粒有机碳(POC)和矿物结合有机碳(MOC)。结果表明:亚高山草甸土、山地草甸土和棕壤均以2mm团聚体为最多,达到总水稳性团聚体的45.13%。然而,淋溶褐土和石灰性褐土中分别以2~0.25mm和0.25~0.053mm团聚体为最多,分别达到33.79%和39.95%。随着海拔高度的降低土壤有机碳含量依次降低,且不同土壤类型中,2mm和2~0.25mm团聚体有机碳含量与其对应的土壤有机碳含量呈极显著正相关关系,相关系数分别为r2mm=0.986和r2~0.25mm=0.966(P0.01)。随着土壤团聚体粒径的减小,亚高山草甸土、山地草甸土、棕壤的POC含量呈现下降趋势,而淋溶褐土和石灰性褐土的POC含量呈现升高趋势。亚高山草甸土、山地草甸土、棕壤的MOC含量都以2mm团聚体为最大,淋溶褐土和石灰性褐土分别以2~0.25mm和0.25~0.053mm团聚体的MOC含量为最大。各土壤及团聚体中MOC的含量要明显大于POC的含量,而且在土壤和各级大团聚体中二者呈现正相关关系(P0.05)。此外,各土壤POC和MOC的含量与土壤有机碳含量也呈现正相关关系(P0.05)。因此,随着海拔高度的降低,各土壤团聚体组成由大团聚体向微团聚体转变,亚高山草甸土、山地草甸土、棕壤的碳截获能力强于淋溶褐土和石灰性褐土。  相似文献   
23.
No-tillage and manure application effect on soil organic carbon (SOC) and total nitrogen (N) concentrations were studied under a 27-year-old 4-year rotation consisting corn (Zea mays L.)-soybean (Glycine max L.)-wheat (Triticum aestivum L.)-field pea (Pisum sativum L.). Under each crop, four applied N treatments were control, annual urea-N applications at the rate of 45 and 89 kg N ha?1, and composted beef cattle feedlot manure-N at the rate 179 kg N ha?1 applied once every four year. For each fertilizer treatment, no-till (NT) and conventional till (CT) were compared for basic soil properties, SOC, and total N within 0–15 cm soil. Manure application significantly reduced soil bulk density and increased SOC and total N over urea-N. Particulate organic matter, mineralizable N, and permanganate-oxidizable C fractions significantly related with SOC. Long-term manure additions and no-tillage had potential to improve soil compaction and maintain SOC over chemical fertilizer N and CT.  相似文献   
24.
Organic manure application is a feasible approach to alleviate the deterioration of soil erosion on soil organic carbon (SOC). However, to what extent manure application can restore carbon contents in SOC fractions in the eroded Phaeozems remains unknown. A 5-year field experiment was conducted in an artificially eroded Phaeozem with up to 30 cm of topsoil being removed. Chemical fertiliser, or chemical fertiliser plus cattle manure was applied. The contents of SOC were 23.6, 21.6 and 15.1 g C kg?1 soil for non-soil removal control, 10 and 30 cm of topsoil removal, respectively. Compared with the chemical fertiliser-only treatment, the chemical fertiliser plus manure application markedly increased SOC contents by 30–45% and C sequestration rates by 7.1–9.0-fold, especially in the fraction of 53–250 μm particulate organic carbon. However, with manure applied, SOC content in the fraction of mineral associated organic carbon in the 30 cm topsoil-removed soil was 2.9 g kg?1, 14.7% less than control (3.4 g kg?1). The combination of chemical fertliser and manure application effectively restored SOC in the eroded Phaeozems mainly through increasing the size of 53–250 μm particulate organic C fraction, but did not improve the SOC stability in severely eroded Phaeozems.  相似文献   
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