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61.
为研究不同频率脉冲电场对陈年棉种活力的影响,该文利用高压脉冲电源和弧形电极-平板组成的电场系统在极间距离为50 mm、电压分别为16和20 kV条件下对陈年棉种在不同频率(1、5、10、20、50 Hz)下进行了电场处理,处理时间为40 s。结果发现,频率为10 Hz时,陈年棉种的发芽势、发芽率、发芽指数、活力指数等指标与不做电场处理对照相比都有明显提高,且都达到极显著差异(P0.01),16比20 kV条件下的处理效果更好,达到显著性差异(P0.05)。试验结果表明,电场频率对棉种活力指标的影响是存在的,且对各指标的影响趋势是一致的,即在一定处理条件下(电场强度与处理时间)可以找到一个较优频率范围,对种子活力提高达到最大,且该试验研究结果能够为后续种子电场处理提供参考。 相似文献
62.
在一台高压共轨柴油机上进行燃用调合生物柴油(B0、B10和B20)台架试验,利用MOUDI颗粒分级采样系统和气相色谱-质谱联用仪(GC-MS)分别研究氧化催化器(diesel oxidation catalyst,DOC)结合颗粒氧化催化器(particle oxidation catalyst,POC)对颗粒物的粒径质量浓度分布和可溶性有机组分(SOF)的影响。结果表明:随着生物柴油的掺混比增加,各粒径范围的排气颗粒物质量浓度均下降,质量浓度峰值均在0.18~0.32μm;颗粒物SOF中脂类、酸类质量分数增加,烷烃类、芳香烃、酚类物质质量分数减少;B0和B20的碳原子数质量分数均呈现近似以C16为峰值的正态分布。加装DOC+POC后,3种燃料颗粒物的质量浓度均降低,聚集态颗粒的质量浓度转化率高于粗颗粒态,其中B20聚集态转化率最高,为58.36%;随着生物柴油的掺混比增加,DOC+POC对SOF的转化率增大,其中B20颗粒中SOF转化率达65.15%;DOC+POC对脂类和酸类物质净化作用明显,加装DOC+POC后,B20脂类和酸类物质的质量分数降幅分别为55.45%和43.27%;DOC+POC对B20颗粒物中SOF的C12~C18氧化作用明显。 相似文献
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64.
Stabilization mechanisms of organic matter in four temperate soils: Development and application of a conceptual model 总被引:2,自引:0,他引:2
Margit von Lützow Ingrid Kögel‐Knabner Bernard Ludwig Egbert Matzner Heinz Flessa Klemens Ekschmitt Georg Guggenberger Bernd Marschner Karsten Kalbitz 《植物养料与土壤学杂志》2008,171(1):111-124
Based on recent findings in the literature, we developed a process‐oriented conceptual model that integrates all three process groups of organic matter (OM) stabilization in soils namely (1) selective preservation of recalcitrant compounds, (2) spatial inaccessibility to decomposer organisms, and (3) interactions of OM with minerals and metal ions. The model concept relates the diverse stabilization mechanisms to active, intermediate, and passive pools. The formation of the passive pool is regarded as hierarchical structured co‐action of various processes that are active under specific pedogenetic conditions. To evaluate the model, we used data of pool sizes and turnover times of soil OM fractions from horizons of two acid forest and two agricultural soils. Selective preservation of recalcitrant compounds is relevant in the active pool and particularly in soil horizons with high C contents. Biogenic aggregation preserves OM in the intermediate pool and is limited to topsoil horizons. Spatial inaccessibility due to the occlusion of OM in clay microstructures and due to the formation of hydrophobic surfaces stabilizes OM in the passive pool. If present, charcoal contributes to the passive pool mainly in topsoil horizons. The importance of organo‐mineral interactions for OM stabilization in the passive pool is well‐known and increases with soil depth. Hydrophobicity is particularly relevant in acid soils and in soils with considerable inputs of charcoal. We conclude that the stabilization potentials of soils are site‐ and horizon‐specific. Furthermore, management affects key stabilization mechanisms. Tillage increases the importance of organo‐mineral interactions for OM stabilization, and in Ap horizons with high microbial activity and C turnover, organo‐mineral interactions can contribute to OM stabilization in the intermediate pool. The application of our model showed that we need a better understanding of processes causing spatial inaccessibility of OM to decomposers in the passive pool. 相似文献
65.
Soil salinization may negatively affect microbial processes related to carbon dioxide(CO_2) and nitrous oxide(N_2O) emissions. A short-term laboratory incubation experiment was conducted to investigate the effects of soil electrical conductivity(EC) and moisture content on CO_2 and N_2O emissions from sulfate-based natural saline soils. Three separate 100-m long transects were established along the salinity gradient on a salt-affected agricultural field at Mooreton, North Dakota, USA. Surface soils were collected from four equally spaced sampling positions within each transect, at the depths of 0–15 and 15–30 cm. In the laboratory, artificial soil cores were formed combining soils from both the depths in each transect, and incubated at 60% and 90% water-filled pore space(WFPS) at 25?C. The measured depth-weighted EC of the saturated paste extract(EC_e) across the sampling positions ranged from 0.43 to 4.65 dS m~(-1). Potential nitrogen(N) mineralization rate and CO_2 emissions decreased with increasing soil EC_e, but the relative decline in soil CO_2 emissions with increasing ECe was smaller at 60% WFPS than at 90% WFPS. At 60% WFPS, soil N_2O emissions decreased from 133 μg N_2O-N kg~(-1) soil at EC_e 0.50 dS m~(-1) to 72 μg N_2O-N kg~(-1) soil at EC_e = 4.65 dS m~(-1). In contrast, at 90% WFPS,soil N_2O emissions increased from 262 μg N_2O-N kg~(-1) soil at EC_e = 0.81 dS m~(-1) to 849 μg N_2O-N kg~(-1) soil at EC_e = 4.65 dS m~(-1), suggesting that N_2O emissions were linked to both soil ECe and moisture content. Therefore, spatial variability in soil EC_e and pattern of rainfall over the season need to be considered when up-scaling N_2O and CO_2 emissions from field to landscape scales. 相似文献
66.
农村电力系统负荷预测研究 总被引:2,自引:0,他引:2
针对黑龙江省庆安县农村电力系统的负荷进行系统的分析,对各种中长期负荷预测方法进行研究,搜集负荷的历史资料,并对搜集的负荷数据资料进行分析,找出负荷的变化规律,选择适合于黑龙江省庆安县农村电力系统的中长期负荷预测模型,为满足电力生产部门和管理部门的要求提供依据。 相似文献
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68.
外源物质处理对高温胁迫下苹果果实抗氧化能力的影响 总被引:7,自引:0,他引:7
高温胁迫下,果实表皮组织抗氧化代谢变化的总趋势是O2-和MDA含量升高,当胁迫在一定范围内,SOD和POD活性上升;超过一定限度,SOD和POD活性下降。外源自由基产生剂能够增加内源O2-的含量,同时极显著提高SOD的活性。试验结果表明,在45℃温度胁迫下,果实表皮组织O2-含量增加14.52%~61.70%;SOD活性提高1.07~1.66倍。不同种类外源活性氧产生剂对内源O2-含量的影响效能有所不同。碱性二亚硫酸钠可直接产生O2-,所以诱导内源O2-合成的效果更大一些。不同种类外源物质均可显著或极显著提高果实表皮组织SOD和POD活性,提高果实的抗热性。 相似文献
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