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51.
干燥介质相对湿度对胡萝卜片热风干燥特性的影响 总被引:2,自引:17,他引:2
为了探究相对湿度和阶段降湿对热风干燥过程的影响,该文在干燥温度60℃、风速3.0 m/s条件下,研究了相对湿度(20%、30%、40%、50%)及第一阶段相对湿度50%保持不同时间(10、30、60、90 min),第二阶段相对湿度20%下,胡萝卜片的干燥特性和温度变化规律;利用Weibull分布函数对干燥曲线进行拟合并分析干燥过程,结合尺度参数估算水分有效扩散系数;基于复水比、色泽、干燥时间和能耗对不同相对湿度条件下的干燥过程进行评价。研究结果表明:相对湿度保持恒定条件下,干燥速率先上升后下降,且相对湿度越低干燥速率越大。降低相对湿度有利于缩短干燥时间,热风相对湿度20%比50%条件下干燥时间缩短了27.6%;分段降湿干燥条件下,热风相对湿度50%保持30min后降低为20%,其干燥时间比相对湿度恒定为20%条件下缩短了18.5%,干燥过程出现2个升速阶段;Weibull分布函数可以很好地描述胡萝卜恒定湿度和阶段降湿干燥过程。尺度参数α范围在1.864~3.635 h之间,形状参数β值在1.296~1.713之间,水分有效扩散系数在1.17×10-9~2.92×10-9 m2/s之间。对绿红值、复水率、能耗和干燥时间进行综合评价显示,热风相对湿度50%保持30 min干燥条件下绿红值最高为41.4,能耗相比于恒定相对湿度20%条件下减少了6.0%,复水比较高为3.81,综合评分较高为0.91。该文揭示了干燥介质相对湿度对胡萝卜片干燥特性的影响规律,对于优化干燥介质湿度控制策略以提高干燥速率和品质,降低干燥能耗提供了科学依据和技术支持。 相似文献
52.
Electron transfer capacity of soil dissolved organic matter and its potential impact on soil respiration 总被引:1,自引:0,他引:1
Purpose
Soil dissolved organic matter (DOM) as the labile fraction of soil organic carbon (SOC) is able to facilitate biogeochemical redox reactions effecting soil respiration and carbon sequestration. In this study, we took soil samples from 20 sites differing in land use (forest and agriculture) to investigate the electron transfer capacity of soil DOM and its potential relationship with soil respiration.Materials and methods
DOM was extracted from 20 soil samples representing different land uses: forest (nos. 1–12) and agriculture (nos. 13–20) in Guangdong Province, China. Chronoamperometry was employed to quantify the electron transfer capacity (ETC) of the DOM, including electron acceptor capacity (EAC) and electron donor capacity (EDC), by applying fixed positive or negative potentials to a working electrode in a conventional three-electrode cell. The reversibility of electron accepting from or donating to DOM was measured by applying switchable potentials to the working electrode in the electrochemical system with the multiple-step potential technique. Carbon dioxide produced by soil respiration was measured with a gas chromatograph.Results and discussion
Forest soil DOM samples showed higher ETC and electron reversible rate (ERR) than agricultural soil DOM samples, which may be indicative of higher humification rate and microbial activity in forest soils. The average soil respiration of forest soil (nos. 1–12) and agricultural soil (nos. 13–10) was 26.34 and 18.58 mg C g?1 SOC, respectively. Both EDC and EAC of soil DOM had close relationship with soil respiration (p?<?0.01). The results implied that soil respiration might be accelerated by the electroactive moieties contained in soil DOM, which serve as electron shuttles and facilitate electron transfer reactions in soil respiration and SOC mineralization.Conclusions
DOM of forest soils showed higher ETC and ERR than DOM of agricultural soils. As soil represents one of the largest reservoirs of organic carbon, soil respiration affects C cycle and subsequently CO2 concentration in the atmosphere. As one of the important characteristics of soil DOM related to soil respiration, ETC has a significant impact on greenhouse gas emission and soil carbon sequestration but has not been paid attention to. 相似文献53.
为反映因下垫面因子空间分布不均和人类活动对流域侵蚀产沙的影响,建立了基于场次暴雨的小流域侵蚀产沙分布式数学模型。该模型能够模拟出流域在不同水土保持措施(不同土地利用类型)下的径流和侵蚀产沙的时空过程,从而加强了在水土保持措施制定中的应用,并能够检测流域管理措施对径流泥沙过程产生的影响,进而为配置流域内水土保持措施和检测流域管理,提供技术支撑和科学依据。经黑草河小流域实测资料率定和验证,计算值与实测值符合良好。 相似文献
54.
黄土高原植被净初级生产力时空变化及其影响因素 总被引:8,自引:3,他引:8
为了探明黄土高原地区植被生产力变化的驱动机制,该文基于MODIS传感器获得的MOD17A3数据,分析了黄土高原2000-2010年间植被净初级生产力(net primary productivity,NPP)的时空变化及其主要影响因素,并借助多元统计分析方法对引起NPP变化的自然和人为因素进行量化分析。结果表明:黄土高原植被总NPP从2000年的119 Tg(以C计)增加到2010年的144 Tg(以C计),年增速4.57 g/(m2·a)(P0.05)(以C计)。黄土高原约91%的区域NPP呈增加趋势,37%的区域增加趋势显著,主要分布在陕西、青海大部分地区、甘肃南部及宁南山区。整个黄土高原近11 a间NPP变化受自然和人为因素共同影响,其中退耕还林还草累计面积、帕尔默干旱指数(palmer drought severity index,PDSI)、耕地面积和人口数量是影响NPP变化的主要因素。退耕还林还草累计面积占四者总贡献率的43%,PDSI占40%,耕地面积和人口数量分别占13%和4%。对区域而言,由退耕还林还草工程引起的土地利用覆被变化是退耕区(陕北、甘肃东南部等)NPP增加的主要因素,而近年来干旱情况的缓解(PDSI呈上升趋势)则是青海、内蒙古等地NPP增加的主要因素。该研究对于黄土高原各区域生态资源管理,以及生态系统的建设具有一定的指导和借鉴意义。 相似文献
55.
Yong-Chun Li Bu-Rong Liu Song-Hao Li Hua Qin Wei-Jun Fu Qiu-Fang Xu 《Journal of Soils and Sediments》2014,14(9):1577-1586
Purpose
Nitrogen (N) is one of the most important elements that can limit plant growth in forest ecosystems. Ammonia-oxidizing bacteria (AOB) and archaea (AOA) are considered as the key drivers of global N biogeochemical cycling. Soil ammonia-oxidizing microbial communities associated with subtropical vegetation remain poorly characterized. The aim of this study was to determine how AOA and AOB abundance and community structure shift in response to four typical forest vegetations in subtropical region.Materials and methods
Broad-leaved forest (BF), Chinese fir forest (CF), Pinus massoniana forest (PF), and moso bamboo forest (MB) were widely distributed in the subtropical area of southern China and represented typical vegetation types. Four types of forest stands of more than 30 years grew adjacent to each other on the same soil type, slope, and elevation, were chosen for this experiment. The abundance and community structure of AOA and AOB were characterized by using real-time PCR and denaturing gradient gel electrophoresis (DGGE). The impact of soil properties on communities of AOA and AOB was tested by canonical correspondence analysis (CCA).Results and discussion
The results indicated that AOB dominated in numbers over AOA in both BF and MB soils, while the AOA/AOB ratio shifted with different forest stands. The highest archaeal and bacterial amoA gene copy numbers were detected in CF and BF soils, respectively. The AOA abundance showed a negative correlation with soil pH and organic C but a positive correlation with NO3 ??N concentration. The structures of AOA communities changed with vegetation types, but vegetation types alone would not suffice for shaping AOB community structure among four forest soils. CCA results revealed that NO3 ??N concentration and soil pH were the most important environmental gradients on the distribution of AOA community except vegetation type, while NO3 ??N concentration, soil pH, and organic C significantly affected the distribution of the AOB communities.Conclusions
These results revealed the differences in the abundance and structure of AOA and AOB community associated with different tree species, and AOA was more sensitive to vegetation and soil chemical properties than AOB. N bioavailability could be directly linked to AOA and AOB community, and these results are useful for management activities, including forest tree species selection in areas managed to minimize N export to aquatic systems. 相似文献56.
不同种植方式对红壤旱地土壤水分及抗旱能力的影响 总被引:1,自引:0,他引:1
通过3年田间小区试验,研究不同种植方式对红壤旱地土壤水分及抗旱能力的影响.结果表明:1)与种植花生相比,种植苎麻可显著提高土壤有机质质量分数(28.44%)、田间持水量(10.06%)和总孔隙度(5.65%),土壤密度则显著降低7.20%;2)监测期内,花生地各层土壤以及整个0~ 100 cm土体水分变异系数普遍高于苎麻地,苎麻地0 ~ 100 cm土体水分的时间稳定性和空间协调性优于花生地;3)苎麻地0~ 40 cm土壤较花生地延长抗旱时间7d以上,但随着土层的加深,差异越来越小;4)红壤坡耕地种植苎麻有利于提高红壤旱地土壤抗旱能力,特别是中、上层土壤.从扩充土壤水库的角度考虑,红壤旱地种植苎麻优于种植花生,该研究结果可为挖掘红壤区深层土壤水分提供参考. 相似文献
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[目的]通过测定和分析广西融水种源红心杉木优树材质性状指标,以了解该地区红心杉木材性状变异规律。[方法]以广西融水种源60株20年生的红心杉木优树为研究材料,测定单株材积、红心率、基本密度、组织比量、管胞性状、微纤丝角等10个材质性状指标,分析各材性性状指标分布和变异规律及性状间的相关关系。[结果]表明:红心率、基本密度、木射线比量、管胞比量、管胞长、管胞宽、管胞长宽比等性状数据分布服从正态分布。融水两个地区红心杉优树轴向薄壁细胞比量的变异系数分别为35.08%和44.97%,变异较大。管胞比量变异系数分别为3.28%和3.56%,变异较小。红心率、木射线比量、管胞长、管胞宽、微纤丝角等性状差异极显著(P0.01),轴向薄壁细胞比量差异显著(P0.05)。10个材质性状间存在12对表型显著相关。[结论]测定的10个性状均是连续性数量性状。早、晚材的管胞长度、管胞宽度和管胞长宽比等性状数据呈从心材至边材逐渐增加的规律。作为重要经济性状的红心率与木射线比量呈极显著正相关(P0.01),单株材积与轴向薄壁细胞比量呈显著正相关(P0.05),而单株材积与基本密度的相关性不显著,这使红心杉木生长量与材性相结合的遗传改良成为可能。 相似文献