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91.
为研究炭化竹原纤维的特性,进一步提升竹原纤维的使用性能,拓宽竹原纤维的应用领域,采用可控电炉制备了不同炭化温度和不同保温时间条件下的炭化竹原纤维,利用全自动比表面积及孔隙度分析仪测试了炭化竹原纤维的比表面积、比孔容及平均孔径,探讨了炭化条件对其性能的影响。结果表明:随炭化温度的升高和保温时间的延长,炭化竹原纤维的比表面积、比孔容和孔径分布先增大后减小,在较优的工艺条件下,炭化竹原纤维的比表面积和比孔容最大值分别可达819.35m2/g和0.7358cm3/g,平均孔径最小可达2.0836nm。  相似文献   
92.
宋立  肖平 《安徽农业科学》2015,(12):184-186
以江苏环太湖国际旅游区规划为实验对象,重点探讨生态景观吸引力空间异化过程,即从要素磁场分化开始,经由同质景观间的引力异化,导致同类景观片区间的引力空间异化,最终推导出另一种"同质相斥、异质相吸"的新型生态景观吸引力空间结构。  相似文献   
93.
在灌溉定额一定的情况下,研究了不同滴灌频率对大田膜下小西瓜在果实膨大期以及成熟期内有关特性的影响,以期为豫北平原地区大田膜下滴灌小西瓜生长中后期阶段确定最佳的滴灌频率。结果表明:不同灌溉频率对小西瓜生长过程中根粗、茎粗和蔓长的影响不是特别明显。从试验数据来看,以果实膨大期中频(T3),果实成熟期低频(T5)处理效果较好。此灌溉频率组合下不仅小西瓜长势好,而且甜度较大,省工省时又节水。  相似文献   
94.
Three years of field experiments were carried out to explore the response of potato dry matter production, accumulated intercepted photosynthetic active radiation (Aipar) and radiation use efficiency (RUE) to five N levels providing 0, 60, 100, 140 and 180 kg N ha−1 and three drip irrigation strategies, which were full, deficit and none irrigation. Results showed that, irrespective of years, dry matter production and Aipar were increased by prolonged N fertigation, even though N fertigation was carried out from middle to late growing season. The highest total and tuber dry matter and accumulated radiation interception in all three years were obtained when potatoes were provided with 180 kg N ha−1. RUE on the other hand was not affected by N regime. Thus, increases in total dry matter production with increasing N levels were essentially caused by higher Aipar. The strongest response to N fertilization occurred when most N was applied early in the growing season and the latest N fertilization should be applied no later than 41–50 days after emergence. Deficit irrigation, which received ca.70% of irrigation applied to full irrigation, did not reduce radiation interception and radiation use efficiency.  相似文献   
95.
Trees are the dominant species in agroforestry systems, profoundly affecting the performance of understory crops. Proximity to trees is a key factor in crop performance, but rather little information is available on the spatial distribution of yield and yield components of crop species under the influence of trees in agroforestry systems. Also, little information is available on how crop density may be exploited to optimize the yield in such systems. Here we studied the performance of cotton in jujube/cotton agroforestry. Field experiments were conducted in 2012 and 2013 in Hetian, Xinjiang, China. Cotton was grown at a row distance of 60 cm in three densities, 13.5, 18.0 and 22.5 plants m−2 in six m wide paths between tree lines in a jujube plantation. Plant density affected both cotton aboveground dry matter and yield significantly. The highest yield was attained at the intermediate density of 18.0 plants m−2 (20.0 plants m−2 corresponding in sole cotton), lower than the optimal density in sole cotton (25.0 plants m−2). Yield at the lower density was constrained by the low number of bolls per m2 as a direct consequence of the low density, whereas at the high plant density yield was constrained by a lower allocation of assimilates to cotton seed and lint, as a consequence of intraspecific and interspecific competitions. There were strong gradients in yield and yield components in relation to the distance from the tree rows. Leaf area and total dry matter of cotton in rows close to the tree lines were reduced, especially in the rows next to the trees. Moreover, biomass allocation to cotton fruits was reduced in these rows. Competitive influences from the trees on cotton performance extended two rows deep in a six-year old jujube stand, and even three rows deep in a seven-year old stand. Shading effects on cotton yield were compensated by increasing plant density as a result of greater boll numbers per unit ground area. Data from this study help guide the design of optimal plant density of cotton in jujube plantations and give insight in the spatial distribution and dynamics of competitive effects in agroforestry systems in general.  相似文献   
96.
用 IRIS Intrepid II XSP ICP全谱直读等离子体发射光谱仪,对黄山名茶中 Se、Fe、Mn、Cd、Cr、Co、Ni、Cu、Pb、Zn等微量元素进行了测定,通过试验,选择了仪器的最佳分析条件。方法简便快速,精密度和准确度均符合要求。该方法用于实际茶叶样品分析,结果令人满意。  相似文献   
97.
运用NMDS方法研究了福州市居民对福州市旅游景区的认知。通过空间定位图分析发现,在居民的认知中福州市10家旅游景区被聚合为3个组群:自然风光类旅游景区组群、人文风貌和自然风貌旅游景区组群、海岛风光旅游景区和博物馆旅游景区组群;在当地居民对旅游景区的感知情况方面,有4家旅游景区的感知率小于60%;在到访情况方面,旅游景区到访率只有3家大于70%,有2家介于35%和55%之间,有5家小于30%。通过特征属性和旅游景区之间的配适分析与水平距离分析发现,居民对前2个组群的评价较高,对后1个组群的评价较低。据此提出了福州市旅游发展的建议。  相似文献   
98.
[目的]筛选出能有效控制蒙古栎栗实象的无公害药剂和施药方式.[方法]采用6种无公害农药对蒙古栎栗实象成虫分别进行室内筛选试验和野外防治试验,同时对施药方法进行了评估.[结果]室内药剂测定试验结果表明,稀释100倍的1.2%阿维菌素、稀释100倍和500倍的5%噻虫啉及25%灭幼脲致死率均达到70%以上,其中稀释100倍的5%噻虫啉效果最佳,120 h后致死率达到84.21%;室外药效试验结果表明,稀释100倍的25%灭幼脲采用打孔注药的施药方式效果最明显,橡实被害率为64%,降低了32%的果实被害率.[结论]试验结果为蒙古栎栗实象的无公害防治提供了参考.  相似文献   
99.
恩施与国外白肋烟中性致香成分含量的差异比较   总被引:1,自引:0,他引:1  
为明确恩施白肋烟中性致香成分组分和含量及与国外白肋烟的异同,以恩施不同产区及美国、马拉维白肋烟样品为材料,采用气质联用仪对样品的中性致香成分含量进行分析测定,结果表明:恩施白肋烟中性致香成分总量及各组分含量在产地之间存在一定差异,其中香叶基丙酮、苯甲醛、糠醇等单一致香成分含量的变异较大。以巨豆三烯酮为代表的类胡萝卜素类降解产物含量以美国烟叶最高,恩施次之,马拉维最低;恩施白肋烟苯丙氨酸类、棕色化反应产物含量均高于美国和马拉维,而西柏三烯的主要降解产物茄酮则低于国外烟叶。聚类分析将供试样品分为3类,80%的恩施样点与美国同属一类,表明恩施白肋烟中性致香成分含量与美国具有较高的相似性。  相似文献   
100.
Soil organic carbon (SOC) content and its spatial distribution in the Northern Gangetic Plain (NGP) Zone of India were determined to establish the cause–effect relationship between agro‐ecological characteristics, prevailing crop management practices and SOC stock. Area Spread Index (ASI) approach was used to collect soil samples from the NGP areas supporting predominant cropping systems. Exponential ordinary kriging was found most suitable geo‐statistical model for developing SOC surface maps of the NGP. Predicted surface maps indicated that 43.7% area of NGP had 0.5–0.6% SOC, while the rest of the area was equally distributed with high (0.61–0.75%) and low (< 0.5%) SOC content levels. Averaged across cropping systems, maximum SOC content was recorded in Bhabar and Tarai Zone (BTZ), followed by Central Plain Zone (CPZ), Mid‐Western Plain Zone (MWPZ), Western Plain Zone (WPZ) and South‐Western Plain Zone (SWPZ) of the NGP. The SOC stock was above the optimum threshold (> 12.5 Mg/ha) in 97.8, 57.6 and 46.4% areas of BTZ, CPZ and MWPZ, respectively. Only 9.8 and 0.4% area of WPZ and SWPZ, respectively, had SOC stock above the threshold value. The variation in SOC stock was attributed largely to carbon addition through recycling of organic sources, cropping systems, tillage intensity, crop or residue cover and land‐use efficiency, nutrient‐use pattern, soil texture and prevailing ecosystem. Adoption of conservation agriculture, balanced use of nutrients, inclusion of legumes in cropping systems and agro‐forestry were suggested for enhancing SOC stock in the region.  相似文献   
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