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41.
The Neebing-McIntyre floodway in Thunder Bay, Ontario, Canada, has been constructed with a relatively straight and uniform trapezoidal channel, compared with the prechannelized sinuous reaches of the Neebing and the McIntyre rivers. The flow regime of the floodway also contrasts significantly with the prechannelized regime, because of the combination of discharges from these rivers into a new channel and the regulation of flows by a diversion structure. The maximum channel capacity of the floodway is about 284 m3 s–1 (175-year regional flood), compared with about 40 m3 s–1 and 60 m3 s–1, respectively, for the Neebing and the McIntyre. According to regime theories, the construction of a straight and trapezoidal channel has upset the equilibrium of the stream system and therefore should lead to some accelerated erosion and sedimentation processes in the new channel immediately after construction. Erosion potential is particularly high during higher discharge events, when flow velocities are expected to be greater than the prechannelized velocities of the Neebing and the McIntyre. The overall sediment yield of the watershed is low (71t km–2 yr–1), compared with other documented watersheds of North America, but the rates of deposition in the floodway are relatively high, mainly due to the backwater effect of Lake Superior. Unless maintained by constant channel work, the floodway will tend to fill up with sediment, until a postconstructional equilibrium is reestablished.  相似文献   
42.
较系统地研究了香蕉组培苗的营养与施肥,试验方案包括了NPK13种用量水平、10种不同NPK配比和中微量元素混施.试验结果表明,在一定的NPK施肥基础上.再增施NPK均能获得不同程度的增产,其中增施N的增产幅为4.7%-15.0%,增施P、K的分别为3.4%-15.1%和6.6%-12.6%.增N有利于植株增高、茎围增粗、长叶增快和提早吐蕾;增P对植株增高和提早吐蕾也有一定的作用;增K主要有利于茎围增粗,但在高N高P下增K也同样具有增N的多种效果.增K的另一效应是延缓吐蕾期而使吐蕾期较集中一致,这有利于田间管理和收获;施用中微量元素的增产效果显著,同时也改善和提高了果实品质.应提倡应用和推广.  相似文献   
43.
One of the important cultural practices that affect methane and nitrous oxide emissions from tropical rice plantations is the water drainage system. While drainage can reduce methane emissions, it can also increase nitrous oxide emissions, as well as reduce yields. In this experiment, four different water drainage systems were compared in a rice field in central Thailand including: (1) continuous flooding, (2) mid-season drainage, (3) multiple drainage and (4) a local method (drainage was done according to local cultural practice) in order to find a system of drainage that would optimize yields while simultaneously limiting methane and nitrous oxide emissions. Methane and nitrous oxide emission were observed and compared with rice yield and physical changes of rice plants. It was found that drainage during the flowering period could reduce methane emission. Interestingly, nitrous oxide emission was related to number of drain days rather than the frequency of draining. Fewer drain days can help reduce nitrous oxide emission. The mid-season drainage and the multiple drainage, with 6.9% and 11.4% reduction in rice yield, respectively, had an average methane emission per crop 27% and 35% lower when compared to the local method. Draining with fewer drain days during the flowering period was recommended as a compromise between emissions and yield. The field drainage can be used as an option to reduce methane and nitrous oxide emissions from rice fields with acceptable yield reduction. Mid-season drainage during the rice flowering period, with a shortened drainage period (3 days), is suggested as a compromise between the need to reduce global warming and current socio-economic realities.  相似文献   
44.
水稻耐氨固氮菌施用效应研究   总被引:2,自引:0,他引:2  
早、晚两季的田间试验结果表明,在电脑推荐施N水平上,耐氨固氮菌的增产效果不显著;在低N情况下(每公顷减纯N37.5kg),耐氨固氮菌的增产效果达显著水平,早、晚稻分别增产8.41%和7.21%。15N示踪盆栽试验结果表明,耐氨固氮菌对根系生长有明显的促进作用,在秧苗期明显增加秧苗对肥料15N的吸收.禾苗分蘖盛期则增强了禾苗根系的吸氮能力。  相似文献   
45.
Abstract: Excessive loads of nutrients transported by tributary rivers have been linked to hypoxia in the Gulf of Mexico. Management efforts to reduce the hypoxic zone in the Gulf of Mexico and improve the water quality of rivers and streams could benefit from targeting nutrient reductions toward watersheds with the highest nutrient yields delivered to sensitive downstream waters. One challenge is that most conventional watershed modeling approaches (e.g., mechanistic models) used in these management decisions do not consider uncertainties in the predictions of nutrient yields and their downstream delivery. The increasing use of parameter estimation procedures to statistically estimate model coefficients, however, allows uncertainties in these predictions to be reliably estimated. Here, we use a robust bootstrapping procedure applied to the results of a previous application of the hybrid statistical/mechanistic watershed model SPARROW (Spatially Referenced Regression On Watershed attributes) to develop a statistically reliable method for identifying “high priority” areas for management, based on a probabilistic ranking of delivered nutrient yields from watersheds throughout a basin. The method is designed to be used by managers to prioritize watersheds where additional stream monitoring and evaluations of nutrient‐reduction strategies could be undertaken. Our ranking procedure incorporates information on the confidence intervals of model predictions and the corresponding watershed rankings of the delivered nutrient yields. From this quantified uncertainty, we estimate the probability that individual watersheds are among a collection of watersheds that have the highest delivered nutrient yields. We illustrate the application of the procedure to 818 eight‐digit Hydrologic Unit Code watersheds in the Mississippi/Atchafalaya River basin by identifying 150 watersheds having the highest delivered nutrient yields to the Gulf of Mexico. Highest delivered yields were from watersheds in the Central Mississippi, Ohio, and Lower Mississippi River basins. With 90% confidence, only a few watersheds can be reliably placed into the highest 150 category; however, many more watersheds can be removed from consideration as not belonging to the highest 150 category. Results from this ranking procedure provide robust information on watershed nutrient yields that can benefit management efforts to reduce nutrient loadings to downstream coastal waters, such as the Gulf of Mexico, or to local receiving streams and reservoirs.  相似文献   
46.
通过对我国建筑结构用钢在拉伸和压缩两种方式下的恒载升温试验,进行了5次受拉试件和2次受压试件的对比研究,根据试验中材料的各自变形规律,对其破坏机理进行了理论分析;从材料屈服的定义出发,给出了恒载升温拉伸试验中的参数(对应温度下的临界荷载水平),并与恒载升温压缩试验中的参数项进行了对比,指出受压构件和受拉构件的高温屈服强度是不同的,因此在钢结构建筑的耐火设计中应分别取不同的安全系数。  相似文献   
47.
稀酸预处理铜藻制备生物乙醇工艺   总被引:1,自引:0,他引:1  
选取暖温带海洋生态环境生物修复的首选物种——铜藻(Sargassum horneri)为原料进行生物乙醇的制备,以稀硫酸水解后的还原糖收率为响应值,考察水解温度、液固比、水解时间和w(H2SO4)等参数对水解效率的影响. 为优化稀酸水解铜藻预处理的工艺条件,在单因素试验的基础上,利用Box-Benhnken中心组合设计法和响应面分析法,建立稀酸预处理工艺参数的回归模型,并与酶水解及发酵相结合验证了铜藻稀酸预处理效果. 结果表明:①稀酸水解铜藻的最优工艺参数. 水解温度为120 ℃,液固比为20∶1,水解时间为2.00 h,w(H2SO4)为4.50%. ②稀酸水解铜藻过程中各影响因素之间存在交互作用,水解时间和w(H2SO4)的非线性作用显著. ③对经最佳稀酸预处理工艺处理后的铜藻粉进行酶水解,其还原糖收率为44.05%,是未预处理下的8.14倍,并且后续进行发酵后,乙醇产率达7.80%,是未预处理下的2.00倍. 表明铜藻是一种潜在的生物乙醇原料,稀酸预处理方法对铜藻生物乙醇的制备行之有效.   相似文献   
48.
山砂是我国西北部矿区地表的主要自然资源之一,但如用其直接作为煤矿注浆防灭火的原料,不仅会造成输送管路的堵塞,还会引起输送管路的严重磨损。为此,首先研究了常见增稠剂羧甲基纤维素、聚丙烯酰胺和聚丙烯酸钠等对砂粒的悬浮性能,实验结果表明它们只能延缓砂粒的沉降。进而从理论上分析了砂粒悬浮的条件,发现具有一定屈服应力的假塑性流体特性的液体才能悬浮砂粒;并且悬浮砂粒粒径越大,所需屈服应力也越大。基于理论分析,研制了具有该特性的浆液,山砂在该浆液中不仅具有良好的悬浮性能,浆液还具有输送阻力小的特性。管道输送试验表明,浆液稳定性和流动阻力符合实际要求。  相似文献   
49.
降低地下矿深孔爆破落矿大块率的技术措施   总被引:2,自引:0,他引:2  
降低深孔爆破落矿大块率是矿山凿岩中的一个重要课题。笔者对地下矿深孔爆破落矿中大块产生位置及原因进行分析;探讨在炸药单耗、孔网布置、装药结构、堵塞长度、微差间隔、起爆方式等方面对其产生影响的规律;提出地下矿深孔爆破落矿中通过优化爆破参数降低大块率的技术措施。该优化技术措施主要有:减少地质构造对深孔落矿的影响,合理确定炸药单耗的方法,使用大孔距小抵抗线落矿技术,采用多种装药结构技术,采用多排微差起爆技术,加强深孔的施工管理和加强爆破施工的现场管理。这些措施在工程实践中获得了良好的应用效果。  相似文献   
50.
赵丽芳  黄鹏武  杨彩迪  卢升高 《环境科学》2022,43(11):5224-5233
我国南方粮食主产区土壤酸化治理是提升耕地地力促进粮食增产的重要内容,目的是探究酸化土壤改良剂牡蛎壳粉和石灰对水稻土酸度、磷有效性和形态以及酶活性和相关功能基因的影响.盆栽试验设计2种改良剂的3个施用量(0.05%、0.10%和0.15%),以水稻为试验作物.结果表明:①牡蛎壳粉和石灰均显著提高土壤pH,降低土壤交换性酸,且改良效果随着改良剂用量增加而提高,相同用量下石灰对土壤酸性的改良效果高于牡蛎壳粉;② 4种有效磷提取剂提取的土壤有效磷测定结果表明,牡蛎壳粉和石灰显著提高H2SO4-P、Bray-1 P和Olsen-P含量,其中Olsen-P含量随改良剂用量的增加而提高.③土壤中不同形态无机磷含量表现为:Fe-P>Al-P>Ca-P,石灰和牡蛎壳粉显著提高Al-P和Fe-P含量,分别提高26.3%~37.4%和7.9%~23.7%;0.15%改良剂显著增加Ca-P含量;④石灰和牡蛎壳粉对土壤DHA、ALP、IPP活性和phoD基因拷贝数具有提高作用,而对土壤ACP活性、phoCpqqC拷贝数表现为降低;⑤改良剂(0.10%和0.15%)显著提高水稻产量,0.15%用量的石灰和牡蛎壳粉分别提高水稻产量34.2%和46.8%,但对秸秆生物量无显著影响.相关分析表明,土壤无机磷和有效磷含量与pH和ALP活性呈显著正相关,改良剂通过消除土壤酸化和提高土壤磷酸酶活性来改善土壤磷营养状况,这对促进作物产量具有积极作用.  相似文献   
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