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11.
农业生产基地项目具有影响范围大、产品服务多元化等特点,涉及行业类别较多,其环境影响评价文件也相对复杂。环境影响评价报告编制单位应充分与建设方进行沟通,熟悉项目建设内容,挖掘项目可能的产生污染的环节和设施,明确环境影响范围和环境敏感点,并对项目损益进行两方面的分析。 相似文献
12.
基于GIS的湖北省杨树良种基地空间布局研究 总被引:1,自引:0,他引:1
在传统湖北省杨树良种基地规划布局的基础上,引入遥感技术、层次分析法和地理信息系统技术,利用遥感数据的实时性和遥感解译技术,提供大量的原始数据;利用地理信息系统强大的空间分析功能和层次分析法在定性与定量分析相结合的多因素决策分析中的独特优势,对传统湖北省杨树良种基地规划布局方法进行新的尝试。湖北省杨树良种基地规划布局分成5个步骤进行:评价指标选取、指标权重确定、评价体系构建、评价因素叠加分析和评价结果分析。结果显示石首市、潜江市、嘉鱼县、赤壁市和咸安区适宜建立国家级杨树良种基地。 相似文献
13.
在日常检修过程中,检修人员多次发现广州地铁2号线新线部分刚性接触网槽钢底座出现爆裂.通过对列车运行过程中受电弓与汇流排的相互作用力进行分析,根据分析找出导致该问题的主要原因是槽钢底座受到的作用力过大及制作材料存在缺陷,并给出了避免或减缓该问题出现的相关应对措施,以确保地铁供电设备安全. 相似文献
14.
Recent breakthroughs in CRISPR technology allow specific genome manipulation of almost all crops and have initiated a revolution in precision crop breeding. Rationally-based regulation and widespread public acceptance are needed to propel genome-edited crops from laboratory to market and to translate this innovative technology into agricultural productivity. 相似文献
15.
淦国英 《内蒙古林业调查设计》2014,(5):89-90
文章根据省、州、县有关文件指示,通过环境立地条件分析,规划了瓮安县发展花卉苗木基地布局及方案。 相似文献
16.
As a result of the important role played by phosphorus (P) in surface water eutrophication, the susceptibility of soils to release P requires evaluation. The degree of phosphorus saturation, assessed by oxalate extraction (DPSox), has been used as an indicator. However, most laboratories do not include DPSox in routine soil tests because of cost and time. This study evaluates the suitability of the ammonium acetate extraction in the presence of EDTA (AAEDTA), the standard soil test P (STP) in Wallonia (Southern Belgium), to predict DPSox; we also compared it with the Mehlich 3 extraction. Ninety‐three topsoil samples were collected in agricultural soils throughout Wallonia. Good correlations were found between the AAEDTA and the Mehlich 3 methods for P, Fe and Al (r = 0.85, 0.77 and 0.86, respectively). An exponential relationship was found between PAAEDTA and DPSox. Results of principal component analysis and regression demonstrated that STP can be used to predict DPSox (r = 0.93) after logarithmic transformation. Soil test Al was also a good indicator of the P sorption capacity (PSCox) of soils (r = 0.86). Including the clay fraction in regression equations only slightly improved the prediction of PSCox (r = 0.90), while other readily available data (such as pH or organic carbon) did not significantly improve either DPSox or PSCox predictions. 相似文献
17.
介绍了当前我国基层公共图书馆的发展状况,提出了构建基于总分馆制的县—乡(村)图书馆服务网络的构思,并对构建服务网络中的一些问题给出自己的思考。 相似文献
18.
Hamaseh Tayari Derek Flaherty Tyfane T. Yamaoka Adam Auckburally 《Veterinary anaesthesia and analgesia》2021,48(3):297-304
ObjectiveTo compare values of haemoglobin concentration (SpHb), arterial haemoglobin saturation (SpO2) and calculated arterial oxygen content (SpOC), measured noninvasively with a pulse co-oximeter before and after in vivo adjustment (via calibration of the device using a measured haemoglobin concentration) with those measured invasively using a spectrophotometric-based blood gas analyser in anaesthetized dogs.Study designProspective observational clinical study.AnimalsA group of 39 adult dogs.MethodsIn all dogs after standard instrumentation, the dorsal metatarsal artery was catheterised for blood sampling, and a pulse co-oximeter probe was applied to the tongue for noninvasive measurements. Paired data for SpHb, SpO2 and SpOC from the pulse co-oximeter and haemoglobin arterial oxygen saturation (SaO2) and arterial oxygen content (CaO2) from the blood gas analyser were obtained before and after in vivo adjustment. Bland–Altman analysis for repeated measurements was used to evaluate the bias, precision and agreement between the pulse co-oximeter and the blood gas analyser. Data are presented as mean differences and 95% limits of agreement (LoA).ResultsA total of 39 data pairs were obtained before in vivo adjustment. The mean invasively measured haemoglobin–SpHb difference was –2.7 g dL?1 with LoA of –4.9 to –0.5 g dL?1. After in vivo adjustment, 104 data pairs were obtained. The mean invasively measured haemoglobin–SpHb difference was –0.2 g dL?1 with LoA of –1.1 to 0.6 g dL?1. The mean SaO2–SpO2 difference was 0.86% with LoA of –0.8% to 2.5% and that between CaO2–SpOC was 0.66 mL dL–1 with LoA of –2.59 to 3.91 mL dL–1.ConclusionsBefore in vivo adjustment, pulse co-oximeter derived values overestimated the spectrophotometric-based blood gas analyser haemoglobin and CaO2 values. After in vivo adjustment, the accuracy, precision and LoA markedly improved. Therefore, in vivo adjustment is recommended when using this device to monitor SpHb in anaesthetised dogs. 相似文献
19.
Comparison of 4 point‐of‐care blood gas analyzers for arterial blood gas analysis in healthy dogs and dogs with cardiopulmonary disease 下载免费PDF全文
20.