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971.
Finding sustainable ways to increase the amount of private land protected for biodiversity is challenging for many conservation organizations. In some countries, organizations use revolving‐fund programs, whereby land is purchased and then sold to conservation‐minded owners under condition they enter into a conservation covenant or easement. The sale proceeds are used to purchase, protect, and sell additional properties, incrementally increasing the amount of protected private land. Because the effectiveness of this approach relies on selecting appropriate properties, we explored factors currently considered by practitioners and how these are integrated into decision making. We conducted exploratory, semistructured interviews with managers from each of the 5 major revolving funds in Australia. Responses indicated although conservation factors are important, financial and social factors are also highly influential. A major determinant was whether the property could be resold within a reasonable period at a price that replenishes the fund. To facilitate resale, often selected properties include the potential for the construction of a dwelling. Practitioners face with clear trade‐offs between conservation, financial, amenity, and other factors in selecting properties and 3 main challenges: recovering the costs of acquisition, protection, and resale; reselling the property; and meeting conservation goals. Our findings suggest the complexity of these decisions may constrain revolving‐fund effectiveness. Drawing from participant responses, we identified potential strategies to mitigate these risks, such as providing adequate recreational space without jeopardizing ecological assets. We suggest managers could benefit from a shared‐learning and adaptive approach to property selection given the commonalities between programs. Understanding how practitioners deal with complex decisions in the implementation of revolving funds helps identify future research to improve the performance of this conservation tool.  相似文献   
972.
Species reintroductions are increasingly used as means of mitigating biodiversity loss. Besides habitat quality at the site targeted for reintroduction, the choice of source population can be critical for success. The butterfly Melanargia russiae (Esper´s marbled white) was extirpated from Hungary over 100 years ago, and a reintroduction program has recently been approved. We used museum specimens of this butterfly, mitochondrial DNA data (mtDNA), endosymbiont screening, and climatic‐similarity analyses to determine which extant populations should be used for its reintroduction. The species displayed 2 main mtDNA lineages across its range: 1 restricted to Iberia and southern France (Iberian lineage) and another found throughout the rest of its range (Eurasian lineage). These 2 lineages possessed highly divergent wsp alleles of the bacterial endosymbiont Wolbachia. The century‐old Hungarian specimens represented an endemic haplotype belonging to the Eurasian lineage, differing by one mutation from the Balkan and eastern European populations. The Hungarian populations of M. russiae occurred in areas with a colder and drier climate relative to most sites with extant known populations. Our results suggest the populations used for reintroduction to Hungary should belong to the Eurasian lineage, preferably from eastern Ukraine (genetically close and living in areas with the highest climatic similarity). Materials stored in museum collections can provide unique opportunities to document historical genetic diversity and help direct conservation.  相似文献   
973.
As a harmful gas in underground coal mine, CO seriously threatened the safety of miners. Currently, the spontaneous combustion of residual coal in goaf is generally considered as the main source of underground CO. CO gas is also widely used as an indicator gas in fire prediction in mines. However, high concentrations of CO are also detected in some mines without spontaneous combustion of coal. Therefore, in the paper, with four ranks of coal, we studied other two potential CO sources: crushing and oxidation at ambient temperature. The more completely crushed coal produces more CO. The concentration of generated CO is inversely proportional to moisture content in coal. Therefore, the addition of water can inhibit the generation process of CO during the crushing process of coal. Lignite with low metamorphic grade can be oxidized to produce CO at ambient temperature (25 °C), and anthracite with high coal rank can be only oxidized to produce CO at 60 °C. Infrared spectra indicated that the coal with rich aliphatic hydrocarbons and oxygen-containing functional groups are more susceptible to oxidation at room temperature. Moreover, the smaller particle size of coal is more beneficial to the oxidation at ambient temperature to generate CO. CO generation during coal oxidation is also closely related to the ventilation rate.  相似文献   
974.
The Global Strategy for Plant Conservation (GSPC) set an ambitious target to achieve a conservation assessment for all known plant species by 2020. We consolidated digitally available plant conservation assessments and reconciled their scientific names and assessment status to predefined standards to provide a quantitative measure of progress toward this target. The 241,919 plant conservation assessments generated represent 111,824 accepted land plant species (vascular plants and bryophytes, not algae). At least 73,081 and up to 90,321 species have been assessed at the global scale, representing 21–26% of known plant species. Of these plant species, at least 27,148 and up to 32,542 are threatened. Eighty plant families, including some of the largest, such as Asteraceae, Orchidaceae, and Rubiaceae, are underassessed and should be the focus of assessment effort if the GSPC target is to be met by 2020. Our data set is accessible online (ThreatSearch) and is a baseline that can be used to directly support other GSPC targets and plant conservation action. Although around one‐quarter of a million plant assessments have been compiled, the majority of plants are still unassessed. The challenge now is to build on this progress and redouble efforts to document conservation status of unassessed plants to better inform conservation decisions and conserve the most threatened species.  相似文献   
975.
为了研究三子汤对铅胁迫下水丝蚓抗氧化酶的保护作用,以探索中药抗重金属污染的特性,采用室内急性毒性的试验方法测定了不同质量浓度的铅离子对水丝蚓6 h、12h、24 h的半致死浓度分别为2. 50 mg/L、2. 00 mg/L、1. 25mg/L;测定了三子汤对水丝蚓的6 h、12 h、24 h半致死浓度分别为45 g/L、24. 75 g/L、22. 50 g/L。然后在反应体系中加入不同质量浓度的三子汤,测定不同质量浓度的三子汤对铅胁迫水丝蚓的SOD酶活性的影响,与未加入三子汤的铅胁迫水丝蚓的SOD酶活性进行检测。结果显示,铅胁迫的水丝蚓体内SOD酶活性为0. 087 U/g;加入1/4致死浓度三子汤的水丝蚓体内SOD酶的活性降低至0. 048 U/g;加入半致死浓度三子汤和1/8致死浓度三子汤的水丝蚓体内的SOD酶活性分别为0. 068 U/g和0. 058 U/g;对照组水丝蚓体内的SOD酶活力为0. 047 U/g。研究表明,1/4致死浓度的三子汤对铅胁迫的水丝蚓有明显的保护作用。  相似文献   
976.
为研究超临界CO2注入采空区防灭火的规律,自主研制了产生超临界CO2和模拟采空区遗煤自燃升温试验系统,得到了不同温压条件下超临界CO2注入采空区前后不同监测点的温度、O2和CO浓度变化数据信息。试验结果表明:注入采空区的超临界CO2发生相变,有序结构急速失序,大量吸收热量,采空区内的煤体、空气温度随时间呈线性快速下降规律,其降温能力是气态N2的10倍;超临界CO2在自燃发火煤体中的强渗透扩散特性,使自燃煤体快速惰化,防灭火效率高;停止注入后,小范围回温符合反二次函数特征;高压力超临界CO2相对于低压条件,防灭火性能更佳;超临界CO2是1种降温降氧能力显著,且输送性能优良的采空区新型防灭火材料,超临界CO2防灭火效果优于气态N2。  相似文献   
977.
一株降解萘的细菌Ralstonia sp. strain U2对萘具有趋化现象,萘、水杨酸都可以作为其对萘产生趋化现象的诱导物.U2菌对水杨酸、龙胆酸同样都具有趋化性,但这种趋化性是组成型的,不需要诱导.图3参22  相似文献   
978.
水体颗粒物以及土壤对有机物吸附常数的测定   总被引:10,自引:2,他引:10  
雷志芳  杨克武 《环境化学》1994,13(3):225-228
本文介绍了用批量平衡测定水体悬浮颗粒物以及土壤对有机物吸附常数的测定方法,并给出实例和方法的注意事项。  相似文献   
979.
近年来大气CO2体积分数不断升高,虽然CO2体积分数升高对植物影响的研究已取得一定进展,但目前针对城市森林树种的相关研究甚少。利用开顶式气室研究了大气CO2体积分数升高对沈阳市城市森林主要树种油松(PinustabulaefomisCarr.)光合生理特性的影响。结果表明,整个生长季内,与对照相比,在大气CO2体积分数为700×10-6条件下,油松叶片的Chla、Chlb及Chl(a b)质量分数提高,Chla/Chlb值降低,而类胡萝卜素质量分数则呈现出降低—升高—降低的趋势;整个处理期间,净光合速率显著提高,提高幅度为23.68%~133.18%(P<0.05或P<0.01);可溶性蛋白质量分数增加,并随着处理时间延长增加幅度增大,在通气40d时就达到差异极显著水平(P<0.01);大气CO2体积分数升高促进了油松叶片中可溶性糖、淀粉的积累;实验中并未观察到光合下调现象。  相似文献   
980.
研究了敌敌畏在颗粒物(呼和浩特土壤和黄河水体沉积物)上的吸附行为,探讨了颗粒物性质如有机质含量、粘粒含量、阳离子交换量(CEC)、pH值和离子强度等因素对吸附的影响。结果表明:敌敌畏在2种颗粒物上的吸附过程均符合一级动力学规律,可用Freundlich等温式描述,吸附常数Kd为5. 822 0和11. 738 8;颗粒物性质与吸附常数的相关分析发现:支配敌敌畏在颗粒物上吸附的主要因素是有机质含量、pH值和离子强度,随着pH值的增加和离子强度的降低,敌敌畏在2种颗粒物上的吸附量增大。  相似文献   
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