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991.
Acer catalpifolium Rehd., a critically endangered tree species with an extremely limited range of distribution, is one of the 120 plant species with extremely small populations, as approved by the state forestry administration of the People's Republic of China and requires urgent rescue action. In order to comprehensively understand the population status and the future developmental trend of A. catalpifolium, the plant communities were investigated from 5 sites, including Caishenmiao (CSM), Banruosi (BRS), Zhangshancun (ZSC), Fuhusi (FHS), and Baoguosi (BGS). The population structure of A. catalpifolium as well as the species composition and community characteristics of its habitat were investigated. The results showed that A. catalpifolium is mainly distributed in the evergreen broad-leaved and deciduous broad-leaved mixed forests, in different community layers, namely, the tree layer, shrub layer, and herb layer, and is accompanied by 52, 74, and 52 plant species, respectively. Analyses of the distribution of population abundance revealed that BRS had the largest distribution of A. catalpifolium, accounting for 26.04% of the total population, followed by FHS, ZSC, BGS, and CSM, in that order. Analyses of the community characteristics revealed that the species diversity indices in FHS, BRS, BGS, and CSM were greater than that in ZSC. Analyses of the population age structure of A. catalpifolium revealed the gap in the distribution of the levels of seedlings and young trees. There were serious obstacles to the regeneration of the natural population. We concluded that the obstacle to the regeneration of the population of A. catalpifolium might be caused by the high competitive pressure from the dominant species and the micro-environment in the forest. Understanding the community characteristics and the population structure of A. catalpifolium could provide a theoretical foundation for its reintroduction and recovery. © 2018 Science Press. All rights reserved.  相似文献   
992.
In order to solve the problem of poor treatment of phosphorus in membrane bioreactor (MBR) with long sludge retention time (SRT), a ferric salt was added to enhance phosphorus removal; FeCl36H2O (Fe/P = 2.0) was added to the reactor. The removal efficiency of nitrogen, organic matters, and phosphorus in the MBR was investigated systematically. Moreover, this study focused on the membrane performance, the change of active sludge flora, and the effect of adding a ferric salt on membrane fouling before and after the addition. It was seen that adding the ferric salt could not affect the removal of COD and NH4 +-N and the removal rate of COD and NH4 +-N reached over 90%. However, the average removal rate of phosphorus was 52%, while the removal rate increased by nearly 40% after adding the ferric salt. The effects of adding ferric salts on the dominant bacteria and biological phosphorus removal of activated sludge were further studied. The results showed that the addition of ferric salt (Fe/P = 2.0) decreased the diversity of active sludge flora and relative abundance of some phosphorusaccumulating organisms and had a negative effect on biological phosphorus removal. The analysis of transmembrane pressure difference (TMP) recording revealed that the concentration of iron salts did not exacerbate membrane fouling. The results showed that the concentration of iron salts entering the membrane bioreactor would reduce the relative abundance and phosphorus removal efficiency of the activated sludge in the system to a certain extent, but it had no obvious effect on membrane fouling. It allowed the effluent to attain acceptable standards, especially with respect to phosphorus removal efficiency. © 2018 Science Press. All rights reserved.  相似文献   
993.
We designed photoelectrochemical cells to achieve efficient oxidation of rhodamine B (RhB) without the need for photocatalyst or supporting electrolyte. RhB, the metal anode/cathode, and O2 formed an energy-relay structure, enabling the efficient formation of O 2 species under ultraviolet illumination. In a single-compartment cell (S cell) containing a titanium (Ti) anode, Ti cathode, and 10 mg·mL–1 RhB in water, the zero-order rate constant of the photoelectrochemical oxidation (kPEC) of RhB was 0.049 mg·L–1·min–1, while those of the photochemical and electrochemical oxidations of RhB were nearly zero. kPEC remained almost the same when 0.5 mol·L–1 Na2SO4 was included in the reactive solution, regardless of the increase in the photocurrent of the S cell. The kPEC of the illuminated anode compartment in the two-compartment cell, including a Ti anode, Ti cathode, and 10 mg·mL–1 RhB in water, was higher than that of the S cell. These results support a simple, eco-friendly, and energysaving method to realize the efficient degradation of RhB.
  相似文献   
994.
While multi-stakeholder collaboration is critical for effective community post-disaster reconstruction (CPDR), it is often very difficult in practice. The Longmen Shan Fault active seismic zone in China has experienced several recent earthquakes with the 2008 Wenchuan earthquake and 2013 Lushan earthquake, both of which caused extensive and widespread damage to many communities, presenting unprecedented challenges for post-disaster reconstruction. This paper develops a multi-cycle field research method that involves three interconnected cycles: internet research, field visits, and extensive surveys: to examine multi-stakeholder collaboration for the CPDR following the Wenchuan earthquake. It was found that there were 12 types of active stakeholders engaged across four main areas: infrastructure rebuilding, psychological recovery, socio-economic rehabilitation, and ecological restoration. Specifically, local community participation and effective collaboration between the community and the external stakeholders were found to be the most crucial elements for successful reconstruction. Multi-stage field research after the Lushan earthquake verified that CPDR was effective and that multi-stakeholder collaboration had improved from the lessons learnt from the Wenchuan earthquake reconstruction experience. Some advantages and limitations of this research are also given.  相似文献   
995.
本研究以我国黄河口碱蓬湿地、九龙江口桐花树湿地、东寨港木榄湿地为研究样地,借助高通量测序技术探究这3个典型滨海湿地围垦养殖前、后土壤真菌多样性及群落结构的变化.结果表明:①不同地域湿地围垦养殖对土壤真菌群落多样性及丰富度影响表现不一致.九龙江口桐花树湿地围垦后,土壤真菌多样性及丰富度有所下降;黄河口碱蓬湿地和东寨港木榄湿地围垦后土壤真菌多样性及丰富度显著增加;②子囊菌门(Ascomycota)在湿地围垦养殖前、后土壤中均为优势真菌门,但其相对丰度在围垦后显著下降;③湿地围垦养殖改变了土壤真菌属水平群落组成,黄河口湿地围垦后,未出现翅孢壳属(Emericellopsis)、毛霉属(Mucor)、枝顶孢属(Acremonium);九龙江口和东寨港湿地围垦后,青霉属(Penicillium)相对丰度显著下降,并新增了镰刀菌属(Fusarium),九龙江口湿地围垦后还新增了链格孢属(Alternaria);④环境因子与湿地土壤真菌相对丰度存在一定程度的相关性,青霉属(Penicillium)与容重呈显著负相关(p<0.05),与pH呈显著负相关(p<0.01),与有机碳呈显著正相关(p<0.01);翅孢壳属(Emericellopsis)与容重和pH呈显著正相关(p<0.05),与有机碳呈显著负相关(p<0.01).  相似文献   
996.
工业化快速进程中.工业污染作为工业生产在所难免的附属产物.占全国总污染负荷的70%.对资源环境构成巨大压力。经济发达地区工业产值占据了国民经济的半壁江山.使得工业结构与布局成为影响生态环境质量的主要驱动因子。本文首先以江苏省为例.分析重污染行业结构与工业布局变动对环境效应的实际效果.得出重要结论:自1990年以来工业结构与布局调整不利于环境污染控制。从生产效应和社会效应两个方面.分析工业化进程中的环境效应影响机理.通过对江苏省的实证分析.结果证实工业结构与布局是现阶段景影响环境污染的重要变量。重污染行业结构是环境效应的主要影响因素。加快工业结构调整步伐、进一步优化工业布局.着力于从工业结构调整和工业布局变动趋势中获得改善环境质量的机遇和动力是摆脱环境与发展困境的有力手段。  相似文献   
997.
为获得近距离煤层群叠加开采条件下采动应力与覆岩位移场的演化特征,以潘二矿近距离煤层6,7煤层地质条件为背景,采用相似模拟与工程实践相结合的方法进行了研究。结果表明:近距离煤层群叠加开采形成的覆岩宏观运移形态和特征与单一煤层开采相似,叠加开采时,覆岩呈多岩层整体协调运移的规律,具有位移叠加增长效应;7煤层的开采使覆岩起到一定的垫层作用,缓和了矿山压力,使近距离煤层叠加开采时具有应力减弱效应;与开采7煤层相比,6煤层开采过程中,周期来压步距减小,来压时支架载荷减弱,动压系数相应减小,但周期来压时,存在部分岩层发生台阶式下沉的现象。基于近距离煤层群叠加开采研究结果,在近距离煤层群开采的设备选型时,选用了高额定工作阻力的液压支架,在周期来压期间,采取了一定的辅助措施,同时加强了组织管理,生产中没有发生冲击液压支架及其他动力灾害的现象。  相似文献   
998.
孤岛工作面覆岩空间结构复杂多变,受开采和地质等因素的影响在开采过程中面临冲击地压、煤与瓦斯突出、自燃发火以及采空区突水等复合动力灾害。留设合理宽度的区段煤柱是确保工作面安全开采的关键,以陕西某矿特厚煤层孤岛工作面开采为工程案例,通过分析工作面覆岩空间结构,理论计算了工作面应力分布;采用应力动态监测等方法确定了该工作采空区侧向覆岩运动,并综合考虑冲击地压灾害防治、次生灾害控制以及巷道支护等因素,确定了该工作面区段煤柱的合理宽度为5~7 m。  相似文献   
999.
以原煤煤样为研究对象,采用自主研发的三轴应力渗流实验系统,进行等幅循环加、卸载的渗透率测试,研究煤样疲劳损伤过程中渗透率对应力水平的响应特征。结果表明:上、下限应力点处渗透率随循环次数出现降低-稳定-升高3个阶段,整体呈“U”型,并且随着上限应力水平的升高,曲线有向“V”型发展的趋势。拟合结果显示:在渗透率降低阶段,渗透率与循环次数呈幂指数函数关系;在渗透率升高阶段,渗透率与循环次数呈指数函数关系,并且渗透率随循环次数的降低和升高速率与上限应力水平正相关。  相似文献   
1000.
为获得更准确的巷道围岩应力分布和变形特征,基于统一强度理论,考虑围岩塑性软化和中间主应力的影响,引入塑性软化参数,推导出巷道围岩弹塑性区应力、塑性区范围和位移的表达式。通过算例分析,得到塑性软化系数和中间主应力等相关参数对巷道围岩应力分布、塑性区半径和位移的影响规律。研究结果表明:随内摩擦角软化系数和黏聚力软化系数的增大,围岩塑性区半径和位移呈现先急剧后缓慢的减小趋势;中间主应力系数对巷道围岩弹塑性应力有着显著影响,中间主应力系数越大,围岩塑性区半径和位移越小。  相似文献   
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