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71.
Zongming Wang Kaishan Song Bai Zhang Dianwei Liu Chunying Ren Ling Luo Ting Yang Ni Huang Liangjun Hu Haijun Yang Zhiming Liu 《Agriculture, ecosystems & environment》2009,129(1-3):315-324
In the past century, especially the past five decades, the grasslands of the West Songnen Plain, Northeast China, were rapidly converted into croplands and salinized wasteland, and experienced a fragmentation process that is still ongoing. Almost no information is available on the spatial-temporal changes of grasslands in this area. In this study, grassland cover change, agricultural reclamation and salinized wasteland expansion were investigated during the past five decades. Grassland fragmentation was studied based on four landscape metrics. The grassland cover change was detected from a time series of topographic maps from 1954, satellite images of Landsat TM in 1986, 1995, and 2000 using remote sensing and geographic information systems (GIS). In addition, the land use changes were analyzed using a transition matrix of land use types, while the driving forces were explored according to climatic changes and socioeconomic developments. The results indicated a significant decrease in grassland area. Of the 1 418 945 ha of native grassland in 1954, approximately 64% was removed by 2000, while the number of patches (NP) increased from 865 to 2035 and the mean patch size (MPS) decreased from 1640 ha to 252 ha. During the whole study period, the average annual decrease rate of grassland was 34 894 ha/year. Cropland and salinized wasteland were the two main land use types into which grassland converted. During the past decades, obvious climatic changes occurred, which supplied a favorable potential environment for agricultural development but damaged grassland productivity. On the other hand, population, GDP and livestock number increased significantly as grassland quality decreased. According to the results, the shrinkage and fragmentation of grasslands may well be explained by socioeconomic development and aided by changing climatic conditions. 相似文献
72.
高度有序的TiO2纳米管阵列光催化性能研究 总被引:2,自引:2,他引:0
采用恒压阳极氧化法在纯钛箔表面制备TiO2纳米管阵列,利用SEM和XRD对其进行了形貌和晶型的分析和表征,并通过TiO2纳米管阵列膜对甲基橙光催化降解,探讨光照时间、甲基橙溶液的初始浓度、溶液的初始pH值和H2O2加入浓度等因素对甲基橙的脱色率影响.结果表明,H2O2加入浓度为50mg·L-1,紫外光照射2h,溶液为中性时,在30 mg·L-1的甲基橙溶液(50mL)中,甲基橙溶液的脱色率达到100%.当H2O2加入浓度进一步增大到100 mg·L-1时,光催化的效率进一步提高,紫外光照射1h,甲基橙溶液的脱色率就已经达到了100%,并未出现抑制光催化的现象.同时还研究了TiO2纳米管阵列电极的稳定性.实验结果表明,随着TiO2纳米管阵列使用次数的增加,其光催化效果略有所下降. 相似文献
73.
利用工业废物粉煤灰为原料,在传统碱熔-水热法中引入脱硅工艺合成SOD型沸石,通过X射线衍射和扫描电镜进行表征,并研究了在不同条件下合成沸石对Cs~+的吸附特性。采用静态平衡实验方法获得Cs~+的吸附实验数据,考察不同因素对Cs~+吸附量的影响。结果表明,合成沸石的吸附性能比原状粉煤灰有了显著提高,当初始浓度为200 mg/L时,其对Cs~+的吸附率仍能达到80%以上;吸附量随着pH的增加先增大后减小,最适pH为10;离子强度的增加将抑制吸附行为;提高初始浓度有利于吸附量的增大,但须通过调节固液比兼顾吸附量与吸附率的关系;以Langmuir方程拟合得到理论最大吸附量为28.53 mg/g。合成沸石对Cs~+的吸附能力相比原状粉煤灰有显著提高,通过考察离子强度对吸附行为的影响可推测Cs~+与合成沸石形成外层表面络合物。 相似文献
74.
75.
为明确模块面板式加筋土路基在顶面循环荷载作用下的受力变形规律与机制,以延安市某加筋土路基工程为背景,开展动三轴试验,关注不同荷载强度下试样动应力、动应变等多项指标的演化趋势,同时搭建加筋土路基数值模型并完成计算,明确路基水平沉降与面板侧向位移的潜在规律,进而探讨循环荷载作用下加筋土路基工程的动力响应机制。认知如下:在循环荷载的参与下,累积轴向塑性应变随加载次数的增加呈增长趋势,即先快速增大,随后趋缓,最后稳定;塑性应变曲线形态不一,呈“宽胖型”与“陡峻型”并存的态势;Monismith 模型和改进 Monismith 模型均可较好表达累积轴向塑性应变与循环次数的内在联系,但改进 Monismith 模型更为理想,动应力幅值越大,试样变形稳定所需加载次数越多;路基沉降和面板水平变形随着荷载强度的增加而增大,但所据位置较为稳定,其中峰值路基沉降始终处于载荷外侧处,峰值水平变形则位于 0.36~0.43 h 区间。 相似文献
76.
为探讨老化时间对TiO_2纳米颗粒(nanoparticles,NPs)生物有效性的影响,研究了不同老化时间的Ti O_2NPs(0~120 d)对玉米幼苗生长的影响、在玉米体内的吸收及其在植株不同部位的存在位点等。研究发现,不同浓度的TiO_2NPs(1 000 mg·kg~(-1)和2 000 mg·kg~(-1))加入到土壤中,对玉米幼苗干鲜重没有明显的影响,但老化时间小于60 d时,对玉米幼苗株高有一定的抑制效应,老化60 d之后,随着老化时间的继续延长,毒性逐渐降低,最后趋于稳定。老化60 d时,TiO_2NPs处理的玉米幼苗根冠增大,玉米幼苗体内产生H2O_2的累积。在Ti O_2老化土壤中生长的玉米幼苗根系和地上部均有Ti的累积,1 000 mg·kg~(-1)的TiO_2NPs在玉米幼苗根部的生物累积系数达到35.4%,在地上部为13.6%,在玉米植株体内的转运系数为0.38;通过TEM观察,TiO_2NPs可以进入到玉米幼苗体内,并存在于根细胞的细胞质和叶绿体膜上,在叶片细胞的液泡和细胞核中也发现有TiO_2NPs的存在。上述研究结果为客观评价TiO_2NPs的生态风险提供了有用信息。 相似文献
77.
为了研究改性制备核桃壳对石油烃吸附程度,以化学改性制备核桃壳为吸附剂,考察了溶液p H值、时间和温度对改性核桃壳吸附石油烃效果的影响。结果表明:当温度为298 K,p H为7.0,0.2 g改性核桃壳吸附处理100 m L浓度为60 mg/L的柴油溶液,80 min后吸附量最大,可达到12.57 mg/g。该吸附过程符合准二级动力学方程,其相关系数达到0.9999。在3种温度(298,308,318 K)条件下的吸附等温曲线更符合Freundlich模型。通过热力学计算证实,该吸附过程是吸热的、自发的过程,一定程度上的升温有助于石油烃的吸附。 相似文献
78.
Comprehensive health condition assessment on partial sewers in a southern Chinese city based on fuzzy mathematic methods 总被引:1,自引:0,他引:1
Lili GAN Jiane ZUO Yajiao WANG Thong Soon LOW Kaijun WANG 《Frontiers of Environmental Science & Engineering》2014,8(1):144-150
A self-developed sewer health assessment system using the fuzzy comprehensive evaluation and analytical hierarchy process was applied to give a comprehensive health condition evaluation on part of the local sewers in a southern Chinese city based on the sewer video data collected by a sewer inspection closed circuit television (CCTV) robot. Aside from the overall condition evaluation, the structure, function, and stability status of the sewer were also analyzed using the method. A comprehensive index H was proposed to give the overall health condition of pipes with different defects, and Ht, Hs, and If were used to quantify the defects affecting the tightness, stability, and function of the pipe, respectively. Results show that 48% of the inspected pipes were in good condition (0〈H〈0.25), and about 33% of the sewer pipes analyzed were categorized to be at severe or urgent condition levels (H 〉 0.5), although most of the pipes were installed only within five years. Frequent sedimentation affects the function of the sewer, and deformation and joint damage affect the structure of the sewer. 相似文献
79.
80.