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981.
982.
Renyan Duan Chao Wang Xiao-an Wang Zhihong Zhu Hua Guo 《Russian Journal of Ecology》2009,40(7):501-509
We compared differences in plant species diversity between conifer (Pinus tabulaeformis) plantations and natural secondary forests in the middle of the Loess plateau. The goal of the study was to examine the differences
in the effect of stand development on species diversity and in species responses to changes between forest types and between
forest layers. To clarify the effects of differences in forest management, we emphasized the functional types of plant species
occurring in each forest type. The result as follow: (1) The H′ and S of tree layer were significantly lower in natural conifer forest than old conifer and secondary forest, but were not different
compared with mid aged conifer forest. The H′ and S of shrub layer were significantly lower in mid aged conifer forest compared with other forest types. The H′ of herb layer showed no significant differences in the four forest types. The evenness index (J′) of tree layer of mid aged conifer forest was lower than other forest communities and its J′ of shrub layer was highest although its richness of shrub layer was lower than in the other forest types. (2) The analysis
of β diversity index also indicated large differences between conifer plantations and natural forests. Although the tree layer
species were similar in old plantation and natural conifer forests, they differed greatly between the natural conifer and
secondary forests. The natural conifer and secondary forest species composition in shrub layer differed significantly from
those in plantation and secondary plots. Tree species were significantly less common in plantations than in abandoned coppice
forests. Species composition in the herb layer of different forest types was similar. (3) The management of P. tabulaeformis plantations alters plant species composition considerably; the number of sub tall-tree species is increased in old aged conifer
forest, especially species dispersed by animals. Plantation management appears to affect ecological processes through seed
dispersal. From the perspective of management, the change in the structure and composition of the canopy in plantations could
affect the behavior of dispersers and regeneration. 相似文献
983.
采用中温焙烧/钠化氧化法从电镀污泥中回收铬.结果表明,影响铬浸出率的最主要因素为焙烧温度.电镀污泥与碳酸钠质量比、焙烧时间、水浸时间对铬浸出率的影响较接近,在水浸水固比为10.0 ; 1.0(质量比)、室温、焙烧温度为650℃、焙烧时间为2.0h、电镀污泥与碳酸钠质量比为1:1、水浸时间为60 min的最佳浸出条件下,铬浸出率为99.3%;去除氢氧化铝、氢氧化锌的最佳反应温度和pH分别为90~95℃和7.5;去除硫酸钠晶体的最佳pH为4.0,在最佳试验条件下,铬回收率为90.57%. 相似文献
984.
生物接触氧化/超滤/反渗透法处理稠油污水试验研究 总被引:1,自引:0,他引:1
采用生物接触氧化/超滤/反渗透工艺,对陈家庄稠油污水进行了深度处理回用注汽锅炉给水试验研究.试验结果表明,进水含油量为8.1~67.0 mg/L,浊度为35~120 NTU,矿化度为10 454~11 354 mg/L时,生物接触氧化/超滤出水含油量为<0.8 mg/L,浊度为<0.5 NTU,污染密度指数(SDI)<3,各项指标满足反渗透进水要求.反渗透出水矿化度<950 mg/L,出水各项指标优于高压注汽锅炉进水指标. 相似文献
985.
986.
有机磷降解酶的固定化及其工业化应用初探 总被引:3,自引:0,他引:3
采用一种新型的酶固定化方法,在大孔微球中对有机磷降解酶(OPHC2)固定化,制备固相载体化的交联酶聚集体固定化酶。对具有实际应用意义的参数:热稳定性、牢固度和连续反应批次进行了重点研究。结果表明,有机磷降解酶固定化酶的半衰期在70℃时比游离酶提高了2.1倍。固定化酶分别在37℃的摇床中经14 h高速振荡,以及在pH 8、37℃条件下循环反应49个批次降解甲基对硫磷后,均未发现固定化酶酶活力下降。在37℃,有机磷降解酶固定化酶柱以每小时3倍柱床体积的速率对甲基对硫磷农药乳油的稀释液(甲基对硫磷含量为216 mg/L)进行降解处理,系统连续工作156 h,甲基对硫磷的降解率保持在98.4%~99.9%。 相似文献
987.
镉胁迫对向日葵幼苗生长和生理特性的影响 总被引:7,自引:0,他引:7
采用溶液培养方法,研究了不同浓度镉(0、0.05、0.1、0.5和1 mg/L)处理7 d对向日葵幼苗生长和生理特性的影响。结果表明:随着镉处理浓度的增加,向日葵幼苗对镉的吸收显著增加。1 mg/L镉浓度处理时,叶、茎和根中镉浓度分别为0.05 mg/L镉处理时的16.3、19.2和581倍;根中积累的镉含量明显高于叶和茎, 各浓度根部积累的镉分别为叶和茎的37.8~63倍和29.4~41倍。镉胁迫显著抑制向日葵幼苗生长和叶绿素合成,当镉浓度达1 mg/L时,整株植物生物量和总叶绿素含量分别为对照的55.9%和52.6%。镉胁迫下向日葵幼苗游离脯氨酸和丙二醛(MDA)含量显著增加,1 mg/L镉浓度时,根中含量分别为对照的4和5.8倍。向日葵幼苗可溶性蛋白含量和过氧化物酶(POD)活性变化与镉胁迫浓度呈明显的倒U字型关系,可溶性蛋白含量在0.05 mg/L镉浓度时达到最大值,叶、茎、根中的POD活性分别在0.1、0.1和0.05 mg/L镉浓度时达到最大值。 相似文献
988.
采用延长边沟闷曝时间的方法对BOD降解模式T型氧化沟进行提高脱氮效率的改造。结果表明,边沟闷曝时间由0.5 h增至1 h,系统反硝化和硝化运行时间比tDN/tN由0.56调整至0.50时,提高了系统的NH3-N的硝化效率,强化了脱氮能力。工艺改造后出水NH3-N浓度由改造前15.5 mg/L显著降低至10.4 mg/L,达到了广东省地方标准(DB 44/26-2001)第一时段的二级排放要求;系统脱氮效率由改造前52.1%显著提高到68.3%,有效地解决了污水厂出水NH3-N浓度过高的问题;具有投资少、效果明显的特点,有一定的推广价值。 相似文献
989.
Poplar plantation has the potential to alter the water balance in semiarid Inner Mongolia 总被引:2,自引:0,他引:2
Burkhard Wilske Nan Lu Long Wei Shiping Chen Tonggang Zha Chenfeng Liu Wenting Xu Asko Noormets Jianhui Huang Yafen Wei Jun Chen Zhiqiang Zhang Jian Ni Ge Sun Kirk Guo Steve McNulty Ranjeet John Xingguo Han Guanghui Lin Jiquan Chen 《Journal of environmental management》2009
Poplar plantation is the most dominant broadleaf forest type in northern China. Since the mid-1990s plantation was intensified to combat desertification along China's northwestern border, i.e., within Inner Mongolia (IM). This evoked much concern regarding the ecological and environmental effects on areas that naturally grow grass or shrub vegetation. To highlight potential consequences of large-scale poplar plantations on the water budget within semiarid IM, we compared the growing season water balance (evapotranspiration (ET) and precipitation (PPT)) of a 3-yr old poplar plantation (Kp3) and a natural shrubland (Ks) in the Kubuqi Desert in western IM, and a 6-yr old poplar plantation (Bp6) growing under sub-humid climate near Beijing. The results showed that, despite 33% lower PPT at Kp3, ET was 2% higher at Kp3 (228 mm) as compared with Ks (223 mm) in May–September 2006. The difference derived mainly from higher ET at the plantation during drier periods of the growing season, which also indicated that the poplars must have partly transpired groundwater. Estimated growing season ET at Bp6 was about 550 mm and more than 100% higher than at Kp3. It is estimated that increases in leaf area index and net radiation at Kp3 provide future potential for the poplars in Kubuqi to exceed the present ET and ET of the natural shrubland by 100–200%. These increases in ET are only possible through the permanent use of groundwater either directly by the trees or through increased irrigation. This may significantly change the water balance in the area (e.g., high ET at the cost of a reduction in the water table), which renders large-scale plantations a questionable tool in sustainable arid-land management. 相似文献
990.