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991.
对东北羊草草地土壤-植物间锌含量的动态研究结果表明:土壤中全锌含量较低,有效锌含量中等,植物体不缺锌。在生长季各时期,全锌和有效锌含量在土壤剖面分布从上向下呈下降趋势,有效锌含量与有机质含量呈显著正相关而与pH值呈显著负相关。由于淋溶作用土壤深层含量增加。全锌各月平均含量变化在生长季呈“V”型曲线,7月含量最低;有效锌平均含量从5–8月与全锌相似,8月后则逐渐减少。羊草各器官及枯落物全锌和有效锌含量有很大变化,总的趋势是:根>根茎>叶>茎>枯落物;有效锌含量A层与B层的比值比全锌含量A层与B层的比值高2倍多,这说明A层土壤富集有效锌的能力强。羊草根部富集的锌含量平均为土壤有效锌含量的44.17倍。根部的吸收强度与土壤中锌的活性成显著负相关(r=-0.8800,p<0.01)。图5表1参23。  相似文献   
992.
Conversion of natural secondary broad-leaved forest to Cunninghamia lanceolata plantation is a common management practice in subtropical China. In this study, we compared soil physico-chemical properties, microbial biomass in one natural secondary broad-leaved forest and two C. lanceolata plantation sites to estimate the effects of forest conversion on soil microbial biomass at the Huitong Experimental Station of Forestry Ecology, Chinese Academy of Sciences. Concentrations of soil organic carbon, total nitrogen, NH4^+-N and microbial biomass carbon and nitrogen were much lower under C. lanceolata plantations as compared to natural secondary broad-leaved forest. Soil microbial biomass C in the first and second rotation of C. lanceolata plantations was only 53%, 46% of that in natural secondary broad-leaved forest, and microbial biomass N was 97% and 79%, respectively. The contribution of microbial biomass C to soil organic C was also lower in the plantation sites. However, the contribution of microbial N to total nitrogen and NH4^+-N was greater in the C. lanceolata plantation sites. Therefore, conversion of natural secondary broad-leaved forest to C. lanceolata plantation and continuous planting of C. lanceolata led to the decline in soil microbial biomass and the degradation of forest soil in subtropical China.  相似文献   
993.
A study was conducted to determine the dynamic of Zn content between soil and plant in the natural protection zone of Leymus chinensis grassland in Changling County (44°30′–44°45′N; 123°31′–124°10′E), Jilin Province, China. Results showed that the total Zn content was lower, available Zn content had a moderate level in the soil, and the plants was not lack of Zn. During the growing season, content of total Zn and available Zn in soil showed a down-trend distribution along the soil profile. Content of total Zn had a significantly positive correlation with that of the organic matter, but it was negatively correlated to soil pH. Monthly dynamic of the average content of total Zn showed a “V” type curve in the growing season from May to August, and July was the nadir. The trend of the average content of available Zn was similar to the content of total Zn, but was down after August; Zn content variation in the organs and litter of L. chinensis was great, with the order of root>rhizome >leaf>stem>litter. The ratio of available Zn content in A layer versus B layer was more than 2 times that of the total Zn, which indicated that the soil of A layer had higher enrichment capacity of available Zn. The enrichment of Zn in the root of L. chinensis was 44.17 times as that in the soil. The absorbing intensity of root had a significantly negative correlation with the activity of Zn in the soil (r=−0.8800, p<0.01). Biography: ZHOU Xiao-mei (1966–), female, Ph.D., associate professor of Jilin Normal University, Siping 136000, P.R. China.  相似文献   
994.
A Review of Fine Root Dynamics in Populus Plantations   总被引:1,自引:0,他引:1  
Production of native and hybridized varieties of Populus has received considerable interest in temperate regions as an alternative to agricultural crops and an additional wood source, while acting as a potential carbon (C) sink to offset emissions of fossil fuel-based greenhouse gases. Research of root system dynamics in Populus species is expanding, however, our understanding of the nature and role of fine roots (FR) is incomplete. The study objective, therefore, was to review the literature regarding FR production, mortality and longevity in Populus, and evaluate the magnitude and significance of the FR fraction to C sequestration. FRs, conventionally defined as less than 2 mm in diameter and responsible for water and nutrient uptake, are an essential component of the tree. Populus FRs are relatively short-lived, with reported lifespans ranging from 30 to 300 days, depending on root diameter, tree species and age, and soil environmental factors. Standing FR biomass fluctuates throughout the growing season. Fine root production generally peaks in mid-summer, and ranges between 1.0 and 5.0 mg ha−1 yr−1, while FR mortality has less seasonal amplitude. Production and mortality dynamics in Populus are highly plastic in response to soil environmental conditions, and although opposing conclusions have been proposed, research suggests soil moisture and nitrogen to be most important. Results from the literature indicate annual FR turnover to the soil C pool may be small (0.2–1.6 mg C ha−1 yr−1), but substantial in maintaining or enhancing C levels in natural and managed stands of Populus.  相似文献   
995.
桂西北秃杉人工林土壤肥力变化的研究   总被引:2,自引:0,他引:2       下载免费PDF全文
采用时空互换法,于广西南丹县山口林场选取不同林龄(9、14、20 a)的秃杉人工林作为研究对象,对其土壤物理性质、化学性质和生物化学性质(土壤酶活性)进行研究。结果表明:不同林分年龄土壤性质存在一定的差异,8、14、20 a秃杉人工林表层土壤(0 20 cm)土壤密度分别为0.978、0.914、0.890 g·cm-3,总孔隙度分别为63.10%、65.53 %、66.40%,土壤最大持水量分别为64.55%、71.70%、74.58%。随着林龄的增长,土壤各化学和生物化学指标的变化不尽相同,但林分年龄到20年生时,多数土壤养分和酶活性指标都有所升高,土壤肥力状况得到提高。  相似文献   
996.
采用溶胶-凝胶法,对含水率142%~146%的速生桉树生材进行改性处理,采用电镜SEM、X-射线能谱仪DAX及红外光谱FTIR分析,观察木材微观结构和SiQ分布状态,并检测理化性能.结果表明:浸渍时间不同,改性材中的SiO2含量和分布不同;改性材的增重率最大达45%,气干密度可提高至0.6 g/cm3左右,抗弯强度、硬度及耐光老化性能等均相应提高.  相似文献   
997.
以硅酸钠、硅酸铝、氧化镁和硅烷偶联剂为原料,制备胶合板用硅镁系硅酸盐无机胶黏剂。采用单因素试验和正交试验考察了主要成分用量对胶黏剂的胶合性能的影响,并采用锥形量热分析技术和热重法分别测试其阻燃抑烟性能以及耐热性能。结果表明,当硅酸钠的质量分数为92.5%,硅酸铝的质量分数为4.7%,氧化镁的质量分数为2.8%,硅烷偶联剂的百分比含量为0.6%(相对于硅酸钠的质量而言)时,改性胶黏剂的综合性能最好,其胶合强度达到0.85MPa,阻燃抑烟性能效果显著,热释放总量和热释放速率明显降低。  相似文献   
998.
FRP增强结构用集成材木梁可有效地提升梁体的抗弯强度,FRP与结构用集成材的复合首先要解决的是FRP与木材的胶合问题。本试验对比等离子体处理及羟甲基间苯二酚HMR改性处理工艺对FRP木材界面胶合性能的影响,并用胶层剥离率、剪切强度对胶合性能加以表征。试验结果表明,FRP增强结构用集成材木梁的胶合界面优化处理工艺为:FRP表面不处理,木材表面预先以2.5 m/min的送料速度进行射频功率为400 W的等离子体处理5次,然后以150 g/m2的涂胶量涂布HMR。试材的浸渍剥离率、煮沸剥离率、干剪强度、湿剪强度及木破率均满足结构用集成材国家标准GB/T 26899-2011中关于使用环境3的要求。  相似文献   
999.
在常压下研究了温度、时间、复配阻燃剂质量分数等不同浸渍工艺参数对薄竹单板载药量的影响,测定了不同载药量薄竹胶合板的燃烧和力学性能。结果表明,在温度为60℃,时间为8h,复配阻燃剂质量分数为30%时,单板载药量趋于稳定;单板厚度增加,单板载药量会相应减少。力学性能表明,经过阻燃处理的薄竹胶合板随着载药量的增加,胶合强度有所下降,与未处理试样的胶合强度相比,经载药量为6%,8%,10%和12%阻燃处理的胶合板胶合强度分别下降了16.1%,22.0%,28.0%和35.6%,含水率范围为12.3%~13.2%,胶合强度和含水率均能满足Ⅱ类胶合板的要求。燃烧性能表明,随着载药量的增加,胶合板的点燃时间和残余质量逐渐增加,而总热释放量和总烟释放量逐渐减小,阻燃效果明显。因此,利用常压浸渍工艺生产阻燃薄竹胶合板是可行的。  相似文献   
1000.
采用磷氮硼复合阻燃剂浸渍处理桉木和杨木单板,分别制备5层阻燃胶合板,检测其物理力学性能和阻燃性能.结果表明:阻燃胶合板的胶合强度,均满足GB/T 9846-2004《胶合板》中Ⅱ类要求,抗弯性能满足LY/T 1738-2008《实木复合地板用胶合板》要求;两树种胶合板相比,杨木阻燃胶合板的胶合强度较好,桉木阻燃胶合板的抗弯性能及阻燃性能更优.  相似文献   
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