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171.
在开放式空气O3浓度增加(FACE)平台下,采用盆栽试验,初步研究了O3浓度升高后麦田重金属Cu的生物有效性变化以及对各生长阶段小麦叶片生理毒性的影响。结果表明,在FACE条件下,小麦地上部对Cu的吸收相比于正常大气对应组有增加的现象;与正常大气对应组相比,FACE条件下土壤中有效态Cu的含量也有所增加;随着小麦的生长发育,FACE圈小麦叶片内的MDA含量总体呈上升趋势,O3升高铜污染组的小麦叶片内MDA的含量最高;与正常大气对照组相比,O3升高铜污染组的小麦叶片SOD酶和POD酶比较敏感,在分蘖期其活性受到诱导,但随着暴露时间的增加,抗氧化系统的各个酶的活性逐渐受到抑制。O3加剧了Cu对小麦的牛理胁迫.增加了Cu的牛物有效性。 相似文献
172.
Commercial grade zinc (Zn) sulfate hepta hydrate (ZnSHH) is the most widely used source of Zn in India and several other countries for amelioration of Zn deficiency in crops. However, it releases water of hydration at temperature above 30°C and forms lumps on storage, which make it difficult to handle it and apply in fields. Therefore, conditioning of ZnSHH with ZnO and neem oil reduces the release of water of hydration and prevents lumps formation and can be well stored. Field experiments were conducted at the research farm of the Indian Agricultural Research Institute, New Delhi, India during rice growing seasons (July-November) of 2009 and 2010 to study the effect of conditioning ZnSHH with ZnO and neem oil on growth, productivity and Zn fortification of rice (Oryza sativa) grain and uptake by Basmati rice ‘Pusa 1121’. The experiment was conducted in a randomized block design with 3 replications comprised of 9 treatments of Zn fertilization. The present study shows that when conditioned with 2% ZnO and 4% neem oil ZnSHH improved yield attributes, grain and straw yields, Zn uptake and partial factor productivity (PFP), agronomic efficiency (AE), recovery efficiency (RE), and physiological efficiency (PE) of Zn in Basmati rice ‘Pusa 1121’. In general, ZnO was inferior to ZnSHH. Application of ZnSHH conditioned with 2% ZnO and 4% neem oil can be a better source of Zn for transplanted puddled Basmati rice on Zn deficient soils. 相似文献
173.
陆地棉功能叶不同生育时期酶活性及脂质过氧化作用的研究 总被引:5,自引:0,他引:5
对不同熟性棉花品种功能叶几种酶活性及脂质过氧化水平(以丙二醛含量表示)的研究结果表明,超氧物歧化酶(SOD)活性在吐絮前呈波动上升,吐絮盛期争剧下降;丙二醛(MDA)含量吐絮前缓慢上升,吐絮后明显增加;过氧化氢酶(CAT)活性在结铃以前随叶片发育而上升,结铃后急剧下降;过氧化物酶(POD)活性始终呈上升趋势。进一步对POD同工酶进行电泳发现,其酶谱构成随生育进程而变化,早熟品种在开花期酶带条数最多 相似文献
174.
175.
以羊栖菜粉为吸附剂,研究羊栖菜粉对水溶液中Cu2+的吸附特性及吸附机理,考察羊栖菜对重金属铜的吸附能力,以扩展羊栖菜的综合利用范围。采用控制变量法考察pH值、吸附剂浓度、金属离子初始浓度和离子强度等环境因素对水溶液中Cu2+去除效果的影响,通过模拟吸附动力学和热力学试验考察羊栖菜粉对Cu2+的吸附特性,并采用SEM、FTIR等方法初步分析了羊栖菜粉对Cu2+的吸附机理。结果表明,在吸附温度35℃、初始浓度50 mg·L-1、吸附剂浓度1 g·L-1条件下,羊栖菜粉对Cu2+的去除率可达89.27%。当吸附时间为10 min时,Cu2+去除率达总去除率的90%以上;当吸附时间为60 min时,基本达到吸附平衡。羊栖菜粉吸附Cu2+的动力学数据符合准二级动力学模型,相关系数均在0.999 0以上。Langmuir可以很好地拟合热力学试验得到的平衡数据,理论最大吸附容量为71.17 mg·g-1。羊栖菜粉对Cu2+的吸附有多种反应参与,参与络合反应的官能团主要有-OH、-NH、-COO-。羊栖菜粉对Cu2+的去除率较高,吸附性能良好,可通过解吸实现吸附剂的再生。 相似文献
176.
177.
Planting trees to stabilize metalliferous mine tailings is a widely used form of land reclamation although substantial soil amendment is invariably required, both to improve the physico-chemical status of the tailings and to ameliorate toxicity prior to planting. Here, we report a glasshouse study of the combined effects of burrowing earthworms (Pheretima guillelmi) and arbuscular mycorrhizal fungi (Glomus spp., AMF) on establishment of a naturally invasive, woody, nitrogen-fixing legume, Leucaena leucocephala, on topsoil-amended Pb/Zn mine tailings. AMF provided the most effective preliminary inoculant, improving N, P and K uptake, but earthworms had more influence improving N nutrition. In most cases, the combined effects of AMF and earthworms were additive and proved to be beneficial to plant growth, plant nutrition and for protection against uptake of toxic metals. AMF influenced metal uptake more than earthworms, but together they reduced mobility of Pb and Zn in soil by as much as 25%. Some minor but significant negative interactions were also evident; for example, earthworms enhanced soil microbial activity but inhibited the beneficial effects of AMF on N2-fixation. We argue that increased attention to ecological interactions in soil could reduce costs and improve the efficacy of restoring a vegetation cover to land impacted by contaminated spoils. 相似文献
178.
Mahdi Najafi Ghiri Mahrooz Rezaei Abdolmajid Sameni 《Archives of Agronomy and Soil Science》2013,59(9):945-957
Zinc sorption–desorption by sand, silt and clay fractions of six representative calcareous soils of Iran were measured. Sand, silt and clay particles were fractionated after dispersion of soils with an ultrasonic probe. Zinc sorption analysis was performed by adding eight rates of Zn from 6 to 120 μmol g?1. For the desorption experiment, samples retained after the measurement of Zn sorption were resuspended sequentially in 0.01 M NaNO3 solution and shaken for 24 h. Results indicated that Zn sorption by soil fractions increased in the order clay > silt > sand, and correlated negatively with CaCO3 content and positively with cation exchange capacity (CEC) and smectite content. Results indicated that for all fractions, the Langmuir equation described the sorption rates fairly well. In contrast to sorption, Zn desorption from soil fractions increased in the order sand > silt > clay, and correlated positively with CaCO3 content, CEC and smectite content. Results showed that parabolic diffusion and two constant equations adequately described the reaction rates of Zn desorption. In general, for all soils studied, the coarser the particle size, the less Zn sorption and more Zn desorption, and this reflects much higher risk of Zn leaching into groundwater or plant uptake in contaminated soils. 相似文献
179.
Lars A. Knechtenhofer Irene O. Xifra Andreas C. Scheinost Hannes Flühler Ruben Kretzschmar 《植物养料与土壤学杂志》2003,166(1):84-92
To assess the mobility of Pb and associated metals in a highly contaminated shooting range soil (Losone, Ticino, Switzerland), we investigated the spatial distribution of the metals and their relation to preferential water flow paths. A 2.2 m2 plot located 40 m behind the stop butt was irrigated with a solution containing bromide and Brilliant Blue, a slightly sorbing dye. A soil profile 50 cm in width was sampled down to 80 cm with a spatial resolution of 2.5 cm, resulting in 626 samples. Concentrations of elements (12 ≤ Z ≤ 92) were determined by energy‐dispersive Xray fluorescence spectrometry, and Brilliant Blue concentrations were determined with a chromameter. In the acidic (pH 3), organic matter‐rich, well drained Dystric Cambisol, maximum concentrations of 80.9 g kg‐1 Pb, 4.0 g kg‐1 Sb, and 0.55 g kg‐1 Cu were measured in the topsoil. Within 40 cm soil depth, however, Pb, Sb, and Cu approached background concentrations of 23 mg kg‐1, 0.4 mg kg‐1, and 9.4 mg kg‐1, respectively. The even horizontal distribution and the steep gradient along soil depth indicate tight metal binding in the topsoil, and a fairly homogeneous transport front. In contrast, water flow through the profile was highly heterogeneous. In the uppermost 20 cm, preferential flow was initiated by heterogeneous infiltration at the soil surface, but had no influence on metal distribution. Below 20 cm, however, preferential flow originated from larger tree roots, and metal concentrations were significantly elevated along these macropores. Spatial distributions of Pb, Sb, and Cu were similar, suggesting that all three metals are strongly retained in the topsoil and transported along preferential water flow paths in the subsoil. 相似文献
180.
Nutrient concentrations in the soil and crop uptake from incorporated green manure and urea in flooded rice was studied in
field experiments. Release of plant-available nitrogen (NH4
+-N) from green manure was slightly delayed compared with that from prilled urea (PU) because Sesbania rostrata L. and Aeschynomene afraspera L. released the N gradually after their decomposition, whereas N became available immediately after PU application. Exchangeable
NH4
+-N concentration in soil peaked at 163 mg kg–1 in the transplanted rice (TPR) and 198 mg kg—1 in broadcast-seeded rice (BSR) at 0 and 1 week after PU application. Broadcast-seeded rice depleted NH4
+-N faster than did TPR because of the crop‘s vigorous growth in the former during the early stage. Soil solution NH4
+-N followed a similar trend to that of soil NH4
+-N. Incorporation of S. rostrata and A. afraspera increased the concentration of P, K+, Fe2+ and Mn2+ in soil solution more than did the application of PU. However, zinc concentration decreased in all treatments. Both PU and
green manure increased the N status of the rice plants and enhanced the uptake of P, K, Fe, Mn and Zn by the rice crop. This
suggests that application of green manures improves the uptake of these nutrients by the crop. The highest apparent N recovery
was obtained with PU followed by green manure.
Received: 11 November 1996 相似文献