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51.
咸水冻融灌溉对重度盐渍土壤水盐分布的影响   总被引:6,自引:2,他引:6  
张越  杨劲松  姚荣江 《土壤学报》2016,53(2):388-400
室内咸水冰融化试验设置2个处理:7.5 g L-1咸水冰(SIW(7.5))、15 g L-1咸水冰(SIW(15)),探究了咸水冰融化过程中的水量、水质以及离子组成的变化;土柱模拟试验设置同一灌水量(150mm),4个处理:淡水直接灌溉(FW)、7.5 g L-1咸水直接灌溉(SW)、7.5 g L-1咸水冻融灌溉(SIW(7.5))、15 g L-1咸水冻融灌溉(SIW(15)),对比分析两种灌溉水质(淡水、咸水)和两种灌水方式(直接灌溉、结冰灌溉)对土壤(粉砂壤土)水盐动态的影响。结果表明:咸水冰融化过程中,初期融出水量较大,但含盐量和钠吸附比(SAR)较高,后期融出水量较小,含盐量和SAR很低;融出水的离子含量变化与电导率(EC)变化表现相同的趋势;小于3 g L-1的水的融出率分别是SIW(7.5)=25.46%和SIW(15)=32.78%。FW处理下,土壤中水盐运动持续时间较其他3个处理长,土壤导水率降低最快,灌溉水入渗完成时表层土壤含水量达到33.88%,显著高于其他处理。四种处理下,0~15 cm土层土壤的含盐量平均值分别为FW=2.32 g kg-1、SIW(7.5)=2.80 g kg-1、SIW(15)=3.87 g kg-1、SW=4.31 g kg-1。同等灌水量下,SIW(15)处理下土壤脱盐深度最浅。离子分析表明:FW和SIW(7.5)处理下,0~25 cm土壤的钠吸附比(SAR)下降明显,显著小于SW、SIW(15);然而FW处理下,土壤碱化特征最为明显。综合而言,在淡水资源缺乏而咸水资源相对丰富的地区,中度矿化度咸水结冰融水灌溉可以有效降低根层土壤盐分,满足农业生产的要求。  相似文献   
52.
海藻酸钠固定化细菌对毒死蜱的降解特性   总被引:2,自引:0,他引:2  
毒死蜱的生产和使用日趋广泛,由其造成的环境污染和危害不容忽视。微生物是影响有机磷农药在环境中降解的最主要因素,也被认为是降解有机磷农药最可靠而高效的途径。固定化技术是提高微生物降解农药效率的有效方法之一。本研究以海藻酸钠为载体,采用注射器滴定法将蜡状芽孢杆菌(Bacillus cer-eus)HY-1用海藻酸钠溶胶包埋,研究了反应时间、固定化菌接入量、pH和毒死蜱初始浓度对毒死蜱降解的影响以及固定化菌的重复使用效果。结果表明:海藻酸钠固定化菌能够高效降解基础培养基中的毒死蜱,制备固定化小球海藻酸钠溶胶的最适浓度为2.5%(w/v),小球的平均粒径为3 mm。在培养时间为60 h时,固定化菌对100 mg·L-1毒死蜱的降解率达到最大。固定化小球接入量为160 g·L-1时,对100 mg·L-1毒死蜱的降解率最高。固定化菌对毒死蜱的降解有着较宽泛的pH适应范围,碱性环境更有利于其对毒死蜱的有效降解。当毒死蜱初始浓度为80 mg·L-1和100 mg·L-1时,固定化菌对毒死蜱的降解率较高,达90%左右。固定化菌可重复利用降解毒死蜱,当利用4次后,固定化小球虽已发生崩解,但对100 mg·L-1毒死蜱的降解率仍高达47%。因此,海藻酸钠固定化蜡状芽孢杆菌对水体中毒死蜱的降解率较高,环境适应性较强,固定化菌可在毒死蜱污染的净化去毒方面发挥重要作用。  相似文献   
53.
Agroforestry systems have the potential to increase sequestration of atmospheric carbon dioxide (CO2) as soil organic carbon (SOC) because of the increased rates of organic matter addition and retention. However, few studies have characterized the relative stability of sequestered SOC in soil. We characterized SOC storage in aggregate size and chemical stability classes to estimate the relative stability of SOC pools after the addition of Leucaena-KX2 pruning residues (mulch) from 2006 to 2008 in a shaded coffee agroforestry system in Hawaii. Soil samples were separated by microaggregate isolation, density flotation and dispersion, and acid hydrolysis, resulting in five distinct fractions that differed in relative stability: coarse particulate organic matter (POM), fine POM, microaggregate-protected POM, silt + clay hydrolyzable soil organic matter (SOM), and silt + clay non-hydrolyzable SOM. With mulch addition, the fine POM fraction increased. There was also a shift in the proportion of SOC to more stable silt + clay fractions. In the absence of mulch there was no significant change in SOC fractions. Given that the turnover time of SOC in silt + clay fractions is on the order of decades to centuries, the potential benefits of active shade management and mulching compensate for the loss of C sequestration in tree biomass from pollarding.  相似文献   
54.
为研究冻融-盐浸环境下风积沙粉体混凝土的微观特性,设计了强度等级为C35、C25的风积沙粉体混凝土,在浓度为0%、3%、6%硫酸镁溶液中采用快冻法进行抗冻性试验,同时借助核磁共振技术、场发射扫描电镜及能谱分析研究其孔隙特征、微观形貌及水化产物。结果表明,风积沙粉体的掺入显著提高混凝土的抗冻性,且适当提高强度等级,有利于提高风积沙粉体混凝土抗冻性,其中强度等级为C35的风积沙粉体混凝土在6%MgSO_4溶液中可承受高达425次冻融循环;相对于基准组,风积沙粉体混凝土中有发育状况良好的针柱状产物钙矾石、纤维状产物石膏生成,填充因冻胀应力作用产生的裂隙,使其内部有害及多害孔数量低于普通混凝土29.78%,抗冻性增强。  相似文献   
55.
Cadmium(Cd) is highly toxic to plants, animals, and humans. Limited information is available on the role of nitric oxide(NO)and/or 24-epibrassinolide(EBR) in response of plants to Cd stress. In this study, a hydroponic experiment was performed to investigate the effects of NO and/or EBR on peanut plants subjected to Cd stress(200 μmol L~(-1)) with sodium nitroprusside(SNP, an exogenous NO donor)(250 μmol L~(-1)) and/or EBR(0.1 μmol L~(-1)) addition. The results showed that Cd exposure inhibited plant growth, and this stress was alleviated by exogenous NO or EBR, and especially the combination of the two. Treatment with Cd inhibited the growth of peanut seedlings, decreased chlorophyll content, and significantly increased the Cd concentration in plants. Furthermore, the concentration of reactive oxygen species(ROS) markedly increased in peanut seedlings under Cd stress, resulting in the accumulation of malondialdehyde(MDA) and proline in leaves and roots. Under Cd stress, applications of SNP, EBR, and especially the two in combination significantly reduced the translocation of Cd from roots to leaves, increased the chlorophyll content, decreased the concentrations of ROS, MDA, and proline, and significantly enhanced the activities of superoxide dismutase(SOD), peroxidase(POD), and catalase(CAT) in peanut seedlings. Exogenous NO and/or EBR also stimulated the activities of nitrate reductase(NR)and nitric oxide synthase(NOS) and increased the contents of antioxidants, such as ascorbic acid(AsA) and reduced glutathione(GSH). Furthermore, exogenous NO and/or EBR enhanced Cd accumulation in the cell wall and thus decreased Cd distribution in the organelles in the roots. The concentrations of calcium(Ca), iron(Fe), magnesium(Mg), and zinc(Zn) were also regulated by exogenous NO or EBR, and especially by the two in combination. These results indicated that SNP and EBR, alone and particularly in combination, can mitigate the negative effects of Cd stress in peanut plants.  相似文献   
56.
The effect that different levels of molybdenum (11 μMand 111 μM) exert on nitrate reductase (E.C. 1.6.6.1–3) activity (NRA), and the content of total proteins in Nicotiana rustica was studied. Eleven μM and 111 μM of molybdenum increased the activity of nitrate reductase during the growth cycle of N. rustica. Likewise, total protein content (mg/g DW) was increased during the vegetative growth of the plants.  相似文献   
57.
采用溶液培养方法,研究了外源NO供体硝普钠(sodium nitroprusside,SNP)对NaHCO3胁迫下黄瓜幼苗的缓解效应。结果表明,100μmol/L SNP能有效减轻30 mmol/L NaHCO3对黄瓜植株地上部和地下部生长的抑制,提高了NaHCO3胁迫下黄瓜叶片叶绿素和类胡萝卜素含量、净光合速率(Pn)以及荧光参数Fv/Fm和ΦPSⅡ。HaHCO3胁迫显著抑制了氮代谢相关酶硝酸还原酶(NR)、谷氨酰胺合成酶(GS)和谷氨酸合成酶(GOGAT)的活性;外加SNP处理明显缓解了NaHCO3对它们活性的抑制。  相似文献   
58.
羧甲基纤维素钠对壤砂土水分运动及水力参数的影响   总被引:1,自引:0,他引:1  
科学使用羧甲基纤维素钠(CMC)实现保水控盐对于滨海壤砂盐碱土改良具有重要意义,而明晰CMC对滨海壤砂土水分运动规律的影响是科学使用CMC的重要基础。为研究施加CMC滨海壤砂土水分运动规律,本文通过开展一维垂直土柱积水入渗试验,探索不同CMC施量(0、0.1、0.2、0.4、0.6 g?kg-1) 对壤砂土入渗特性、水分分布和土壤水力参数的影响。结果表明,施用CMC土壤的最终累积入渗量增加了4.90%~15.17%、达到预设湿润锋深度的入渗时间增加了61.90%~604.73%;Philip入渗模型参数吸渗率S和Green-Ampt模型参数KsSf均随CMC施量的增加而减少,吸渗率S和平均土壤水扩散率与CMC施量之间的数学关系分别可用二次多项式和指数函数来表示;CMC增强了土壤的持水能力,土壤剖面含水量提高了0.72%~3.74%;CMC通过改变土壤结构影响了土壤水力参数,滞留含水率θr、饱和含水率θs及进气吸力倒数α均与CMC施量呈正相关关系,而与饱和导水率Ks和形状系数n呈反比关系。通过对变异系数CV的分析发现,CMC对饱和导水率Ks和进气吸力倒数α影响表现为中等差异,对滞留含水率θr、饱和含水率θs和形状系数n表现为弱差异。研究结果揭示了CMC对滨海壤砂土减渗保水的内在机理,为滨海盐碱地的改良提供了理论参考。  相似文献   
59.
The physiology of NaCl induced stress was studied in two prop species, cowpea and 4 cultivars of tobacco one of which (Jayashree) is salt sensitive. It was found that the growth of all the cvs of tobacco was reduced by the presence of NaCl (100 mH) in the nutrient medium. While the fresh wt per unit area of the leaves of salt‐tolerant tobacco cv. I and PV‐7 (Nicotiana tabacum L.) and MPS‐219 (N. rustica L.) was increased’ significantly, it was decreased in the salt‐sensitive Jayashree. The dry wt per unit leaf area was decreased much more in I, PV‐7 and J than in NPS‐219. The total chlorophyll was reduced in all and more so in Jayashree.

The relative turgidity % was found to decrease in the primary leaves of cowpea (Vigna unguiculata L.) in the first 6 days of treatment with 100 mM NaCl in the nutrient medium while the decrease was less significant in the first and and second trifoliate leaves, showing that there was readjustment with growth of the plant to salinity. The 14C fixation in the leaf disks of cowpea grown in NaCl was much less than in the control plants. The studies reveal that there is a general reduction in the growth of both tobacco and cowpea following NaCl treatment and this effect is due to a decrease in the total chlorophyll and a reduced rate of photosynthesis.  相似文献   
60.
季铵盐类消毒剂的质量检测   总被引:1,自引:0,他引:1  
对季铵盐类消毒剂进行定性定量检测以获取其质量信息。定性检测采取紫外分光光度法,定量检测采取两相滴定法。结果表明:除原料外的其他六种产品,中五种季铵盐含量达标。可见市场上流通的季铵盐类消毒剂存在不合格产品。  相似文献   
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