946 resultados para GREENHOUSE


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Two sets of small scale systems of staged, vertical-flow constructed wetlands (VFCW) were operated in a greenhouse to study the purification of dibutyl phthalate (DBP) in admeasured water. Each system consisted of two chambers in which water flowed downward in chamber I and then upward in chamber 2. The systems were intermittently fed with wastewater under a hydraulic load of 420 mm(.)d(-1). The measured influent concentrations of DBP in the experimental system were 9.84 mg(.)l(-1), while the other system was used as a control and received no DBP. Effluent concentrations of the treated system averaged 5.82 mug(.)l(-1) and were far below the Chinese DBP discharge standard of less than or equal to0.2 mg(.)l(-1). These results indicate the potential purification capacity of this new kind of constructed wetland in removing DBP from a polluted water body.

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The effects of cadmium (Cd2+) on growth status, chlorophyll (Chl) content, photochemical efficiency, and photosynthetic intensity were studied on Canna indica Linn. Plant specimens that were produced from a constructed wetland and precultivated hydroponically in 20 L of 1/10 Hoagland solution under greenhouse conditions for I week were exposed to cadmium in concentrations of 0, 0.4, 0.8, 1.6 and 3.2 mg L- Cd2+, respectively. The results show that leaves were injured in the Cd2+ solution by the third day of exposure and the injury became more serious with an increase in the applied heavy metal. Under 3.2 mg L-1 Cd2+ treatment, growth retardation, the decrease of chlorophyll content from 0.70 to 0.43 mg g(-1) FW, and a decrease in Chl a/b ratio from 2.0 to 1.2 were observed. Chl a was more sensitive than Chl b to Cd2+ stress. The decrease was the same with photochemical efficiency. Photosynthetic intensity decreased by 13.3% from 1.5X10(4) mumol m(-2)s(-1) CO2 in control to 1.3x10(4) mumol m(2)s(-1) CO2 in the treatment of 3.2 mg L-1. Because Canna species are used in heavy metal phytoremediation, these results show that C. indica can tolerate 0.4 to 0.8 mg L-1 Cd2+. Therefore, it is a potential species for phytoremediation of cadmium with some limitations only at higher concentrations.

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Four filamentous cyanobacteria, Microcoleus vaginatus, Phormidium tenue, Scytonema javanicum (Kutz.) and Nostoc sp., and a single-celled green alga, Desmococcus olivaceus, all isolated from Shapotou (Ningxia Hui Autonomous Region of China), were batch cultured and inoculated onto unconsolidated sand in greenhouse and field experiments. Their ability to reduce wind erosion in sands was quantified by using a wind tunnel laboratory. The major factors related to cohesion of algal crusts, such as biomass, species, species combinations, bioactivity, niche, growth phase of algae, moisture, thickness of the crusts, dust accretion (including dust content and manner of dust added) and other cryptogams (lichens, fungi and mosses) were studied. The best of the five species were M. vaginatus and P. tenue, while the best mix was a blend of 80% M. vaginatus and 5% each of P. tenue, S. javanicum, Nostoc sp. and D. olivaceus. The threshold friction velocity was significantly increased by the presence of all of the cyanobacterial species, while the threshold impact velocity was notably increased only by the filamentous species. Thick crusts were less easily eroded than thin crusts, while biomass was more effective than thickness. Dust was incorporated best into Microcoleus crust when added in small amounts over time, and appeared to increase growth of the cyanobacterium as well as strengthen the cohesion of the crust. Microbial crust cohesion was mainly attributed to algal aggregation, while lichens, fungi and mosses affected more the soil structure and physico-chemical properties.

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34-, 17-, 4-, 1.5-year old natural algal crusts were collected from Shapotou Scientific Station of the Chinese Academy of Sciences, 40-day old field and greenhouse artificial algal crusts were in situ developed in the same sandy soil and the same place (37degrees27'N, 104degrees57'E). Their different cohesions both against wind force and pressure were measured respectively by a sandy wind-tunnel experiment and a penetrometer. On the basis of these algal crusts, the cementing mechanism was revealed from many subjects and different levels. The results showed that in the indoor artificial crusts with the weakest cohesion bunchy algal filaments were distributed in the surface of the crusts, produced few extracellular polymers (EPS), the binding capacity of the crusts just accomplished by mechanical bundle of algal filaments. For field crusts, most filaments grew toward the deeper layers of algal crusts, secreted much more EPS, and when organic matter content was more than 2.4 times of chlorophyll a, overmuch organic matter (primarily is EPS) began to gather onto the surface of the crusts and formed an organic layer in the relatively lower micro-area, and this made the crust cohesion increase 2.5 times. When the organic layer adsorbed and intercepted amounts of dusts, soil particles and sand grains scattered down from wind, it changed gradually into an inorganic layer in which inorganic matter dominated, and this made the crusts cohesion further enhanced 2-6 times. For crust-building species Microcoleus vaginatus, 88.5% of EPS were the acidic components, 78% were the acidic proteglycan of 380 kD. The uronic acid content accounted for 8% of proteglycan, and their free carboxyls were important sites of binding with metal cations from surrounding matrix.

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研究灌溉方式对樱桃番茄产量和品质的影响,为番茄栽培过程中合理用水提供理论依据。【方法】采用棚室内小区试验,研究6种灌溉方式(Ⅰ.常规沟灌;Ⅱ.交替沟灌;Ⅲ.固定灌溉种植行;Ⅳ.固定灌溉操作行;Ⅴ.前期采用常规沟灌,结果期采用交替沟灌;Ⅵ.前期采用交替沟灌,结果期采用常规沟灌)对樱桃番茄产量与品质的影响。【结果】不同灌溉方式之间樱桃番茄产量与品质特征值达到极显著差异水平,其中处理Ⅰ和Ⅵ的果形指数、单果质量及产量均极显著高于其他4种处理,果形指数分别为1.22和1.21,平均单果质量高达14.28和14.05g;但处理Ⅱ~Ⅳ的果实糖酸比、VC含量、可溶性固形物含量及干物质含量均极显著高于处理Ⅰ、Ⅵ和Ⅴ,只是造成硝酸盐含量轻度积累。【结论】前期采用交替沟灌,而结果期采用常规沟灌,不仅提高了樱桃番茄的产量与品质,而且还有节水的效果,这种灌溉方式可以在番茄生产中加以推广应用。

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以津优1号黄瓜为试材,设3个土壤相对含水量水平(50%~60%、70%~80%、90%~100%)和2个肥料追施量(600kgN·hm-2和420kgP2O5·hm-2,420kgN.hm-2和294kgP2O5·hm-2)处理,研究了不同水肥供应对日光温室黄瓜土壤养分、酶活性及微生物多样性的影响.结果表明:土壤中NH4+-N含量随施肥量的增加而提高,随土壤相对含水量的增加而降低;水肥供给的增加有利于提高土壤中速效磷含量和蔗糖酶活性;肥料增加使土壤中蛋白酶活性降低,而水分降低使土壤中脲酶活性提高.土壤中微生物多样性与土壤中养分含量无显著相关性,与土壤脲酶活性呈显著正相关,与蔗糖酶活性呈显著负相关.土壤相对含水量70%~80%、氮肥追施量600kgN·hm-2和420kgP2O5.hm-2处理的土壤养分含量、蔗糖酶、磷酸酶和脲酶活性较高,且土壤中微生物多样性和均匀度显著高于其他处理,土壤生产潜力最优.

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以-25 kPa作为土壤水势临界值,将作物—皿系数(Kcp)设为0.2,0.4,0.6,0.8,1.0,1.2六个处理,研究了不同灌溉水量时的番茄产量、品质和灌溉水利用效率。通过经济效益评价,研究了杨凌地区无压灌溉温室番茄获得最高经济效益时的作物—皿系数。通过张力计读数变化规律,研究了利用张力计测量无压灌溉湿润体内土壤水势的特点。研究结果表明,Kcp为0.2~0.8时,灌溉水量的增加对番茄产量影响不大;Kcp为1.0~1.2时,灌溉水量的增加能显著提高番茄产量和果实大小;Kcp为0.2时的灌溉水量能极显著提高番茄的灌溉水利用效率。在综合考虑了杨凌地区水价、番茄使用目的和市场价格波动规律后,Kcp取值1.2能获得最高的经济效益。作物—皿系数法计算灌溉水量时的滞后性特点和张力计埋设位置,是判断利用张力计监测土壤水势临界值方法有效性的两个重要因素。

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根据番茄的生长发育特点,分别以50%、60%、75%田间持水量作为苗期、花期、结果期的土壤水分下限,按照不同的土壤水分上限设置不同的灌水量处理。对番茄不同生育期的灌水量、耗水量、产量、水分利用效率及其关系进行了研究。结果表明,灌水控制上限和下限之间存在交互效应,番茄灌水量、耗水量与其具有显著的正相关性;当灌水控制下限一定时,耗水强度和耗水模数随灌水控制上限的减小呈降低趋势;番茄苗期、花期和结果期的灌水控制上、下限(占田持)分别控制在50%~65%、60%~75%和75%~85%为宜。

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试验研究了在延安日光温室不同前茬作物条件下,黄瓜随着生长季节的变化其产量和品质及土壤呼吸和酶活性的动态变化。结果表明,前茬为豇豆的黄瓜产量和土壤碱性磷酸酶活性较高,前茬为番茄的黄瓜可溶性糖含量和土壤呼吸强度较高,前茬为四季豆的黄瓜维生素C含量较高,前茬为翻青玉米的黄瓜硝酸盐含量和土壤脲酶活性较高,前茬为翻青黑豆的土壤蔗糖酶活性较高。从提高黄瓜产量的角度出发,豇豆-黄瓜是最佳模式,而从改善黄瓜品质的角度出发,番茄-黄瓜和四季豆-黄瓜是最优模式

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通过对黄土高原丘陵沟壑区不同土地利用模式土壤剖面NO-3-N、NH+4-N、有机质和全氮分布的测定,论述黄土高原丘陵沟壑区不同土地利用模式对土壤氮素淋溶的影响,对当地农业发展提出建议。结果表明:在200 cm内土壤NO-3-N最大值都出现在200 cm处,其中日光温室最大为20.36 mg/kg。土壤NH+4-N在200 cm内是较均匀的分布在10~25 mg/kg。不同土地利用模式对土壤剖面土壤NH+4-N、有机质和全氮分布没有影响。随着深度的变化对土壤NH+4-N分布也没有影响。土壤有机质和全氮在土壤剖面的分布是,随着深度的增加而减少,60 cm以下有机质保持在1.07~5.95 g/kg,全氮保持在0.12~0.35 g/kg。根据试验结果得出,土壤氮素淋溶的主要成分是NO-3-N,土壤NO-3-N淋溶程度与降雨、灌溉、施肥量呈正比,在坡地的淋溶较少。

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为研究水肥耦合对陕北日光温室内黄瓜产量和品质的影响,2006年和2007年在安塞日光温室隔水小区内采用完全随机设计,设置了WhFh,WmFh,WlFh,WhFl,WmFl和WlFl共6个处理。结果表明:①不同水肥处理影响了黄瓜品质,但所有处理瓜条NO3--N含量都低于432mg/kg(鲜样),WmFh处理黄瓜可溶性糖、VC和可溶性蛋白质含量都显著高于其它处理;②黄瓜产量随水肥供给增加而增加,水分利用效率总体上与肥料量正相关,与供水量负相关。可得出结论:WmFh处理(田间持水量75%~90%,600kg/hm2N和420kg/hm2P2O5)的水肥能满足黄瓜整个生育期的水分和养分需求,能实现黄瓜的高产、优质、高效生产。

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依据在日光温室条件下的田间试验,研究了水分和氮素水平对豇豆产量和品质的影响,以期筛选较佳水分和氮素控制指标,为豇豆优质高产提供依据。结果表明:同一氮肥处理下,豇豆产量随土壤水分含量增加而显著增加,达到土壤相对含水量(RH)75%~85%时产量最高,豇豆高产较佳的水分和养分组合为:氮肥120 kg/hm2,壤RH为60%~85%。水分对豇豆鲜菜可溶性糖含量影响不明显;在水分充足条件下氮肥能提高豇豆的可溶性糖含量;水分有助于提高豇豆的Vc含量,水分、氮肥适宜豇豆可获得较高的Vc含量。豇豆硝酸盐含随施氮量增加显著增大。在氮素水平为60~120 kg/hm2条件下,水分对豇豆硝酸盐含量影响不明显,在氮素水平为180kg/hm2条件下,水分明显增加豇豆硝酸盐含量。按照蔬菜中硝酸盐含量安全标准,在氮水平为60~120 kg/hm2条件下豇豆的硝酸盐含量均在250 mg/kg以下,达到一级安全标准。氮水平120 kg/hm2是较佳的豇豆安全施肥量。综合考虑水分和氮肥对豇豆安全品质、营养品质以及产量的效应,建议豇豆生产中氮肥用量为120 kg/hm2左右,田间持水量保持在60%~85%。

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为外源5-氨基乙酰丙酸(ALA)在日光温室蔬菜上的应用提供科学依据。【方法】研究了不同浓度ALA处理对日光温室番茄生产的影响。【结果】ALA以及ALA+N叶面施用均明显提高了番茄植株株高、叶绿素相对含量和果实产量,并改善了番茄果实品质;与对照相比,外源ALA各处理植株株高、叶绿素相对含量和单株生物产量均有明显提高,其中D处理(ALA1号肥料第1次2 kg/hm2,第2~4次1 kg/hm2)效果最佳,植株株高、叶绿素相对含量及单株生物产量分别提高27.18%,17.75%和13.93%;外源ALA对番茄果实产量和品质也有明显的提高和改善作用,其中处理B(ALA1号肥料第1次0.5 kg/hm2,第2~4次0.3 kg/hm2)对果实产量效果最明显,处理E(ALA3号肥料第1次2.5 kg/hm2,第2~4次1.5 kg/hm2)对果实品质效果最佳。【结论】处理E(ALA3号肥料第1次2.5 kg/hm2,第2~4次1.5 kg/hm2)既有利于番茄生长发育,又能增加产量并改善品质,为最佳的ALA施用量及方法。

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收集长白山地区15个气象站1953-2007年气温、降水、蒸发、日照时数和水汽压观测数据和国家气候中心整理的2001-2099年的 气温、降水预估资料,利用数理统计方法,系统分析长白山地区气候现状、变化及其预估,为气候变化对人类生存环境影响研究并制定适应对策提供依据。主要结论如下: 1.长白山地区气温、降水日数、日照时数和不同界限温度(≥0℃、≥5℃、≥10℃和<0℃)积温均有显著趋势。年极端最低、年平均、平均最高/最低气温和气温日/年较差在1984、1992、1995、1985、1972和1979年发生突变。所有最高/最低气温与日照百分率有显著负相关关系,一定程度是温室效应结果;最高、最低气温变化不同步造成气温日较差和年较差的非对称性。 2.长白山地区生长季节合计降水量和降水强度日际变化较大。降水以7月30日为界,呈现前升后降极显著的线性趋势,且发生均值突变。降水强度以6月27日和9月3日为分界点,分为三个阶段。降水集中度、集中期和集中时段时空非均一性分布明显。 3.在SRES A1B、SRES A2和SRES B1三种情景下年平均气温均为上升趋势,年内变化一致为冬季升温最迅速,夏季则相对缓慢;而年降水强度总体增加,年内变化比较一致:冬季增加最为明显,而夏季变化不大。 4.未来长白山地区各站≥0℃、≥5℃和≥10℃的积温均有不同程度增加,持续时间延长。负积温增加,持续时间缩短,开始日期推迟,而结束时间提前。

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依据土壤水分动力学理论和地下滴灌土壤水分运动特征,在测定地下滴灌滴头出流特性、土壤水分运动参数、地表蒸发强度的基础上,引入作物根系吸水模型,建立了地下滴灌土壤水分运动数值模型,用有限单元法中的Galerkin法对模型进行数值求解,田间验证结果表明模型具有较高的精度。 研究发现,地下滴灌滴头流速随供水压力的增大而增加,呈幂函数关系;不同埋深对滴头流速基本无影响;而土壤初始含水量只在灌水开始时对滴头流速有一定影响,最终滴头流速趋于相同且稳定;地下滴灌滴头流速主要受供水压力和滴头孔径的影响。 运用matlab数值分析软件对土壤持水曲线的van Genuchten模型进行求参,所求VG模型计算的不同水势下土壤含水量计算值与田间实测值之间偏差较小,曲线回归模型相关指数高达0.95,能很好地表征土壤水分特征曲线。 建立了地下滴灌土壤水分运动数值模型,确定地下滴灌条件下具体模型应用的边界和初始条件,利用HYDRUS-2D软件进行有限元求解。运行结果表明所建立的数学模型和所采用的数值方法能够较好地模拟地下滴灌条件下土壤水分运动过程。 采用量纲分析法推导了日光温室地下滴灌条件下的土壤湿润模式模型,建立了湿润宽度和湿润深度的经验公式,与实际监测结果对比,土壤湿润宽度和湿润深度模型估计值与实测之间偏差较小,能准确的模拟地下滴灌条件下土壤湿润体的宽度和深度。