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41.
42.
以冷砂黄泥和矿子黄泥为研究对象,猪粪沼渣为有机物料,分别添加0%、5%、7.5%和10%质量分数的蒙脱石,采用室内培养试验研究了蒙脱石对施有机物料土壤pH、磷形态和有效性的影响.结果表明,有机物料对两种土壤pH无显著影响,而蒙脱石使土壤pH显著提高.施加有机物料使两种土壤铝结合态磷(Al-P)含量和分布比例提高,铁结合态磷(Fe-P)含量培养后期提高、比例略有下降,闭蓄态磷(O-P)含量无明显变化、比例下降.有机物料对冷砂黄泥中钙结合态磷(Ca-P)的含量无明显影响、比例下降,却使矿子黄泥Ca-P含量和比例提高.在施加有机物料基础上添加蒙脱石后,冷砂黄泥Al-P和O-P含量和比例下降,Fe-P含量无明显变化、比例下降,Ca-P含量和比例大幅度提高;矿子黄泥Fe-P和O-P含量和比例下降,Al-P含量无明显变化、比例下降,Ca-P含量和比例大幅度提高.培养过程中,有机物料使冷砂黄泥和矿子黄泥有效磷含量分别提高了17.9%~38.0%和17.1%~33.7%,土壤磷的活化系数也显著提高,添加蒙脱石后使两种土壤有效磷含量分别降低8.8%~35.5%和1.1%~11.6%.相关分析结果表明,蒙脱石通过提高pH和Ca-P含量、降低Al-P含量降低冷砂黄泥磷的有效性,通过提高pH、降低Fe-P含量降低矿子黄泥磷的有效性,对冷砂黄泥磷有效性的影响较矿子黄泥大. 相似文献
43.
有机无机缓释复合肥对不同土壤微生物群落结构的影响 总被引:5,自引:4,他引:1
缓控释肥料作为一类新型肥料已成为近年来的研究热点,但对土壤微生物群落多样性影响规律的研究甚少.研究采用磷脂脂肪酸法分析缓释复合肥(SRF)、化肥(CF)和普通复合肥(CCF)分别施入酸性土和微碱性土恒温培养10、30、60和90d后的微生物群落结构多样性.结果表明,缓释复合肥等肥料施入2种土壤恒温培养(10~90 d)后检测到多种细菌(13:0,i14:0,14:0,i15:0,a15:0,i16:0,16:12OH,16:1w5c,16:0,i17:0,a17:0,cy17:0,17:02OH,i18:0,18:0,cy19:0w8c),2种放线菌(10Me17:0和10Me18:0)和1种真菌(18:1w9c).SRF在酸性土壤培养前期(10 d和30 d)较CF显著增加真菌PLFA含量8.3%和6.8%,在培养后期(60 d和90 d)较CCF显著增加真菌PLFA含量22.7%和17.1%;SRF较CF和CCF显著增加微碱性土壤在整个恒温培养期(30 d除外)土壤细菌、真菌和革兰氏阳性菌PLFA含量.酸性土壤培养30 d和90 d时一般饱和脂肪酸/单烯不饱和脂肪酸PLFA值以SRF显著高于不施肥(CK)、CF和CCF,而在微碱性土壤上SRF仅在恒温培养60d时显著高于CK、CF和CCF;SRF较CCF显著降低酸性土壤(30~90 d)和微碱性土壤(10~60 d)异构PLFA/反异构PLFA值.从2种土壤PLFA种类、含量以及相对丰度等可知缓释复合肥较化肥和普通复合肥提高了土壤微生物PLFA种类和含量以及减弱对微生物生存环境的胁迫,缓释复合肥在2种土壤中尤其对酸性土的作用明显.通过研究缓释复合肥对土壤微生物群落结构多样性的影响,以期为农业生产上广泛施用缓释复合肥提供科学依据. 相似文献
44.
农田土壤施用系列新型氮肥后气态氮(NH3和N2O)减排效果比较:以夏玉米季为例 总被引:4,自引:2,他引:2
为了解不同品种新型氮肥相对常规施肥其氨(NH3)和氧化亚氮(N_2O)的减排效果,本文通过田间原位试验同步研究了夏玉米生长季氮肥施用后的农田NH_3挥发和N_2O排放及其主要驱动因子.以常规施肥(复合肥+尿素,CK)为对照,设置了5个肥料处理,分别为脲铵氮肥(UA)、稳定性复合肥料(UHD)、硫包衣氮肥(SCU)、脲甲醛复合肥(UF)和有机肥(OF),施氮量(以N计)均为300 kg·hm~(-2).相关分析结果表明,氨挥发和N_2O排放受环境因子影响,均与土壤WFPS呈显著负相关(P0.05),N_2O排放还与土壤硝态氮呈极显著正相关(P0.01).进一步回归分析表明,N_2O排放(F_(N_2O))主要取决于土壤硝态氮(x)含量的变化,而氨挥发(F_(NH_3))主要取决于土壤铵态氮(x)含量的变化.与CK相比,除了UA,其它肥料处理都降低了土壤的氨挥发,尤其是UF和OF处理减少了37%~43%.但对于N_2O排放,所有处理与CK皆无显著差异.进一步计算每种处理氨挥发和N_2O的气态氮损失总量,与CK相比,UHD、SCU、UF和OF分别减排了9%、5%、30%和23%,而UA增加了3%. 相似文献
45.
长期暴露下纳米二氧化钛对典型淡水藻体砷累积与生物转化的影响 总被引:1,自引:0,他引:1
以铜绿微囊藻(Microcystis aeruginosa)和斜生栅藻(Scenedesmus obliquus)为研究对象,通过室内培养实验,研究了长期暴露下纳米二氧化钛(nano-TiO_2)对五价砷[As(Ⅴ)]在典型淡水藻体中累积与生物转化的影响.结果表明不同藻类对无机砷的吸收和转化能力差异很大.长期暴露下斜生栅藻累积的砷(As,以DW计,下同)高达(819.66±11.25)μg·g-1,比铜绿微囊藻累积的As[(355.95±8.31)μg·g-1]高2倍多.Nano-TiO_2可增加藻体对As的吸收累积,降低了培养基中As的含量.同时,nano-TiO_2可增加藻体对As(Ⅴ)的生化转化;其中,铜绿微囊藻中有机砷以二甲基砷(DMA)为主,而斜生栅藻中有机砷以一甲基砷(MMA)为主.另外,长期暴露下nano-TiO_2处理的铜绿微囊藻和斜生栅藻向培养基释放的甲基砷小于对照组,表明长期暴露中的nano-TiO_2不能促进藻体内甲基砷的释放.研究结果可促进nano-TiO_2与As相互作用时生态风险的理解. 相似文献
46.
J. R. M. Hosking 《Journal of the American Water Resources Association》1985,21(4):677-682
ABSTRACT: Fractional differencing is a tool for modeling time series which have long-term dependence; i.e., series in which the correlation between distant observations, though small, is not negligible. Fractionally differenced ARIMA models are formed by permitting the differencing parameter d in the familiar Box-Jenkins ARIMA(p, d, q) models to take nonintegral values; they permit the simultaneous modeling of the long-term and short-term behavior of an observed time series. This paper discusses the usefulness of fractional differencing to time-series modeling, with emphasis on hydrologic applications. A methodology for fitting fractionally differenced ARIMA models is described, and examples are presented. 相似文献
47.
48.
49.
R. E. Britter S. Di Sabatino F. Caton K. M. Cooke P. G. Simmonds G. Nickless 《Water, Air, & Soil Pollution: Focus》2002,2(5-6):79-90
The physical processes governing flow and pollutantdispersion at the neighbourhood scale, a spatial scaleintermediate between the street scale and the city scale, is notwell understood. Furthermore, it is not clear whether a traditional approach using averaged characteristics such as theaerodynamic roughness length is sufficient to predict the concentration field at this scale. To investigate pollutant dispersion in a real urban area, three field experiments were designed within the UK-URGENT programme sponsored by NERC. Theexperiments were performed in the City of Birmingham using a finite duration release of inert, non-toxic and non-depositingtracers, vis. perfluoromethylcyclohexane (PMCH) and perfluoromethylcyclopentane (PMCP). Measurements were taken using air bag samplers placedin an arc at 3.5 km (first experiment) and 1 km (second andthird experiments) from the source; some trap samplers wereplaced outside the main arc in the outskirts of the city. Measurements were analysed in the laboratory using anovel gas-chromatography technique. Data so obtained werecompared with predictions from a simple steady-state modeland a time-dependent model. The concentration-time serieswere very asymmetrical with a sharp rise, a plateau followedby a relatively slow decrease and finally a long-livedplateau above (or possibly very slow decrease to) thebackground level. 相似文献
50.
S. Mostaghimi T. M. Younos U. S. Tim 《Journal of the American Water Resources Association》1992,28(3):545-552
ABSTRACT: Simulated rainfall was used on experimental field plots to compare the effect of chemical fertilizer and sludge application on sediment, nitrogen, and phosphorus in runoff from no-till and conventional tillage systems. Chemical fertilizer application under the no-till system resulted in the least amount of total N and P in surface runoff. However, sludge application under the no-till system resulted in the least amount of NO3-N and sediment in surface runoff. The worst water quality scenarios were observed when either sludge or chemical fertilizer were surface-applied under a conventional tillage system. Nitrogen losses from the conventional tillage system were minimized when sludge was incorporated into the soil. However, phosphorus and sediment yield from such a system were significantly higher when compared to phosphorus and sediment yield from the no-till system. The results from this study indicate that the use of sludge on agricultural land under a no-till system can be a viable alternative to chemical fertilizer for nitrogen and phosphorus control in runoff. A more cautious approach is recommended when the sludge is incorporated into the soil in a conventional tillage system because of potential for high sediment and phosphorus yield in surface runoff. 相似文献