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1.
王占哲  陈渊  王刚  王文刚 《生态环境》2002,11(3):283-285
采取定位试验的方法研究了组合施肥技术对土壤有机质、氮、磷的影响。结果表明,组合施肥较单施化肥土壤有机质含量增加1.8~3.3g/kg;土壤全氮增加0.05g/kg,速效氮(除Ⅱ处理外)增加6.6~44.6mg/kg;土壤全磷增加0.15~0.29g/kg.速效磷增加15.68~37.21mg/kg。土壤有机质增量为0.6~23g/kg;土壤氮素增量全氮增加0.002~0.25g/kg,速效氮增加11.6~39.4mg/kg;土壤磷素增量全磷增加0.09~0.24g/kg,速效磷增加23.59~57.28mg/kg。在保持土壤肥力有所提高的情况下,玉米大豆两年平均产量提高7.7%~17.3%,净收入提高19.4%~37.3%,由此可见,组合施肥技术应用前景广阔。  相似文献   

2.
郑州市城市土壤理化性质   总被引:6,自引:0,他引:6  
在郑州市市区范围内采集53个0-20 cm土壤样品,研究了土样部分基本性状。结果表明,郑州市城市土壤有机碳含量为1.33-20.5 g/kg,平均值为8.01 g/kg;碱解氮含量为8.30-142 mg/kg,平均值为46.4 mg/kg;Olsen-P含量为2.40-70.4 mg/kg,平均值为21.8 mg/kg;pH值为7.70-8.95,平均值为8.36;城市化造成的土壤质地较粗对土壤有效性氮、磷提高和有机碳含量降低有一定贡献;土壤pH增加导致土壤有效磷含量降低;不同土地利用方式下土壤性质的对比表明,荒地质地粗、养分含量低、pH高;公园绿地和街边绿地土壤有效磷含量较高,街边绿地土壤有机碳含量较低。根据以上结果,减少土壤中粗骨性侵入体的含量和合理管理土壤磷对于郑州市城市土壤管理有现实意义。  相似文献   

3.
高强度连作下露天菜地土壤次生盐渍化及其影响因素研究   总被引:1,自引:0,他引:1  
采集佛山市南海区露天菜地表层土壤,测定其硝酸盐含量和全盐量,分析珠江三角洲典型区域蔬菜地土壤次生盐渍化的发生现状和原因,为制定合理的施肥和管理措施提供科学依据。结果表明,1)136个土壤样本硝态氮质量分数在1.070~854.4mg/kg,平均值为194.3mg/kg,有19.9%的土壤样本硝态氮质量分数超过300mg/kg,已达到极高水平;全盐质量分数在0.02~2.7g/kg,平均值为1.2g/kg,有12.5%的土壤样本全盐质量分数已超过2.0g/kg的轻度盐化标准。2)土壤硝态氮质量分数与全盐质量分数之间具有一定的相关性,经统计检验相关系数达极显著水准(r=0.5665,n=131,P<0.01)。3)高强度连作露天菜地土壤的硝态氮质量分数和可溶性盐分浓度已经接近多年塑料大棚水平。4)综合而言,导致土壤次生盐渍化的原因有气候条件、土壤质地、地下水位、灌溉方式、不合理施肥等,而过量施肥及高强度连作可能是引起南海区露天菜地土壤次生盐渍化的主要因素。  相似文献   

4.
对合肥环城公园不同地段绿地土壤及地被植物麦冬叶片的氮磷含量进行了调查分析。结果表明土壤全氮含量平均为1.36 g/kg、全磷为1451.89 mg/kg、有效磷为84.57 mg/kg;麦冬叶的氮磷含量平均值分别为17.25 g/kg和2.83 g/kg,氮磷比为6.33。叶片氮磷比与土壤全磷、有效磷含量呈显著负相关,而与土壤氮含量没有显著相关性。基于叶片氮磷计量关系,调查区植物生长明显受到氮限制。  相似文献   

5.
生物有机肥料对温室蔬菜硝酸盐和土壤盐分累积的影响   总被引:14,自引:1,他引:13  
探讨了3种有机肥料对温室苋菜、芹菜硝酸盐和土壤盐分累积的影响。结果表明:施用有机肥可显著降低蔬菜硝酸盐含量。用3种有机肥料处理栽培的芹菜NO3^-含量平均值为2133mg/kg,比用蔬菜专用肥(对照)的低1617mg/kg,其中施用大三元生物有机肥的芹菜NO3^-值最低,为1803mg/kg,比对照低1947mg/kg。施用大三元生物有机肥的土壤盐分(EC)含量也最低,0-10cm耕层的盐分为0.079S/m,比对照低0.024S/m;10-20cm耕层的盐分为0.055S/m,比对照低0.010S/m。  相似文献   

6.
长期不同施肥措施对红壤水稻土有机碳和养分含量的影响   总被引:11,自引:0,他引:11  
将红壤丘陵地区的荒地开垦为水田不仅可以防治土壤侵蚀,而且能增加土壤肥力,提高农田生产力.本文研究了红壤荒地垦殖为稻田,长期定位施肥15年后不同施肥措施下水稻土的有机碳和养分含量特征.结果表明:不同施肥措施包括不施肥条件下,15年水稻垦殖都提高了土壤肥力.不同施肥措施水稻土的pH提高了0.9~1.3个单位.耕层土壤有机碳含龟达到8.19~1O.13 g·kg-1,全氮含量达到0.89~1.20 g·kg-1,有机碳与全氮含最都有明显提高,且有机碳和全氮含量之间相关性极显著.水稻土耕层全磷含量在0.25~0360 g·kg-1之间,有效磷含量在2.2~20.9 mg·kg-1之间,化学磷肥的培肥效果好于有机肥(猪粪),有机无机磷肥配施能显著提高土壤全磷和有效磷库.土壤全钾还未有明显变化,土壤速效钾含量在40.4~142.5 mg·kg-1之间,不同施肥措施除氮钾肥处理外都造成了土壤速效钾含量下降,秸秆还田到目前为止对于土壤速效钾含量还没有明显作用.  相似文献   

7.
主要研究利用浅层地下咸水灌溉冬小麦及土壤的安全性。试验采取3因素多水平组合设计,利用2.5~6.0g·L-1不同矿化度咸水对冬小麦进行灌溉。试验结果表明:冬小麦产量与咸水矿化度呈负相关关系r=-0.8542、r=-0.8457,与咸水灌溉量呈正相关关系r=0.7487、r=0.7401。利用小于4.0g·L-1咸水灌溉对土壤具有一定的脱盐作用,咸水矿化度为6.0g·L-1时土壤中的盐分积累达到85.5%。矿化度5.0g·L-1以上的咸水不宜直接灌溉农田,需经淡水与咸水调配后,矿化度在4.0g·L-1以下方可灌溉农田。  相似文献   

8.
充分利用华北地区冬季空闲耕地及光热资源,以冬闲耕地为对照,研究二月兰(Orychophragmus violaceus)、毛苕(Vicia uillosa Roth.)、黑麦草(Secale cereale L.)、草木樨(Melilotus officinalis)、紫花苜蓿(Medicago satiua L.)5种不同冬闲覆盖作物地上部、地下部以及总碳、氮的蓄积量及其对土壤理化性质的影响。结果表明:5种覆盖作物总干物质质量在4.6-8.82 t.hm-2之间,是冬闲田干物质质量的1.6-3.1倍。5种覆盖作物全碳蓄积量在1.80-3.14 t.hm-2之间,是冬闲田碳蓄积量的1.9-3.3倍。与对照相比,各覆盖处理均明显提高氮素蓄积,尤以苜蓿最佳,达到了202.8 kg.hm-2,差异显著。试验选择5种肥覆盖均可提高土壤有机质质量分数(0.90-2.86 g.kg);黑麦草覆盖可明显降低土壤容重(0.08 g.cm3);毛苕和苜蓿栽培均可显著降低土壤pH,但同时土壤盐分有所增加;二月兰和黑麦草栽培在提高土壤水分含量方面表现最好。  相似文献   

9.
采用完全随机区组设计,在等量养分供应条件下,以单施化肥(NPK)为对照,研究基施猪粪有机肥替代化肥的10%(M10)、20%(M20)、30%(M30)、40%(M40)4个比例对玉米不同生育期土壤养分变化及土壤酶活性的影响,为山原红壤化肥减施、有机培肥和作物增产提供科学依据.结果表明:随基施有机肥替代比例的增加土壤养分呈增加趋势,与NPK处理相比,M10处理土壤养分含量无显著变化;M20、M30、M40处理玉米拔节期至抽雄期土壤养分含量显著增加,成熟期土壤有机质、全氮、速效磷、速效钾含量增幅分别高达7.10%-8.46%、24.18%-26.37%、13.00%-18.31%、12.43%-17.43%(P 0.05);与基肥处理前相比,M40处理土壤有机质、全氮、碱解氮、速效磷、速效钾含量分别增加了2.64 g/kg、0.31 g/kg、15.36 mg/kg、3.96 mg/kg、16.09 g/kg.基施有机肥玉米生育期土壤转化酶、脲酶、磷酸酶总体上先增后降,转化酶、磷酸酶活性相对高峰为抽雄期,脲酶活性相对高峰为大喇叭口期,过氧化氢酶呈逐渐升高趋势;M40处理土壤转化酶、磷酸酶活性较高,由25.24 mg/g、0.262 mg/g分别增加到31.53 mg/g、0.328 mg/g,成熟期较NPK处理分别提高了80.54%、77.29%;而土壤脲酶、过氧化氢酶活性M30处理最高,成熟期较NPK处理分别增加了11.25 mg/g、1.28mL/g.同时,M30、M40处理较NPK处理相比,玉米籽粒产量由6808.38kg/hm~2提高到7860.58 kg/hm~2和7463.66kg/hm~2,分别显著提高了15.45%、9.62%(P 0.05),且M30、M40差异不显著.多因素方差分析显示基肥处理和生育时期对有机质、全氮、有效磷、转化酶和磷酸酶有极显著的交互作用,而玉米产量与土壤养分和酶活性之间总体上呈显著或极显著正相关.本研究表明在山原红壤上进行基施有机肥替代化肥,短期内能改善与土壤碳、氮、磷循环密切相关的土壤酶活性,培肥土壤,提高作物产量,替代范围在30%-40%作用效果较好.(图4表3参38)  相似文献   

10.
为了解滴灌条件下不同微咸水矿化度及覆膜与否对盐碱地土壤水盐特性及油葵生长的影响,在宁夏平罗西大滩盐碱地进行不同灌水矿化度(0.2、1、2、3 g/L)膜下滴灌田间试验.结果表明,地膜覆盖比不覆盖处理土壤含水量高约2%,盐分表聚减缓,油葵株高、产量及其构成均高于不覆膜处理,产量最高增幅达82.5%;不同矿化度微咸水之间比较发现,利用矿化度为1 g/L的微咸水进行灌溉时,下层土壤含水量较高,微咸水滴灌不但没有为上层土壤带去过多盐分,反而由于土壤有一定的渗透性能,灌水将土壤上层盐分逐渐淋洗至下层.膜下滴灌微咸水矿化度为1 g/L时,油葵产量最大.因此在适宜条件、合理措施下,微咸水覆膜滴灌技术可以促进作物生长,确保作物产量,在淡水缺乏而微咸水较为丰富的盐碱地地区应积极推广利用.  相似文献   

11.
● Organic matter content significantly affected adsorption of E2/EE2 on saline soil. ● EE2 possessed higher competition intensity for adsorption sites than E2. ● The adsorption of E2/EE2 on saline soil was a spontaneous exothermic process. ● Desorption capacity of EE2/E2 accounted for 40%/78% of the total adsorption capacity. Soil organic matter content was the main driving factor affecting adsorption and desorption process of 17β-estradiol (E2) and 17α-ethynylestradiol (EE2) on saline soil. The adsorption and desorption of E2 and EE2 on three saline soils showed the similar behavior that soil with the highest organic content possessed the highest adsorption capacity and the lowest desorption capacity for E2 and EE2. The adsorption capacity of untreated soil samples (with organic matter) was larger than that of soil samples without organic matter. For soil with the largest adsorption capacity, adsorption capacity of E2/EE2 on the untreated soil and soil colloid (with organic matter) respectively reached 0.15/0.30 μg/g and 0.16/0.33 μg/g while the soil and soil colloid without organic matter hardly adsorbed pollutants. The adsorption capacity of E2/EE2 at the initial concentration of 100 μg/L was 25/15 times higher than that at the initial concentration of 5 μg/L. E2 and EE2 had the same adsorption sites on saline soil while EE2 possessed higher competition intensity for adsorption sites than E2. Pseudo-first-order model (R2 = 0.995–0.986) and Langmuir model (R2 = 0.989–0.999) could better fit the adsorption process of E2 or EE2. The thermodynamic study further showed that the adsorption of E2/EE2 on saline soil was a spontaneous exothermic process. The desorption capacity of EE2/E2 accounted for 40%/78% of the total adsorption capacity to possibly exert potential risk to the groundwater. The variation of the salinity led to the variation of soil organic carbon which subsequently changed the adsorption and desorption behaviors of endocrine disrupting chemicals in coastal saline soil. This study provides a new insight on the interfacial behavior of endocrine disrupting chemicals on saline soil.  相似文献   

12.
燕麦对盐碱胁迫的反应和适应性   总被引:21,自引:2,他引:21  
王波  宋凤斌 《生态环境》2006,15(3):625-629
研究了自然盐碱胁迫对燕麦植株生长、水势、渗透调节物质质量分数以及对K 、Na 选择性吸收的影响,结果表明,随着土壤盐碱胁迫的增强燕麦植株生长受抑,叶片和根系的水势较对照均有所降低,其中裸燕麦较皮燕麦水势下降幅度大,表明裸燕麦比皮燕麦对盐碱胁迫更敏感。燕麦叶片内脯氨酸和可溶性糖累积。随着土壤盐碱胁迫的增强植株对Na 的吸收增加,对K 的吸收受到抑制,从而使w(Na )/w(K )和SNa K 值升高。在盐碱胁迫下,燕麦是以合成和积累有机溶质(脯氨酸和可溶性糖)以及吸收和积累无机离子(Na )来进行渗透调节,以适应盐碱胁迫。  相似文献   

13.
Tailings, agricultural soils, vegetables and groundwater samples were collected from abandoned metal mines (Duckum, Dongil, Dongjung, Myoungbong and Songchun mines) in Korea. Total concentrations of arsenic (As) and heavy metals (Cd, Cu, Pb and Zn) were analyzed to investigate the contamination level. Several digestion methods (Toxicity characteristics leaching procedure (TCLP), synthetic precipitation leaching procedure (SPLP), 0.1 N/1 N HCl) and sequential extraction analysis for mine tailings were conducted to examine the potential leachability of As and heavy metals from the tailings. The order of urgent remediation for the studied mines based on the risk assessment and remedial goals was suggested. The Songchun mine tailings were most severely contaminated by As and heavy metals. Total concentrations of As and Pb in the tailings were 38,600–58,700 mg/kg (av. 47,400 mg/kg) and 11,800–16,800 mg/kg (av. 14,600 mg/kg), respectively. Agricultural soils having high As concentrations were found at the all mines. Average concentrations of Cd in the vegetables exceeded the normal value at all mines areas, while As only at the Dongjung, Myoungbong, and Songchun mine area. One groundwater sample each from the Dongil and Myoungbong mines, and 4 groundwater samples from the Songchun mine had values above 10 μg/L of As concentration. The TCLP method revealed that only Pb in the Songchun tailings, 6.49 mg/L, exceeded the regulatory level (5 mg/L). Employing the 1-N HCl digestion method, the concentration of As in the Songchun mine tailings, 4,250 mg/kg, was up to 3,000 times higher than its Korean countermeasure standard. Results from the sequential extraction of As in the tailings showed that the easily releasable fraction in the Myoungbong and Songchun mine tailings was more than 30% and the residual fraction was less than 40%. Based on results showing the exposure health risk employing the hazard quotient and cancer risk of As, Cd and Zn, the Dongil mine needs the most urgent remedial action. The concentration reduction factor (CRF) of As in both soil and groundwater follows the order: Songchun>Dongjung>Dongil>Myoungbong>Duckum mine.  相似文献   

14.
The coastal saline soils, Kharlands, have great potential for their use in aquaculture. This study has been taken up to understand the limnology of the ponds in Kharland area for assessing their prawn culture potential. This study was carried out during September, 1999 to August, 2001. Each Kharland pond has an area of 0.045 hectare. During the study, depth of pond water was 47.7 to 120.0 cm, temperature varied from 25.7 to 34.5 degrees C; transparency from nil to 65.0 cm; specific conductivity from 1.78 to 94.5 microS.cm(-1); total dissolved solids from 0.89 to 27.55 ppt; pH 5.42 to 8.25; dissolved oxygen 1.6 to 8 mg.l(-1); free carbon dioxide 10.00 to 44.00 mg.l(-1); total alkalinity 5.00 to 142.00 mg.l(-1); salinity 0.45 to 39.55 ppt; total hardness 245.00 to 5945.00; calcium 56.05 to 1827.6; magnesium 110.74 to 4507.75 mg.l(-1); dissolved organic matter 1.45 to 9.68 mg.l(-1); ammonia 1.00-8.00 microg.l(-1); nitrite nil to 20.00 micro l(-1) and nitrate 7.5 to 17.5 microg.l(-1). These Kharland ponds are unique in physio-chemical characteristics during their seasonal cycle. From July to October, these ponds have nearly freshwater while from November to May pond water becomes saline. Thus, there is a great possibility of taking up monoculture of both the freshwater and brackish water prawns as well as polyculture of prawns and fishes in the Kharland ponds.  相似文献   

15.
A robust and rapid methodology for the determination of iodine by inductively coupled plasma mass spectrometry in environmental samples is presented. Data were initially obtained for the validation of the analytical measurements, using 17 commercially available soil reference materials. The methodology was then tested on soil and water samples collected in Afghanistan where iodine deficiency and its effects are reportedly prevalent. Sample collections were conducted in Greater Kabul; the iodine in agricultural soils was determined to be in the range of 1.6–4.2 mg/kg and that in water drawn for drinking and irrigation was found to range from 9.9 to 22.7 μg/L. Samples were also collected in a second region, Nangarhar province, which is located to the east of Kabul, where goitres in the local population had been reported. The iodine content in soils and water at this location was 0.5–1.9 mg/kg and 5.4–9.4 μg/L, respectively. The organic content of soils in Kabul was found to be in the range of 1.9–4.2%; in Nangarhar, organic content ranged from 1.7 to 4.5%. All of the Afghan soils were slightly alkaline at pH 7.6–8.2.  相似文献   

16.
A survey was done in 15 typical villages, 150 soil and 86 vegetable plant samples were taken in Jiaxin prefecture of the Taihu Lake region, northern Zhejian province. Results indicate that after 15-20 years land use changed from the paddy rice-wheat (or oilseed rape) double cropping system, to a continuous vegetable land has caused soil quality dramatic change. (1) Acidification: average soil pH was 5.4; about 61% of total samples were pH < 5.5. It was 0.9 units lower than 10 years ago with same upland vegetable cultivation and was 1.2 units lower than soil pH of paddy rice-wheat (or oilseed rape) rotation. (2) Fertilizer salt accumulation: the average salt content was 0.28%, among these about 36.2% of the total samples contained more than 0.3%. (3) Nitrate N and available phosphorus (P) over accumulation: on average it was 279 mg NO3-N/kg, and 45-115 mg P/kg. Nitrate N four times higher and available P 4-10 times more than it is in present paddy rice-wheat rotation soils respectively. This has caused wide concern because of possible groundwater and well drinking water pollution by leached nitrate N and the P losses to water by runoff from vegetable lands induce surface water eutrophication.  相似文献   

17.
在滨海沙滩营造木麻黄防护林,林带老化后进行更新,部分林地改种潮州柑或芒果而成为果园,并于其间套种农作物或牧卓;结果表明,人为耕作活动对土壤的热化起到了明显的促进作用.在造林种果的同时,大量肥料的施入及优质客土改良了土壤,使>1.0mm的砂粒比例明显减少,<0.01mm的粉粘粒及土壤养分含量明显增加,其中沙草地、防护林及果园,0—40cm土壤粉粘粒含量分别为56.4g/kg、59.6g/kg和108.9g/kg,土壤有机质为0.71g/kg、2.02g/kg和4.11g/kg;土壤氮素含量随有机质提高而提高,柑园速效磷和钾含量是沙草地的37倍和3.5倍,然而防护林的种植对土壤速效磷和钾的影响却不明显;由于雨水淋洗,土壤盐分减少;又由于酸性化学肥料的大量施入,土壤pH值由8.3下降为5.3.果园的营建,明显改善了土壤的肥力状况及其保水保肥性能,提高了沙滩地的利用价值及生态经济效益.  相似文献   

18.
对漳州市的公园绿地、道路绿地、单位附属绿地和居住区绿地的有机质含量和磁学特征进行了分析,结果表明漳州市城区绿地有机质含量波动范围较大,土壤样品有机质含量的平均值是12.47 g/kg,变化范围为2.27~27.79 g/kg,不同绿地功能区有机质含量为单位附属绿地道路绿地公园绿地居住区绿地。土壤样品的平均磁化率值为300.39×10-8 m3/kg,频率磁化率平均值为1.58%,土壤呈现明显的磁性增强,不同绿地功能区土壤磁化率值为居住区绿地道路绿地单位附属绿地公园绿地;有机质与磁化率的相关性较弱,基本上不存在土壤发生学上的联系。由于工业排放,汽车尾气等人类活动的影响,原始土壤已经严重破坏,土壤组成复杂,大量外来物质入侵,漳州市城市绿地表现出明显的人为扰动特征,并且可能受到一定程度的重金属污染。  相似文献   

19.
Increasing shortages of fresh water has led to greater use of treated wastewater for irrigation of crops. This study evaluates the spatial variability of soil properties after irrigation with wastewater and freshwater. Geostatistical techniques were used to identify the variability of soil properties at the different sites. A set of physical and chemical soil properties were measured including total nitrogen (TN), total phosphorus (TP), organic matter (OM) and soil moisture. The TN concentration levels varied from 567 to 700 mg·kg-1, while OC levels ranged from 7.3 to 16.3 mg·kg-1 in wastewater-irrigated zones. The concentration levels of TP were between 371.53 and 402.88 mg·kg-1 for the wastewater-irrigated sites. Wastewater irrigation resulted in higher TN, TP and OM concentrations by 18.4%, 8% and 25%, respectively. The highest TN and OM occurred along the wastewater trunk. It was also observed that nitrogen concentrations correlate with the soil's organic matter. The increase of salinity may be associated with the increase of pH, which might suggest that a reduction of pH will be beneficial for plant growth due to the decrease of salinity. The average concentrations of nitrogen in topsoil were higher than those in subsurface soils in irrigated areas. Such differences of the N profile might be due to variations in organic matter content and microbial populations. Consistent with TN and OM, soil C:N decreased significantly with an increase of depth. This phenomenon possibly reflects a greater degree of breakdown and the older age of humus stored in the deeper soil layers. The analysis of pH levels at different depths for the three sites showed that pH values for wastewater irrigation were slightly lower than the controlled sites at the same depths.  相似文献   

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