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1.
安徽省土壤中氟分布的研究   总被引:6,自引:0,他引:6  
安徽省229个土壤剖面土壤总氟和土壤水溶性氟含量测定数据表明,5个地理分区之间土壤总氟差异不大,A层和C层均值分别为522mg/kg和604mg/jkg而土壤水溶性氟在不同地区之间的差异显著,其分布规律是自北向南降低;淮北平均〉江淮丘陵〉沿江平原〉皖南地区〉大别山区。  相似文献   

2.
安徽省长江以北地区土壤水溶性氟含量及分布特征   总被引:2,自引:0,他引:2  
采集安徽省长江以北地区有代表性土壤样品347个,测定了其水溶性氟含量。结果表明,土壤水溶性氟含量范围038~1269mg/kg,平均为238mg/kg。地区分布是南低北高,以淮北宿州和阜阳地区为最高,平均含量在3mg/kg以上。主要土壤类型土壤水溶性氟含量顺序是砂姜黑土、潮土>黄棕壤、紫色土>水稻土>石灰土、粗骨土。不同母质土壤水溶性氟含量顺序是古黄土性河湖相沉积物>黄泛冲积物>紫色砂岩>下蜀黄土>石灰岩>酸性结晶岩风化物>河流冲积物。土壤水溶性氟含量与土壤pH呈正相关。pH高的黄泛冲积物和古黄土性河湖相沉积物母质土壤含水溶性氟多,该土壤地区发生氟中毒可能性较大。  相似文献   

3.
南方高产茶园土壤养分特性   总被引:1,自引:0,他引:1  
本文对南方高产获园土壤养分特性进行研究.结果表明,高产茶园土壤表层碱解N100.3mg/kg、全N1.38g/kg.有机质31.0g/kg,均按丰富;茶叶产量与上壤碱解N呈显著正相关.由于重施磷肥,磷素在土壤中趋于积累.土壤表层全磷含量比相应的荒地土壤平均高0.47g/kg.由于少施钾肥.老茶园土壤比荒地土壤全钾含量明显下降,下降率最高达30.25%,平均达25.60%.高产茶园土壤具有独特的熟化层(20-40cm).红壤茶园土壤肥力最高,赤红壤和砖红壤茶园相近.根据研究结果,建议采用‘控氮、降磷、增钾”的施肥原则.  相似文献   

4.
研究了砖红壤、赤红壤、红壤、黄壤等土壤的B层对SO的吸附特点,并分析其与有关土壤性质的关系。这些土壤的可浸提态SO含量在0.1g/kg至0.5g/kg间,对外加SO的吸附潜力仅为0.05g/kg至0.1g/kg.用含25mg/L的SO的溶液持续通过土壤时,它们对SO的吸附表现为对数曲线方程。降低处理液的pH值可大大减少土壤对SO的吸附量。土壤经草酸铵处理后,几乎丧失SO吸附能力.统计表明,土壤中可浸提态SO含量及SO吸附容量与土壤的<2μm粘粘含量、Fed含量、速效磷含量等有显著的相关关系。  相似文献   

5.
整地施肥试验结果表明,全垦、带垦和穴垦三种整地方式以及施肥对尾叶按造林成活率和保存率均无明显的影响,成活率在95%-98.8%之间,保存率在92.1%-97.7%之间.整地能改变土壤性状,如土壤孔隙度全垦为57.88%。穴垦为49.42%;对林木生长有促进作用,但作用效果很快减少,如造林3年后的林木材积全垦、带垦分别为穴垦的136.4%和120.0%,5年后却分别下降到116.5%和108.3%.施肥可提高土壤养分,促进林木生长.造林5年后的调查结果,穴垦施肥林地的土壤有机质、速效N分别为15.447g/kg和49.230mg/kg,林木年均树高生长为1.25m;不施肥处理的有机质、速效N分别为10.388g/kg和35.715mg/kg,林木年平均生长量为0.35m;林木材积施肥处理的为不施肥的9.8倍.整地施肥还可提高林木叶片的养分含量.  相似文献   

6.
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   

7.
28个土壤样品的养分测定和吸附试验以及8个田间肥效试验表明,闽东南旱地土壤的N、P、K、B是花生的普遍养分限制因子.部分土壤还缺乏Zn和Mg等养分.赤砂土的肥料三要素最佳用量分别为N54kg/hm2、P2O555kg/hm2、K2O87kg/hm2;红壤性水稻土为N52kg/hm2、P2O563kg/hm2、K2O92kg/hm2;海砂土为N94kg/hm2、P2O542kg/hm2、K2O85kg/hm2.10个对比试验表明,花生平衡施肥比群众常规施肥平均增产471kg/hm2,增产率为14.9%,每hm2净增收2053元.  相似文献   

8.
应用核素示踪技术,以 ̄(14)C-苄嘧黄隆研究其土壤和作物残留性,结果表明,在常用量条件下施于水稻土壤的苄嘧黄隆,经过稻季(98d)后,土壤残留量为1.5μg/kg,消解半衰期为28d.稻谷残留量为11.63μg/kg,低于苄嘧黄隆允许残留量(20μg/kg)。苄嘧黄隆属于易降解除草剂,按常规使用对环境是安全的。  相似文献   

9.
除草剂苄嘧黄隆在土壤和水稻中的残留   总被引:4,自引:0,他引:4  
程薇  陈祖义 《农村生态环境》1995,11(4):17-18,44
应用核素示踪技术,以^14C-苄嘧黄隆研究其土壤和作物残留性,结果表明,在常用量条件下施于水稻土壤的苄嘧黄隆,经过稻季后,土壤残留量为1.5ψg/kg,消解半衰期为28d,稻谷残留量为11.63μg/kg,低于苄嘧黄隆残留量。  相似文献   

10.
南海市是我国经济最发达的县级市之一,工业门类多,布局分散,工业“三废”对土壤环境产生一定影响。研究结果表明,土壤中铜、锌、镍的容量分别为185 .58 kg/h m 2 、292 .88 kg/h m 2 、63 .92 kg/h m 2 。丘陵地区容最较大,其次是基塘区,平原地区较小。重金属污染型企业分布密集的地区环境容量较小。土壤环境容量与元素含量和最大允许含量有关。  相似文献   

11.
对中新生态城区域内土壤的紧实度、有机质、碱解氮、土壤盐分、酸碱度、地表水、地下水进行了调查取样分析,结果表明该区土壤容重在1.3~1.7g/cm3,有机质含量大多为中等或低水平(5.5~19.1g/kg),速效氮与土壤有机质含量相关性达显著水平(r=0.98)。盐分垂直分布上表现为果园、农田土壤盐分含量小于1.5g/kg,荒地和水库含量在5.0~6.4g/kg之间,垫土区、养殖池和盐场盐池土壤通体盐分含量高(大于10g/kg),且存在表聚现象,超出了一般植物生长的极限。土壤酸碱度为7.81~9.05,水库、养殖池、盐场、荒地、沟塘水的矿化度均在10g/L以上,蓟运河水和农田沟渠为5000mg/L~8500mg/L,果园灌溉水的矿化度也在2000mg/L以上,地下水矿化度高,埋藏浅。并针对以上特点提出其土壤改良利用途径和绿化建设模式。  相似文献   

12.
Relatively low concentrations of fluorine in drinking water ( 1 mg F/l) have been shown to significantly reduce the degree of dental caries in children and fluorine would also appear to have a beneficial effect on bone formation in both humans and farm animals. However, it is apparent that elevated levels of fluorine in the diet have sometimes resulted in problems of increased dental caries and of the development of bone deformities. Much of the fluorine in rocks and soils occurs in apatite and hydroxysilicate minerals, fluorite being the only relatively common rock forming mineral containing fluorine as an essential constituent.Little systematic data are available on fluorine concentrations in soils, plants and natural waters in the UK. General background soil concentrations lie in the range 200 – 400 mg F/kg. For waters the average fluorine content is low, <0.1 mg F/l.In the British Isles there are several areas where there are enhanced levels of fluorine. In the northern Pennines, Derbyshire, northeast Wales and Cornwall, fluorite occurs as a significant component of mineralisation and much fluorine has been added to the environment from mining waste dumps. Soils in northeast Wales contain up to 3,650 mg F/kg and in the northern Pennines up to 20,000 mg F/kg. Waters contain up to 2.3 mg F/l. In southwest England, the granites are generally fluorine-rich with the fluorite granites of the St Austell pluton containing as much as 1 percent fluorine. These rocks are frequently kaolinised and intensively worked as a source of china clay. Soils in the vicinity of the waste tips contain up to 3,300 mg F/kg and grasses up to 2,950 mg F/kg. Surface waters in the St Austell area contain up to 1.25 mg F/l.Atmospheric fluorine pollution around brickworks in the Peterborough and Bedford areas has resulted in fluorosis in farm animals. Other sources of atmospheric fluorine pollution are aluminium smelters, steelworks and fossil fuel burning.  相似文献   

13.
研究了辽河流域高氟地区土壤、作物、饮用水中氟含量,并应用目前美国环保局推荐的健康风险评价模型对辽河流域高氟地区饮用水中氟所引起的健康风险进行初步评价。研究表明:研究区饮用水中氟质量浓度为0.70—4.51mg·L^-1;白菜根土中氟质量分数为182—484mg·kg^-1,萝卜根土质量分数为182~352mg·kg^-1,玉米根土中氟质量分数为209~1254mg·kg^-1;白菜可食部分氟质量分数为0.51~2.96mg·kg^-1,萝卜可食部分氟质量分数为0.34~0.50mg·kg^-1,玉米果实部分氟质量分数为0.88~1.04mg·kg^-1。通过饮用水、食物途径所致健康风险中,食人途径、饮用水途径非致癌物年健康风险分别为1.920×10^-9·a^-1,1.960×10^-8·a^-1,均低于国际辐射防护委员会(ICRP)推荐的通过饮水途径最大可接受风险水平(5×10^-5·a^-1)。  相似文献   

14.
云南部分蔬菜中氟积累特征及其成因初步分析   总被引:5,自引:0,他引:5  
何锋  段昌群  侯永平 《生态环境》2004,13(3):327-329
对云南蔬菜产区部分蔬菜进行了分析,发现氟残留量普遍超过了1 mg/kg。在所检测的蔬菜中,菠菜的水溶性氟平均含量最高,为13.18 mg/kg。就叶菜类不同组织器官来看,氟的分布是:叶中的氟残留量>根中的氟残留量>茎中的氟残留量(以干质量计算);就不同叶位来看,从老叶到幼叶氟残留量有逐渐下降的趋势。结合蔬菜产地的土壤分析结果,认为蔬菜中氟残留量不仅与土壤氟含量有关,而且还可能与施肥状况、蔬菜类别有关。文章还提出了减少蔬菜中氟残留量的对策。  相似文献   

15.
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   

16.
Of the halogens, fluorine has the highest crustal abundance (544 mg/kg) while iodine has the lowest (0.25 mg/kg), however, chlorine is by far the most abundant halogen in the cosmos. The geochemistries of the four naturally occurring halogens have some similarities with fluorine, chlorine and bromine being classified as lithophile elements while iodine is more chalcophile in nature. Bromine and iodine behave in a similar fashion in the secondary environment and could be classified as biophile elements being concentrated in organic matter. Chlorine, bromine and iodine are strongly enriched in the sea while iodine and to a lesser extent bromine are further concentrated in the marine algae.Apart from the occurrence of fluorine in fluorite (CaF2) there are few commonly occurring minerals which contain the halogens as essential constituents. In the igneous environment fluorine and chlorine tend to occupy hydroxyl lattice sites in micas, amphiboles, apatites etc., while in sediments clays can contain appreciable quantities of these elements. Bromine and iodine, however, would be unlikely to fit into the lattice sites of common rock-forming minerals.Bromine, like iodine, is probably volatilised from the marine environment and is carried on to land surfaces. This behaviour of iodine and bromine is reflected in the increased I/CI and Br/CI ratios of surface run-off in continental compared with near coastal environments.Limited information on the soil geochemistry of the halogens suggests that the soil contents of chlorine, bromine and iodine are influenced by proximity to the sea. Soil fluorine, however, is generally dependent on its content in the parent material. In some areas pollutant sources of the halogens contribute appreciably to their concentration in the environment.Iodine and chlorine are essential elements for mammals and fluorine has been shown to have beneficial effects on bone and tooth formation. However, excess quantities of dietary fluorine can be harmful. It is possible, in view of its ubiquitous occurrence in the biosphere, that bromine has a hitherto unknown function in human and animal health.  相似文献   

17.
Arsenic contamination in groundwater is becoming more and more a worldwide problem. Nearing 50 million of people are at health risk from arsenic contamination at Ganga–Meghna–Bramhaputra basin. The experimental results of the five blocks under Malda district of West Bengal, India, showed that the arsenic concentration in groundwater (0.41–1.01 mg/l) was higher than the permissible limit for drinking water (0.01 mg/l) (WHO) and FAO (Food and Agriculture Organization) permissible limit for irrigation water (0.10 mg/l). The soil arsenic level (13.12 mg/kg) crossed the global average (10.0 mg/kg), but within the maximum acceptable limit for agricultural soil (20.0 mg/kg) recommended by the European Union. The total arsenic concentration on food crops varied from 0.000 to 1.464 mg/kg of dry weight. The highest mean arsenic concentration was found in potato (0.456 mg/kg), followed by rice grain (0.429 mg/kg). The total mean arsenic content (milligrams per kg dry weight) in cereals ranged from 0.121 to 0.429 mg/kg, in pulses and oilseeds ranged from 0.076 to 0.168 mg/kg, in tuber crops ranged from 0.243 to 0.456 mg/kg, in spices ranged from 0.031 to 0.175 mg/kg, in fruits ranged from 0.021 to 0.145 mg/kg and in vegetables ranged from 0.032 to 0.411 mg/kg, respectively. Hence, arsenic accumulation in cereals, pulses, oilseed, vegetables, spices, cole crop and fruits crop might not be safe in future without any sustainable mitigation strategies to avert the potential arsenic toxicity on the human health in the contaminated areas.  相似文献   

18.
The environmental impacts of Boroo gold mine project in Mongolia was evaluated by chemical characterization of trace element concentrations in water, soils and tailing dam sediment samples. The results showed that concentrations of B, Cd, Ni and Se in the water samples were within the accepted levels of the Mongolia water quality standard (MNS4586: 1998). However, the concentrations of Al, As, Cu, Mn, Fe, Pb, U and Zn were higher than the maximum allowable concentration especially in the monitoring and heap leach wells. The average concentrations of As, Cd, Cu, Ni, Pb and Zn in the tailing dam sediment were 4419, 58.5, 56.0, 4.8, 20.6 and 25.7 mg/kg, respectively. Generally, arsenic and heavy metals in the soil samples were within the acceptable concentrations of the soil standard of Mongolia (MNS 5850: 2008). The chemical characterization of As solid phase in tailing dam sediment showed that the majority of As were found in the residual fraction comprising about 74% of total As. Assessing the potential risk to humans, simple bioavailability extraction test was used to estimate bioavailability of arsenic and heavy metals, and the concentrations extracted from tailing dam sediment were; 288.2 mg/kg As, 7.2 mg/kg Cd, 41.1 mg/kg Cu, 13.5 mg/kg Pb, 4.7 mg/kg Ni and 23.5 mg/kg Zn, respectively. From these results, the Boroo gold mine project has presently not significantly impacted the environment, but there is a high probability that it may act as a source of future contamination.  相似文献   

19.
淮北市采煤塌陷区土壤养分状况   总被引:1,自引:0,他引:1  
研究了淮北市采煤塌陷区内湿地(南湖湿地、东湖湿地)、园林绿地、耕地3种土地利用类型土壤的养分含量情况.结果显示:湿地中受人为干扰强烈的南湖湿地土壤全氮量为1.128g/kg,显著高于园林绿地,与人为干扰弱的东湖湿地和耕地无显著差异;湿地有机质含量南湖为23.781 g/kg,东湖为11.250 g/kg,二者之间无差异...  相似文献   

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