78 resultados para soil pollution

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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三峡水利枢纽工程的调度运行导致水库水位的涨落,从而在三峡水库周边水陆交错带形成周期性淹没与出露于水面的一段特殊区域,被称为三峡水库消落带。三峡水库消落带生态系统的健康是库岸稳定和水库安全运行的重要保障。土壤养分是三峡库区消落带土壤生态系统的重要组成部分。三峡水库蓄水以来,土壤理化性状发生改变,水土流失日益加剧。土壤是植物的基础,因此,对三峡水库消落带土壤性状的研究对消落带植被恢复有一定的指导意义,也为研究水库消落带水土流失提供依据,为研究水库消落带土壤污染与水体污染提供基础。 本文首先通过对重庆忠县石宝寨水库消落带不同水位、不同时期的表层土壤分析,研究了消落带不同水位土壤容重、酸碱度、有机质、全氮、全磷、全钾、硝态氮、氨态氮、速效磷、速效钾的含量变化。实验结果表明:(1)消落带土壤淹水前各测定指标在不同海拔高程之间的差异均不显著(P>0.05);(2)三峡水库淹水后消落带土壤由微碱性变为碱性,养分平均含量普遍下降,土壤养分缺乏,淹水易造成养分流失;(3)不同淹水强度下,土壤pH 值、有机质、全氮、全磷、氨态氮、速效钾平均含量差异显著(P<0.001),经过淹水土壤有机质、全氮、速效钾含量进一步降低;(4)不同淹水时期,土壤全钾、硝态氮、氨态氮平均含量差异显著(P<0.001),速效氮含量随季节变化较大,与土壤水分有密切关系;(5)干湿交替更容易造成氮、磷解吸释放入水体,从而增加富营养化的风险。 其次,通过对石宝寨消落带5 个时间段6个水位的表层土壤分析,研究了消落带不同时期、不同淹水强度土壤酸碱度及Cu、Zn、Pb、Cr 的含量变化。结果表明(1)淹水土壤pH 显著高于未淹水土壤,长期淹水土壤重金属含量显著高于短期淹水土壤与未淹水土壤,146m 土壤重金属含量最高;(2)经过淹水土壤,pH 先升高后下降,铜含量、锌含量都下降,铬含量先上升后下降,铅含量随着土壤暴露先稍微上升,后又下降,但在08 年9 月达到最大值;(3)各土壤重金属之间均存在显著相关关系,表明三峡消落带土壤存在重金属复合污染隐患;( 4 ) 以三峡水库土壤背景值为评价标准, 消落带土壤污染程度具有Cu>Pb>Zn>Cr 的特征,其中,铜污染相对最为严重,消落带土壤随着淹水强度的加大与淹水时间的延长,污染程度加重,消落带综合污染指数达到1.24,属于轻度污染级。

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Toxic metals introduced into aquatic environments by human activities accumulation in sediments. A common notion is that the association of metals with acid volatile sulfides (AVS) affords a mechanism for partitioning metals from water to solid phase, thereby reducing biological availability. However, variation in environmental conditions can mobilize the sediment-bound metal and result in adverse environmental impacts. The AVS levels and the effect of AVS on the fate of Cu, Cd, Zn, Ni in sediments in the the Changjiang River, a suboxic river with sandy bottom sediment and the Donghu Lake, a anoxic lake with muddy sediment in China, were compared through aeration, static adsorption and release experiments in laboratory. Sips isotherm equation, kinetic equation and grade ion exchange theory were used to describe the heavy metal adsorb and release process. The results showed that AVS level in the lake sediment are higher than that of the river. Heavy metals in the overlying water can transfer to sediments incessantly as long as the sediment remains undisturbed. The metal release process is mainly related to AVS oxidation in lake sediment while also related to Org-C and Fe-Mn oxyhydroxide oxidation in river sediment. The effect of sulfides on Zn and Ni is high, followed by Cd, and Cu is easy bound to Org-C. AVS plays a major role in controlling metals activity in lake sediment and its presence increase the adsorption capacity both of the lake and river sediments.

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Total alkaline phosphatase activity (APA) and soluble reactive phosphorus (SRP) concentrations were measured in municipal wastewater, and a shallow Chinese freshwater lake receiving it. Activities of Dissolved alkaline phosphatase ( ADAP) in overlying and interstitial water were also analyzed monthly at three sites for several years. The lake was enriched with SRP and alkaline phosphatase by discharge of the wastewater, indicating that the inclusion of APA for estimating water pollution was reasonable. Annual data showed that APA in coarser fraction was significantly higher at the site receiving more wastewaters, both in surface and overlying water, suggesting that resuspension of enzyme most likely occurred in the basin heavily discharged. ADAP was an order of magnitude higher in the wastewater than those in lake waters, and was generally higher in interstitial water, a feature more striking at the site receiving more discharges. Besides, it was irrespectively inhibited by Na2WO4, L-cysteine and EDTA-Na, but stimulated by Cu2+, Zn2+, CTAB and Triton X-100 in interstitial, overlying and surface waters. This similarity of responding patterns to the stressors indicated an analogy between dissolved alkaline phosphatase in water column and that in interstitial water, supporting the hypothesis that the polluted sediments act as source of dissolved alkaline phosphatase in eutrophic lakes.

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随着国家发展对能源的迫切需求,石油作为我国能源的主要构成之一,其开采和冶炼也在不断地增加。然而由于某些相关管理环节的不完善引发的污染事故日趋增多,其中原油的土壤污染问题尤为严重。为研究原油在土壤中的入渗过程,通过室内土柱模拟实验,测定了原油在土壤中入渗的湿润距离、湿润推进速率与时间的关系以及被原油污染的土壤中残留物的含量。结果表明:对于同一质地土壤,随着容重的增加,原油在土壤中入渗的湿润距离、湿润推进速率和残留物的含量均降低;容重相同而质地不同的土壤,随着粉粒含量的增加,原油在土壤中入渗的湿润距离、湿润推进速率和残留物的含量均表现为降低趋势;原油在土壤中入渗的湿润距离随时间的变化可以用对数函数拟合,湿润推进速率与时间的关系可以用幂函数拟合,均达到显著水平。研究原油在土壤中的入渗对于了解原油在土壤中的迁移有着重要的意义。

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土壤pH值是影响土壤养分有效性和化学物质在土壤中行为的主要因素,研究土壤pH值的空间分布特征对于土壤养分管理和土壤污染预测具有重要意义。该文用地统计学方法研究了环境因素复杂的黄土高原小流域土壤pH值空间分布特征。结果表明,黄土沟壑区小流域土壤pH值具有球形—指数套合模型的空间结构特征,其空间异质性主要来源于流域内土地利用和土壤侵蚀等随机因素。与有机质协同的Kriging法能较好地对土壤pH值进行估值,其估值范围小于实测数据,估值误差来源于复杂的环境因素。序贯高斯条件模拟的土壤pH值范围与实测数据接近,模拟的平均值低于实测数据,模拟误差来源于模拟过程中独特的Kriging算法及高斯特性。

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通过菲污染诱导动态响应预实验确定了小麦为供试植物,赤霉素(GA3)、细胞分裂素的玉米素和玉米素核苷总含量(Z&ZR)以及脱落酸(ABA)为植物激素供试指标,并且确定试验终点为小麦生长14d。在预实验的基础上,以草甸棕壤为供试土壤,采用室内培养箱盆栽方法,进行多环芳烃菲、芘、荧蒽和苯并(a)芘单一,两-两复合以及三-三复合与3种植物激素的剂量-效应关系研究;3种植物激素对土壤重金属镉、铅、铜和锌单一污染诱导的响应关系研究。并以多环芳烃类的菲和重金属类的镉为代表污染物,进行小麦芽期生长指标及植物激素测定,研究植物激素与生长指标对污染物的响应及敏感性比较。 多环芳烃单一及复合污染诱导实验结果表明:ABA对菲、芘、荧蒽、苯并(a)芘单一及复合污染诱导的响应趋势一致,即随着污染诱导浓度增加,ABA含量显著增加;GA3与四种多环芳烃单一及复合污染诱导存在一定的响应关系,但响应趋势呈多样性变化;对于多环芳烃单一及复合污染诱导,随着污染物浓度增加,Z&ZR含量出现了先增加后减少的趋势,表现为显著的污染诱导抑制效应。ABA和Z&ZR对多环芳烃污染诱导响应敏感,这为其成为土壤污染诊断指标提供了可能性。 在不同的镉、铅、铜、锌污染处理中,小麦体内ABA含量均出现明显增加趋势,与多环芳烃污染胁迫响应一致;GA3含量对镉、铅、铜、锌四种重金属污染胁迫响应趋势相同,均为先增加后减少。对于土壤镉和铅污染胁迫Z&ZR表现为先增加后减少的响应趋势,而对于铜和锌污染胁迫,Z&ZR含量变化与镉、铅胁迫时不同。 植物激素与生长指标对污染胁迫的响应及敏感性比较研究表明,对多环芳烃菲污染诱导,植物激素含量同生长指标相比具有显著的敏感性。对重金属镉污染诱导,内源激素含量和生长指标敏感性都显著,小麦根和芽中ABA含量显著增加,进一步证明了其在植物污染抗逆中的作用机理。

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生态毒理试验集合了污染物的整体效应及化学品代谢物质产生的效应.它可提供土壤中所有污染物对土壤质量影响的全部信息.然而,现有生态毒理试验方法大多用于水生生态系统的生态毒性检验,对土壤污染的诊断需要建立新的生态毒理诊断方法.该文选择4类典型土壤(红壤、草甸棕壤、暗棕壤和栗钙土),以(小麦、白菜、萝卜、西红柿、大葱)为供试植物,进行了重金属(Cu、Zn、Pb、Cd)、有机氯、多环芳烃污染的植物种子发芽与根伸长抑制试验;植物早期生长试验研究;以草甸棕壤为供试土壤,进行了重金属(Cu、Zn、Pb、Cd)单一、复合污染条件下的蚯蚓(郝子爱胜)急性毒性实验;以草甸棕壤、污染土壤和生物修复土壤进行蚕豆根尖实验和土壤原生动物(纤毛虫)实验.

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通过对14种草本花卉在Cd、Cd-Pb、Cd-Pb-柴油、Cd-甲胺磷等单一与复合污染条件下的耐性及重金属积累特性研究,就这些花卉对污染土壤修复的资源潜力有了大致的认识,为污染环境的生态修复及其集成技术的创新与应用提供了科学依据,同时也提供了具有我国自主知识产权的污染土壤修复材料的基本信息。通过盆栽实验,发现黄蜀葵、醉蝶、金盏菊、凤仙、蜀葵和紫茉莉六种植物对Cd单一污染表现出较强的耐性,约占参试花卉种的43%,说明花卉植物较有耐重余属的潜力。金盏菊在实验浓度下,地上部富集系数大于1且地上部的Cd含量大于根部含量,表现出重金属超积累植物的基本特征,但在本试验条件下还没有达到100mgkg-1Cd的超积累植物临界含量特征,因此,有待进一步实验证实。熔液培养条件下,黄蜀葵、紫茉莉、凤仙、万寿菊、串红五种花卉种子发芽对Cd表现为较强的耐性,因为其种子发芽率在Cd污染暴露条件下无明显影响(p>0.05)。但是,Cd对这五种花卉幼苗期根伸长的影响较为显著(p<0.05),并且Cd与花卉植物的幼苗期根长抑制之间存在线性相关关系。在复合污染条件下(Cd-Pb,Cd-Pb-柴油),14种参试花卉种,除金鸡菊和观赏向曰葵两种花卉表现出生物量明显(P<0.05)下降,即对重金属复合污染耐性较弱外,其余12种表现出对复合污染有较强的耐性。黄蜀葵在Cd一甲胺磷联合作用下的耐性研究表明,Cd与甲胺磷对黄蜀葵且对幼苗期根伸长的影响较发芽的影响大。对Cd与甲胺磷的联合效应分析表明Cd和甲胺磷存在拮抗作用,同时这种联合作用则是更多地依赖于Cd而非甲胺磷。