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631.
选择闽江河口鳝鱼滩的芦苇湿地、短叶茳芏湿地及二者交错带湿地为对象,研究了湿地土壤痕量元素的吸附-解吸特征及其对pH值变化的响应.结果表明,3种湿地土壤对Cr6+、Ni2+和Cd2+的吸附能力及其对Cr6+和Ni2+的最大缓冲容量均表现为短叶茳芏湿地低于交错带湿地和芦苇湿地;对Cu2+和Zn2+的吸附能力和最大缓冲容量在0~30 cm土层均以芦苇湿地较高,而在30~60 cm土层以短叶茳芏湿地较高.导致3种湿地土壤对痕量元素吸附能力差异的原因主要与土壤颗粒组成和pH值的差异有关.Langmuir吸附等温方程可较好地拟合湿地土壤吸附Cr6+、Ni2+、Cu2+、Zn2+和Cd2+的热力学过程(R2≥0.82).3种湿地土壤中Cr6+、Ni2+、Cu2+、Zn2+和Cd2+的解吸量均随吸附量的增加而增加,二者呈显著正相关(p<0.05或p<0.01),且其解吸过程均存在滞后现象,说明吸附过程的作用力较解吸过程强.随着pH值的增加,3种湿地土壤对Cr6+的吸附量均呈波动降低变化,对Ni2+、Cu2+、Zn2+和Cd2+的吸附量整体均呈增加趋势;而Cr6+、Cu2+、Zn2+和Cd2+的解吸量对pH值变化的响应与之相反.研究显示,在未来闽江河口硫酸型酸沉降发生频次增加的情况下,相对于短叶茳芏湿地,芦苇湿地和交错带湿地对Ni2+、Cu2+、Zn2+和Cd2+的吸附量将大幅降低,而解吸量将有所增加,说明Ni2+、Cu2+、Zn2+和Cd2+将更易游离于这两种湿地的土壤孔隙水中,进而可能增加其对植物或土壤生物的生态毒性风险. 相似文献
632.
Black carbon (BC) in surface sediments from Henan section of Yellow River and Huaihe River, China, was determined. Average content of BC in Huaihe River was 0.33%, higher than that in Yellow River (n?=?23) with mean value of 0.15%. Distribution patterns of BC in Yellow River and Huaihe River were similar, namely that tributaries had higher BC content than main stream. In addition, BC content in the mainstream of Yellow River and Huaihe River decreased with altitude. The BC content presented a significant positive correlation with clay (r?=?0.672; p?<?0.01) content in Yellow River, while neither did in Huaihe River. The ratio of BC/TOC ranged from 1.8–57.4% (median 29.6%), evidencing pyrogenic fossil fuel source of BC in Yellow River. Relatively low values of BC/TOC in Huaihe River (5.3%–28.8%, median 7.5%,) reflected that the origin of BC is from burning of biomass. In addition, Pearson rank correlation analysis showed that BC was in strong correlation with lighter PAH in Yellow River, while BC was in significant correlation with heavier PAH in Huaihe River. The ratio of BC/TOC indicated that BC in Yellow River mainly came from fossil fuel combustion, while BC in Huaihe River was primarily from biomass burning. 相似文献
633.
讨论了以河道底泥和生活污泥为原料烧制陶粒比表面的测定原理、方法和结果,并对生活污泥添加量、粘结刑添加量和烧结温度对陶粒比表面的影响作了进一步分析。 相似文献
634.
Anaerobic degradation of diethyl phthalate, di-n-butyl phthalate, and di-(2-ethylhexyl) phthalate from river sediment in Taiwan 总被引:5,自引:0,他引:5
We investigated anaerobic degradation rates for three phthalate esters (PAEs), diethyl phthalate (DEP), di-n-butyl phthalate (DBP), and di-(2-ethylhexyl) phthalate (DEHP), from river sediment in Taiwan. The respective anaerobic degradation rate constants for DEP, DBP, and DEHP were observed as 0.045, 0.074, and 0.027 1/day, with respective half-lives of 15.4, 9.4, and 25.7 days under optimal conditions of 30 °C and pH 7.0. Anaerobic degradation rates were enhanced by the addition of the surfactants brij 35 and triton N101 at a concentration of 1 critical micelle concentration (CMC), and by the addition of yeast extract. Degradation rates were inhibited by the addition of acetate, pyruvate, lactate, FeCl3, MnO2, NaCl, heavy metals, and nonylphenol. Our results indicate that methanogen, sulfate-reducing bacteria, and eubacteria are involved in the degradation of PAEs. 相似文献
635.
Seasonal Fluctuation in Heavy Metal Pollution in Iran´s Siahroud River - A Preliminary Study (7 pp) 总被引:1,自引:0,他引:1
Charkhabi AH Sakizadeh M Rafiee G 《Environmental science and pollution research international》2005,12(5):264-270
Background The management of its available water resources has become a key issue for Iran. During the last few decades, the water quality
of Siahroud River in the coastal plain of the Caspian Sea in Gilan Province in Northern Iran has significantly degraded. The
scarcity of water has been compounded by rapid population growth and increasing pollution from fertilizers, pesticides, and
municipal and industrial wastes. One of the sources of this degradation is the movement of heavy metals from the river's watershed
into the various water systems supported by the river, including the water system for Rasht City.
Methods To study the magnitude of heavy metal pollution in the Siahroud River, seven heavy metals including Zn, Cu, Pb, Cd, Mn, Fe,
and Ni were measured in duplicate from replicated water samples collected over five consecutive seasons and analyzed by Atomic
Absorption Spectrometry. In situ measurements of pH were taken with the samples and total organic carbon (TOC) was analyzed
by IR gas measurement.
Results The results demonstrated that four of the seven heavy metals including Pb, Fe, Cd, and Mn exceeded permissible safe levels
as established by the United States Environmental Protection Agency. Multivariate factor analysis suggested that industrial
land-use was the main contributing factor for the high levels of Fe and Mn in the Siahroud River, whereas, Cd was principly
from agricultural activities in the watershed. The data also suggested that pH and TOC had an important role in the behaviour
of Pb and Mn, and that the elevated levels of these two heavy metals in Siahroud River was the consequence of other anthropogenic
sources. Only negligible levels of Zn, Cu and Ni were detected. Finally, all the sampling stations were subjected to cluster
analysis. The results indicated that three different zones could be distinguished according to the levels of pollution. In
addition, it was shown that the urban areas did not have a significant impact on the heavy metal pollution in the river. This
observation stems from the fact that the data from the sampling stations before and after Rasht City were not significantly
different.
Recommendation . Preventive measures need to be undertaken in the land-use systems and watersheds of the Siahroud River to reduce the pollution
levels of Pb, Cd, Mn and Fe. 相似文献
636.
637.
采用气质联用仪(GC-MS)对长江流域13个干流断面及18个支流断面处沿岸表层土壤样品中的多氯联苯(PCBs)进行测定,分析其残留特征、污染来源和健康风险.结果表明,长江流域表层土中ΣPCBs的含量范围为:1.05~50.11ng/g dw,平均值为5.71ng/g dw,含量处于较低污染水平.干流的PCBs含量从上游到下游呈现逐渐增大的趋势,且PCBs在宜昌、岳阳、武汉、重庆等二三线城市总含量较高.PCB 17,PCB 18,PCB 44,PCB 74,PCB 87的检出率较高,三氯联苯、四氯联苯是主要的同系物,表明长江流域表层土壤主要以低氯联苯污染为主.主成分分析表明研究区域PCBs主要来自于1号国产变压器油、Aorclor 1242、1248、大气沉降及地表径流的混合污染源;对长江流域表层土壤健康风险评价表明,PCBs存在较小健康风险,呼吸摄入潜在风险低于经口摄入及皮肤接触. 相似文献
638.
周边土地利用类型对川西平原西河氮素的影响 总被引:1,自引:0,他引:1
以四川盆地西部典型农业小流域为研究区,于2015年3月~2016年2月持续监测河流氮素(NH4+-N、NO3--N、TN)和pH,结合遥感解译、地理信息系统和相关性分析等技术,探讨了监测断面周边流域土地利用类型与河流氮素及pH值的关系.结果表明,研究区河流氮素浓度的季节变化均表现为冬季最高(2.063mg/L)、春秋次之(1.536mg/L;1.432mg/L)、夏季最低(1.085mg/L),同时月均NO3--N浓度(0.891mg/L)显著高于NH4+-N(0.425mg/L)(P<0.01),且NO3--N受到典型土地利用类型的显著影响.随着缓冲区半径的增加,耕地、城乡建设用地和水域的面积与NO3--N和TN浓度相关性逐渐降低,且在250m缓冲区内,城乡建设用地面积与NO3--N浓度呈显著正相关(P<0.05);交通运输用地面积与所有氮组分的相关性均增大,且在750m缓冲区内,交通运输用地面积与NO3--N和TN浓度呈极显著正相关(P<0.01).城乡建设用地和交通运输用地可能是河流NO3--N的"源". 相似文献
639.
长江三角洲地层的年代学研究对探讨晚第四纪以来我国东部沿海地区陆海交互作用历史以及海岸地貌的形成与演化具有重要价值。本研究选择长江三角洲YZ07和EGQD14两支钻孔开展系统光释光(optically stimulated luminescence,OSL)测年研究,总结前期已发表的50个年代数据并收集整理该区域相关钻孔的年代地层资料,探讨在可靠的年代框架约束下晚第四纪长江三角洲沉积地层演变特征,取得了以下几点认识:(1)在长江三角洲地区,常规OSL测年以较细石英颗粒OSL测年效果较为理想;对粗颗粒石英,若存在长石包裹体对石英OSL信号的影响,建议用脉冲释光测年(POSL)技术加以解决。(2)以YZ07孔为例,14C测年和OSL测年结果对比表明在三角洲海岸地区,14C测年方法建立的年代地层框架需要谨慎对待,建议在此区域开展年代地层学研究时可以尝试将两种测年方法结合使用,以确保年代地层框架的准确和可靠。(3)针对争议较大的氧同位素3阶段(MIS3)沉积环境问题,EGQD14孔给出了新的年代学证据,认为MIS3阶段(约30?—?50 ka)长江三角洲可能是陆地河流相沉积环境为主导,这也得到了区域相邻的几支钻孔沉积记录的佐证。(4)两支钻孔从年代学角度证实了前人关于末次盛冰期(Last Glacial Maximum,LGM)以来长江三角洲发育下切河谷的沉积学判识和地层学论断。此外,多钻孔的年代地层学特征也验证了全新世时段海平面变化控制下的长江三角洲及海岸演变的时空动态。 相似文献
640.
黄河下游开封段引黄灌区小麦中重金属污染特征及健康风险评价 总被引:4,自引:2,他引:2
为探究引黄灌区小麦对人体健康的影响,以黄河下游引黄灌区开封段为研究区,对其中水稻乡、柳园口乡、西郊乡和北郊乡的小麦进行采样调查,采用内梅罗综合指数法、健康风险评价模型对研究区小麦重金属污染状况及其对成人和儿童的健康风险进行评价.结果表明,研究区小麦籽粒中Cd、Cr、Pb、Cu、Zn、Ni、Hg平均含量分别为0.034、0.428、0.279、5.363、29.605、0.305和0.003 mg·kg~(-1).除Pb和Zn外,其他重金属均未超出国家食品卫生标准限制值.研究区小麦籽粒中Pb和Zn的污染指数大于1,Cd、Cr、Cu、Ni和Hg的污染指数均小于1,小麦综合污染指数为1.9851,各乡区小麦的综合污染指数介于1.116~1.847之间.非致癌重金属(Pb、Cu、Zn、Hg)对成人和儿童的健康风险指数分别为1.055 8和0.545 0;致癌重金属(Cd、Cr、Ni)对成人和儿童的健康风险指数均值均高于USEPA推荐的最大可接受风险水平1×10-4,可能存在引发癌症的风险. 相似文献