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191.
东莞石马河流域水化学特征时空差异及来源辨析 总被引:5,自引:2,他引:3
石马河流域对东江饮用水源地城镇供水具有重要战略意义.为研究石马河水化学特征,分别于2012年2月、6月和11月采集石马河河水水样共39个,分析测定了水体主离子(K+、Na+、Ca2+、Mg2+、Cl-、SO2-4和HCO-3)及营养盐(PO3-4、NO-3和NH+4)浓度,探讨了水化学组成的时空差异、控制因素并对其来源进行了初步辨析.结果表明,水化学组成的时空差异显著,不同时期的河水TDS及营养盐平均浓度排序为11月2月6月;河水阴离子以HCO-3为主,2月和11月时,河水阳离子以Na++K+为主,为HCO-3-Na+水,6月时则以Ca2+为主,为HCO-3-Ca2+水;营养盐浓度在空间上的差异主要受人类活动导致N、P废水排放影响,3个时期的石马河出水口处(R7)N∶P为18.4,有利于浮游植物的生长,河道出现了富营养化的现象;Gibbs图显示,2月和11月的河水主离子受蒸发岩溶解的影响较为显著,而蒸发岩和碳酸盐岩风化共同控制6月的水化学组分;海盐沉降对石马河河水物质的贡献率较小;部分Na+、Mg2+、Cl-和SO2-4来自化肥的施用和工业废水的排放;NH+4-N、PO3-4-P和NO-3-N主要分别来源于家禽养殖废水和生活废水. 相似文献
192.
小分子有机酸对紫色土及其溶液中Pb的赋存影响 总被引:3,自引:1,他引:2
以紫色土中铅(Pb)为研究对象,采用以0.01 mol·L~(-1)硝酸钠(NaNO_3)为背景电解质的一步提取法,研究了不同浓度下乙酸,酒石酸和柠檬酸对土壤中Pb的释放作用,并通过土壤重金属形态的分步提取法和地球化学平衡软件Visual MINTEQ v3.0,进一步分析和预测了小分子有机酸作用下土壤中Pb以及土壤溶液中Pb的形态变化.在此基础上,分析了小分子有机酸对Pb作用的环境意义与环境风险.结果表明,3种小分子有机酸均显著增加了紫色土中Pb的释放量,活化效果表现为柠檬酸酒石酸乙酸.在有机酸作用下,土壤中交换态Pb总量增加,碳酸盐结合态Pb和铁锰氧化物结合态Pb总量降低;土壤溶液中Pb以有机结合态为主,占总Pb质量的45.16%~75.05%,游离态次之,占22.71%~50.25%,且随着浓度增加,柠檬酸和酒石酸作用下的土壤溶液中的游离态Pb和无机结合态Pb增加,而有机结合态Pb减少,乙酸则呈相反趋势.总体上看,小分子有机酸提高了紫色土中Pb的生物有效性,且存在地下水的淋溶风险,其中柠檬酸的淋溶风险远大于酒石酸和乙酸. 相似文献
193.
194.
计算机模拟研究UO2+2在人体细胞液的形态分布 总被引:1,自引:0,他引:1
建立了由多种金属离子和小分子配体组成的多相细胞液热力学平衡模型.模拟研究了UO2 2在组织液和细胞液的形态分布及CO2-3、氨三乙酸(NTA)和乙二胺四乙酸(EDTA)浓度对细胞液中UO2 2形态分布的影响.在组织液中,正常生理pH下,当各形态UO2 2总摩尔浓度 [U]= 1.0×10-6 mol/L 或[U]=1.0×10-3 mol/L时,UO2 2均主要以[UO2(CO3)3]4-和[UO2(CO3)2]2-形态存在.在细胞液中,当[U]=1.0×10-6 mol/L时,UO2 2主要以[UO2(CO3)3]4-和[UO2(CO3)2]2-存在;当[U]=1.0×10-3 mol/L,pH为6.0~6.8时,细胞液中存在大量的固相(UO2)3(PO4)2·4H2O,当pH为6.8~7.4时,UO2 2主要以[UO2(CO3)3]4-、[UO2(CO3)2]2-和[(UO2)2CO3(OH)3]-存在.细胞液中(UO2)3(PO4)2·4H2O含量随[U]升高而增加.通过调节细胞液pH和增加细胞液CO2-3浓度均能降低其固相UO2 2配合物含量.在细胞液中增加NTA会增加(UO2)3(PO4)2·4H2O含量,当添加EDTA时会显著降低(UO2)3(PO4)2·4H2O含量. 相似文献
195.
耐热乳杆菌的分离及在食物垃圾乳酸发酵中的应用 总被引:1,自引:0,他引:1
食物垃圾在我国城市生活垃圾中占有较大比重.发酵食物垃圾生产乳酸是实现其资源化的有效方法.从厌氧发酵的食物垃圾中分离到一株耐热乳酸菌TY50,根据形态、生理生化特征和16S rDNA序列,确定该菌株属于乳杆菌属的干酪乳杆菌组群(Lactobacillus casei group),其最高生长温度为52℃.TY50发酵食物垃圾生产乳酸的最佳同液比为1:12,最适温度为45 ℃.在pH 5.5~6.0条件下,发酵食物垃圾产生36.29 g/L的乳酸,乳酸体积产牢和转化率(乳峻/垃圾干重)分别达到1.01 g/(L·h)和0.44. 相似文献
196.
197.
198.
Isolation and characterization of 1,2,4-trichlorobenzene mineralizing Bordetella sp. and its bioremediation potential in soil 总被引:1,自引:0,他引:1
Wang F Grundmann S Schmid M Dörfler U Roherer S Charles Munch J Hartmann A Jiang X Schroll R 《Chemosphere》2007,67(5):896-902
A soil which has been polluted with chlorinated benzenes for more than 25 years was used for isolation of adapted microorganisms able to mineralize 1,2,4-trichlorobenzene (1,2,4-TCB). A microbial community was enriched from this soil and acclimated in liquid culture under aerobic conditions using 1,2,4-TCB as a sole available carbon source. From this community, two strains were isolated and identified by comparative sequence analysis of their 16S-rRNA coding genes as members of the genus Bordetella with Bordetella sp. QJ2-5 as the highest homological strain and with Bordetella petrii as the closest related described species. The 16S-rDNA of the two isolated strains showed a similarity of 100%. These strains were able to mineralize 1,2,4-TCB within two weeks to approximately 50% in liquid culture experiments. One of these strains was reinoculated to an agricultural soil with low native 1,2,4-TCB degradation capacity to investigate its bioremediation potential. The reinoculated strain kept its biodegradation capability: (14)C-labeled 1,2,4-TCB applied to this inoculated soil was mineralized to about 40% within one month of incubation. This indicates a possible application of the isolated Bordetella sp. for bioremediation of 1,2,4-TCB contaminated sites. 相似文献
199.
DDT had been widely used around the world before 1980s and is still under production and use for non-agricultural purposes in China. Because of their special physicochemical properties, p,p'-DDT and its main metabolites, p,p'-DDD and p,p'-DDE, accumulated and persisted in the environment, presenting potential menace on biota. A green-house study was conducted to determine the bioavailability of p,p'-DDD and p,p'-DDE to grains of rice and the influences of traditional Chinese farming practices on their bioaccumulation. Paddy rice and dry rice were grown in submerged paddy soils and non-submerged upland soils, respectively. Two types of soil, Hydragric Anthrosols (An) and Hydragric Acrisols (Ac), were employed. Bioaccumulation factors (BAFs) of DDE ranged from 0.67 for rice grown in non-submerged An to 0.84 in submerged An in the control group, whilst BAFs were all below 0.04 in experimental groups. BAFs of DDD varied from 1.39 for submerged An to 2.26 for submerged Ac in original soils. In contrast, BAFs were between 0.05 for non-submerged Ac and 0.08 for submerged An in DDD-contaminated soils. Flooding seemed to have two contradictory effects on the DDE/DDD accumulation by rice: on one hand, it made the pollutants more mobile and bioavailable; while on the other hand, it enhanced the degradation and binding of POPs. Adding rice straw to the soils protected DDE from being taken up yet promoted DDD accumulation by rice. Furthermore, the distinct inorganic component of the soils might also play an important role in the environmental activities of POPs. 相似文献
200.
DFT-B3LYP method with 6-31G(**) basis set was employed to fully optimize the electronic structures of 135 polychlorinated dibenzofurans and parent compound, namely dibenzofuran. It was demonstrated that polarizability anisotropy and mean polarizability could change sensitively and systematically with chlorine number and substitution pattern. And new quantitative structure-activity relationships (QSARs) focused on the binding affinities of aryl hydrocarbon receptor (AhR), aryl hydrocarbon hydroxylase (AHH) and 7-ethoxyresorufin O-deethylase (EROD) induction potencies of PCDFs were developed. It was concluded that polarizability anisotropy in conjunction with hyperpolarizabilties and hyper-order electric moments, e.g. octupole moments could well interpret the variation of toxicity of different congeners and dispersion interaction should be the leading form among various interactions. Although the terms of hyperpolarizabilities and hyper-order electric moments were not the same significant ones as polarizability anisotropy, the long-range interactions characterized by them should not be ignored in explaining the toxicity. 相似文献