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911.
土壤砷污染是我国乃至世界范围内比较严重的环境问题.有关砷污染的生态毒理效应有很多研究,但对砷污染土壤中微生物群落的关注相对较少.本文以我国湖南省石门县雄黄矿地区长期砷污染土壤为例,采用PLFA及BIOLOG微平板技术考察了7个砷(As)污染程度不同的样点以及一个对照样点土壤微生物群落结构及碳源利用特征.结果发现,雄黄矿区存在多种重金属复合污染,除As含量较高以外,镉(Cd)和镍(Ni)的含量也超过了国家土壤环境质量三级标准.雄黄矿区土壤微生物的群落结构受到土壤有机碳(SOC)、有效磷(AP)、p H以及镁(Mg)、Cd、铁(Fe)、铜(Cu)含量的显著影响.各样点土壤微生物群落均以细菌为主,占微生物总量的71.54%~80.66%,真菌次之,放线菌最少.雄黄矿区土壤中的有效砷对微生物造成了较严重的胁迫.严重砷污染降低了微生物对于碳源利用的多样性以及均匀度.各样点微生物对于碳源的利用也表现出明显的差异.31种碳源中微生物利用较多的只有7类,分别属于糖类、胺类、羧酸类与多聚物,并且以糖类为主.  相似文献   
912.
《环境工程》2015,33(1)
针对注烟道气稠油热采中管道输送烟道气酸凝结问题,以连续性方程、能量方程和动量方程为基础建立了烟道气沿管道流动与传热计算模型,计算了烟道气沿管道的压力分布、温度分布和酸凝结点距离,分析了不同入口参数和烟道气成分对管道中烟道气的压力、温度、酸凝结点的影响。结果表明:SO3或水蒸汽含量增加时,烟道气酸凝结点温度提高,凝结点距离减小;入口烟道气压力提高,烟道气压降变小,温降不变,酸凝结点距离减小;入口烟温升高,压降和温降都增大,酸凝结点距离增大;保温层厚度增加,温降减小,酸凝结点距离增大。计算和分析结果表明:减少烟道气中SO3或水蒸汽含量可以有效地增大酸凝结点距离,减轻管道腐蚀问题。  相似文献   
913.
Bacterial decolorization of anthraquinone dye intermediates is a slow process under aerobic conditions. To speed up the process, in the present study, effects of various nutrients on 1-amino-4-bromoanthraquinone-2-sulfonic acid (ABAS) decolorization by Sphingomonas xenophaga QYY were investigated. The results showed that peptone, yeast extract and casamino acid amendments promoted ABAS bio-decolorization. In particular, the addition of peptone and casamino acids could improve the decolorization activity of strain QYY. Further experiments showed that L-proline had a more significant accelerating effect on ABAS decolorization compared with other amino acids. L-Proline not only supported cell growth, but also significantly increased the decolorization activity of strain QYY. Membrane proteins of strain QYY exhibited ABAS decolorization activities in the presence of L-proline or reduced nicotinamide adenine dinucleotide, while this behavior was not observed in the presence of other amino acids. Moreover, the positive correlation between L-proline concentration and the decolorization activity of membrane proteins was observed, indicating that L-proline plays an important role in ABAS decolorization. The above findings provide us not only a novel insight into bacterial ABAS decolorization, but also an L-proline-supplemented bioaugmentation strategy for enhancing ABAS bio-decolorization.  相似文献   
914.
Biological soil disinfestation is an effective method to control soil-borne disease by flooding and incorporating with organic amendments, but field conditions and resources sometimes limited its practical application. A laboratory experiment was conducted to develop practice guidelines on controlling Fusarium wilt, a widespread banana disease caused by Fusarium oxysporum f. sp. cubense (FOC). FOC infested soil incorporated with rice or maize straw at rates of 1.5 tons/ha and 3.0 tons/ha was incubated under flooded or water-saturated (100% water holding capacity) conditions at 30°C for 30 days. Results showed that FOC populations in the soils incorporated with either rice or maize straw rapidly reduced more than 90% in the first 15 days and then fluctuated till the end of incubation, while flooding alone without organic amendment reduced FOC populations slightly. The rapid and dramatic decrease of redox potential (down to − 350 mV) in straw-amended treatments implied that both anaerobic condition and strongly reductive soil condition would contribute to pathogen inactivation. Water-saturation combined with straw amendments had the comparable effects on reduction of FOC, indicating that flooding was not indispensable for inactivating FOC. There was no significant difference in the reduction of FOC observed in the straw amendments at between 1.5 and 3 tons/ha. Therefore, incorporating soil with straw (rice or maize straw) at a rate of 3.0 tons/ha under 100% water holding capacity or 1.5 tons/ha under flooding, would effectively alleviate banana Fusarium wilt caused by FOC after 15-day treating under 30°C.  相似文献   
915.
To assess the responses of the soil microbial community to chronic ozone (O3), wheat seedlings (Triticum aestivum Linn.) were planted in the field and exposed to elevated O3 (eO3) concentration. Three treatments were employed: (1) Control treatment (CK), AOT40 = 0; (2) O3-1, AOT40 = 1.59 ppm•h; (3) O3-2, AOT40 = 9.17 ppm•h. Soil samples were collected for the assessment of microbial biomass C, community-level physiological profiles (CLPPs), and phospholipid fatty acids (PLFAs). EO3 concentration significantly reduced soil microbial carbon and changed microbial CLPPs in rhizosphere soil, but not in non-rhizosphere soil. The results of the PLFAs showed that eO3 concentrations had significant effects on soil community structure in both rhizosphere and non-rhizosphere soils. The relative abundances of fungal and actinomycetous indicator PLFAs decreased in both rhizosphere and non-rhizosphere soils, while those of bacterial PLFAs increased. Thus the results proved that eO3 concentration significantly changed the soil microbial community function and composition, which would influence the soil nutrient supply and carbon dynamics under O3 exposure.  相似文献   
916.
Understanding the effects of oxalic acid(OA) on the immobilization of Pb(Ⅱ) in contaminated soils by phosphate materials, has considerable benefits for risk assessment and remediation strategies for the soil. A series of phosphate amendments with/without oxalic acid were applied to two anthropogenic contaminated soils. We investigated the immobilization of Pb(Ⅱ) by KH2PO4, phosphate rock(PR), activated phosphate rock(APR) and synthetic hydroxyapatite(HAP) at different phosphate:Pb(P:Pb) molar ratios(0, 0.6, 2.0 and 4.0) in the presence/absence of 50 mmol oxalic acid/kg soil, respectively. The effects of treatments were evaluated using single extraction with deionized water or Ca Cl2, Community Bureau of Reference(BCR) sequential extraction and toxicity characteristic leaching procedure(TCLP)methods. Our results showed that the concentration of water extractable, exchangeable and TCLP-Pb all decreased with incubation time. The concentration of water-extractable Pb after120 days was reduced by 100% when soils were amended with APR, HAP and HAP + OA, and the TCLP-Pb was 5 mg/L for the red soil at P:Pb molar ratio 4.0. Water-soluble Pb could not be detected and the TCLP-Pb was 5 mg/L at all treatments applied to the yellow-brown soil. BCR results indicated that APR was most effective, although a slight enhancement of water-soluble phosphate was detected at the P:Pb molar ratio 4.0 at the beginning of incubation. Oxalic acid activated phosphates, and so mixing insoluble phosphates with oxalic acid may be a useful strategy to improve their effectiveness in reducing Pb bioavailability.  相似文献   
917.
东江流域表层土中全氟化合物的空间分布及来源解析   总被引:2,自引:0,他引:2  
为探究东江流域土壤中全氟化合物(perfluorinated compounds,PFCs)分布特征和潜在来源,2013年8月采集东江流域19份表层土样品,利用高效液相色谱-串联质谱联用(HPLC-MS/MS)技术分析了16种PFCs的含量。结果表明,东江流域表层土总PFCs(∑PFCs)含量范围在2.15~5.49μg/kg dw。所采集的表层土样品中,东江东莞段土壤∑PFCs含量明显高于惠州段,全氟辛烷磺酸(0.65~1.28μg/kg dw)为最主要的污染物。与国内相关研究数据相比,东江流域土壤PFCs含量水平整体较高,这可能与流域产业结构和经济活动有关。主成分分析结果表明,电镀防雾剂、食品包装和全氟羧酸的生产过程、大气沉降、电化学氟化过程为东江流域土壤中PFCs的主要来源。与土壤有机质含量相关性研究表明,PFCs更容易分配到有机质含量高的土壤中,且随着PFCs分子碳链的增加,这种趋势更加显著。  相似文献   
918.
富里酸在土壤环境中的吸附研究   总被引:1,自引:0,他引:1  
富里酸在土壤中的吸附影响着土壤肥力和土壤环境,本文比较了不同pH、离子强度下,富里酸对土壤环境吸附性能的影响,探究了高岭土对富里酸的吸附条件.结果表明吸附在高岭土上的富里酸可以改变高岭土的结构,与高岭土空白样相比,复合体的结构更加分散.高岭土的不同组分对富里酸的吸附容量不同,对富里酸不同官能团的亲和性也存在明显差异.富里酸在高岭土上的吸附及有机污染物在土壤环境中的吸附作用,与烷基、芳香基团呈正相关.  相似文献   
919.
对取自于云南省昭通市头寨滑坡滑源区附近的两个大尺度(25cm×25cm×50cm)土柱样品进行CT扫描,选取典型剖面切片,通过CT值范围将大孔隙分离从而研究土体中的大孔隙分布;计算大孔隙分布分维数(盒维数),研究其大孔隙的不规则特征,结果表明:土体中大孔隙的盒维数随深度增加呈单调递减规律,且与大孔隙度具有显著正相关关系;但大孔隙度只能表征在某一深度上大孔隙的分布多少,而大孔隙的不规则特征则需盒维数表征;最后得到大孔隙的累积大孔隙度与大孔隙孔径(在盒维数为常数时)符合幂函数规律,研究结果有利于利用分形理论建立大孔隙模型,从而研究水分在大孔隙中运动过程。  相似文献   
920.
鄱阳湖及周边经济区土壤镉的含量与分布   总被引:1,自引:0,他引:1  
采用双层网格布点法,在研究区分别采集表层和深层土壤样品9829和2467个,测定了样品的镉含量和pH值。表层土壤镉含量呈对数正态分布,含镉范围0.024~4.619mg/kg,宜用几何平均值0.157mg/kg表征其平均含量。深层土壤镉含量显著低于表层,含量范围0.010~1.982mg/kg,算术平均值和几何平均值分别为0.098mg/kg和0.080mg/kg。研究区7地市表层土壤镉含量几何平均值较30年前上升34.6%~165%。据《土壤环境质量标准GB15618-1995》,以镉为评价指标时,研究区以Ⅰ类土壤为主,分布面积占总面积的78.36%,次为Ⅱ类土壤、分布面积占总面积的15.92%,Ⅲ类和劣Ⅲ类土壤仅占总面积的5.72%,显示土壤环境质量良好,但仍须采取有效措施遏制镉污染的迅猛发展。  相似文献   
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