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11.
新疆乌鲁木齐二叠系湖相微生物白云岩成因   总被引:3,自引:0,他引:3  
新疆乌鲁木齐地区养牛场剖面中二叠统芦草沟组以发育浅湖至半深湖背景下的中层深灰色、灰色碳酸盐岩、粉砂岩、细砂岩与中、厚层灰黑色泥岩、油页岩的互层沉积为特点.湖相碳酸盐岩以微晶白云岩为主体,其次为微晶灰岩.微晶白云岩主要由白云石、铁白云石及少量方解石等组成,常混有泥质组分且富含有机质.镜下观察白云石主要为微晶(<4μm)及微亮晶(4-10 μm),极少数为亮晶(>10μm).扫描电镜分析发现微晶白云岩中存在微球状(直径约9μm)、微棒状(长度约0.3~1.2μm)及微米级它形(< 5μm)等3种微形貌的白云石,其中微米级它形白云石在白云岩中占绝大多数.在微晶灰岩中还发现了直径约70-150nm,形态与球菌相似的纳米微粒,具有微生物矿化的特征.研究区白云岩Sr丰度及Sr/Ca比总体持平或略高于微晶灰岩,Mn丰度远高于微晶灰岩,C、O同位素均高于微晶灰岩,暗示了白云岩可能形成于比微晶灰岩更深及盐度更大的水下还原环境,二者之间缺乏明显的交代关系.芦草沟组白云岩的δ13CPDB介于9.2 ‰~15.6‰,强烈正偏的δ13CPDB可能是产甲烷古菌的代谢活动引起有机质碳同位素分馏的结果.以上特征表明,研究区芦草沟组白云石的沉淀可能与产烷带厌氧微生物的代谢活动引起的甲烷生成作用有关.  相似文献   
12.
通过扫描电镜(SEM)观察,首次在红河断裂带内的花岗糜棱岩中发现类微生物状纳米颗粒.高分辨率平插能谱分析结果表明,该类微生物状纳米颗粒成分中的C元素平均含量约为10%,指示无机成因,并非某些菌类微生物,结合XRD分析结果表明该类纳米颗粒成分来自花岗糜棱岩的造岩矿物.通过对各种形貌特征的纳米颗粒观察、筛查和规律分析,探讨...  相似文献   
13.
Iron distributions in rainfall, streams, soils and groundwaters are described for the Upper River Severn catchment of mid-Wales. Iron is mainly supplied from within-catchment sources with highest concentrations occurring under reducing conditions. Iron concentrations have doubled over the past 20 years (~5.0 μg yr−1 for the forest and ~3.7 μg yr−1 for the moorland). For the forested sites, the gradients are particularly high post-1993. UK rivers/lakes monitored by the UK Acid Waters Monitoring Network show similar increases. Generally, Fe correlates with dissolved organic carbon (DOC). The greatest rates of Fe increase coincide with those for DOC. Thermodynamic modelling using WHAM/Model VI indicates that Fe(III) is mainly in microparticulate form (probably oxyhydroxides) apart from under reducing conditions. It is proposed that Fe increases for surface waters are associated with increased microparticulate Fe(III) due to stabilisation against aggregation by binding of DOM to its surface. The results relate to acidification declines and deforestation leading to land disturbance and wetter conditions within the soil. There will be greater acidification reversal following tree harvesting due to lowering of atmospheric SOx scavenging and this may have resulted in the greater increase in Fe in the later years of the study.  相似文献   
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15.
纳米银广泛用于抗菌材料、医疗设备和其他抗菌产品。在纳米银产品的生产、运输、消费和处置过程中,纳米银将不可避免地释放到自然环境中,而水生生态系统是纳米银在自然界中重要的汇之一。本文以青岛近海为研究对象,采集现场海水进行实验室模拟培养,通过测定(48 h)不同浓度纳米银(0.5、5和50 mg/L)短期暴露下对表层海水中浮游细菌死亡率、蛋白质含量、碱性磷酸酶活性及氨肽酶活性的变化,研究纳米银对近岸海区浮游细菌生长和活性的影响。研究结果表明,在纳米银胁迫下细菌生长和活性受到显著抑制(P<0.05),高浓度组在培养4 h后死亡率达到最高值88.20%,随着暴露时间延长,纳米银胁迫组活细菌数量缓慢恢复、死亡率逐渐减小;纳米银对碱性磷酸酶活性和氨肽酶活性的抑制效应分别在培养4和8 h后达到最高,分别为8.58%和32.55%,在培养16 h后,酶活性开始缓慢上升,表现出对纳米银胁迫的适应性;纳米银组的蛋白质含量在培养8 h后达到最低,相比于对照组降低了29.80%,在培养后期同样有所升高,蛋白质含量接近于对照组。由此可见,纳米银对青岛近海浮游细菌的生长和活性都具有显著的抑制效应;不同浓度纳米银对细菌的抑制效应不同,纳米银浓度越高,抑制效应越明显(P<0.05),具有明显的浓度梯度效应;在培养后期,碱性磷酸酶活性和氨肽酶活性都有恢复,蛋白质含量上升,细菌死亡率下降,表明细菌对纳米银胁迫表现出一定的适应性。  相似文献   
16.
With the development of aquaculture, there is an urgent demand for an alternative antibacterial agent to reduce the drug resistance and environmental pollution caused by the abuse of antibiotics. Recently, silver nanoparticles(Ag NPs) have been viewed as a novel type of antimicrobial agents due to their unique advantages. In this study,Ag NPs were biosynthesized with the ginger rhizomes extract. The biosynthesized Ag NPs were characterised by UV–visible spectroscopy, transmission electron microscopy, X-ray diffraction and fourier transform infrared spectroscopy. Furthermore, the antimicrobial activities of the Ag NPs were fully analyzed against six typical aquatic pathogens. The results indicated that the components in ginger extract could function as the chemical reductant to synthesize Ag NPs. Moreover, compared with the Ag NPs synthesized by chemical methods, the biosynthesized Ag NPs were smaller, and had higher stability and antibacterial activity. Therefore, the biosynthesized Ag NPs using ginger extract may have prospective applications in aquaculture.  相似文献   
17.
In this study, 5,17‐bis‐[(4‐benzylpiperidine)methyl]‐25,26,27,28‐tetrahydroxy‐calix[4]arene ( 3 ) has been prepared by the treatment of calix[4]arene with a secondary amine (4‐benzylpiperidine) and formaldehyde by means of Mannich reaction. The prepared Mannich base ( 3 ) has been grafted onto [3‐(2,3‐epoxypropoxy)‐propyl]‐trimethoxysilane‐modified Fe3O4 magnetite nanoparticles (EPPTMS‐MN) in order to obtain 5,17‐bis‐[(4‐benzylpiperidine)methyl]‐25,26,27,28‐tetrahydroxy calix[4]arene‐grafted EPPTMS‐MN (BP‐calix[4]arene‐grafted Fe3O4). All new compounds were characterized by a combination of FTIR and 1H‐NMR analyses. The morphology of the magnetic nanoparticles was examined by transmission electron microscopy. Moreover, the studies regarding the removal of arsenate and dichromate ions from the aqueous solutions were also carried out by using 5,17‐bis‐[(4‐benzylpiperidine)methyl]‐25,26,27,28‐tetrahydroxy‐calix[4]arene in liquid–liquid extraction and BP‐calix[4]arene‐grafted Fe3O4 ( 4 ) in solid–liquid extraction experiments. The extraction results indicated that 3 is protonated at proton‐switchable binding sites in acidic conditions. Hence, facilitating binding of arsenate and dichromate is resulted from both electrostatic interactions and hydrogen bonding. To understand the selectivity of 3 , the retention of dichromate anions in the presence of Cl, NO, and SO anions at pH 1.5 was also examined.  相似文献   
18.
以试制的纳米铜添加剂为试验单剂,选择车辆齿轮油500SN为基础油,在长磨实验条件下,进行纳米铜粉的抗磨和减摩性能试探性研究,探讨纳米金属粉体对车辆齿轮油500SN性能的影响.在1 200 r/min、2 h、98 N的条件下,加入质量分数为0.05%的实验制备纳米铜粉可明显提高基础油的抗磨减摩性能,磨斑直径降低了18.1%,摩擦系数降低了13.6%;在1 200 r/min、2 h、392 N的条件下,加入质量分数为0.05%~0.7%的纳米铜粉可以提高基础油的抗磨性能.随着质量分数的逐渐增大,纳米铜粉的抗磨减摩性能逐渐变差,以质量分数为0.05%的纳米铜粉效果最佳.  相似文献   
19.
王焰  魏博  陈晨  白玉颖 《地质学报》2023,97(11):3622-3636
目前陆地上可利用的铂族元素(PGE)资源主要来自与镁铁—超镁铁质岩浆密切相关的岩浆硫化物矿床。岩浆硫化物矿床成矿理论关注的一个重要问题就是镁铁—超镁铁质岩浆中PGE的富集机理。经典成矿理论认为,由于PGE在平衡的硫化物熔体与硅酸盐熔体之间具有极高的分配系数(105~106),PGE富集成矿主要与成矿体系中硅酸盐熔体与硫化物熔体的质量比有关(R-factor)。但是近些年来,许多新的实验岩石学结果和天然矿石样品纳米尺度PGE赋存状态的观测结果对这一经典理论提出了挑战。本文列举了一些相关的研究实例,显示硅酸盐熔体中的PGE纳米颗粒可以被硫化物或铬铁矿机械捕获、并通过定向附着生长、聚集、粗化和融合,最终形成纳米颗粒集合体和纳米合金。另外,岩浆中半金属元素(TABS,即Te、As、Bi、Sb、Sn)和Se可以与PGE优先形成各种互化物,从而富集于砷化物、铋化物、碲化物或硒化物中,而非硫化物中。因此,镁铁—超镁铁质岩浆体系中PGE的富集可能不仅受其在硫化物熔体中极高的分配系数控制,一些物理过程导致的PGE分配以及半金属元素对PGE的富集作用也不容忽视。由于矿石中的铂族矿物一般为纳—微米级,采用聚...  相似文献   
20.
The response surface methodology involving the five‐level central composite design (CCD) was employed to model and optimize the Cr(VI) immobilization process in a Cr‐spiked soil using starch‐stabilized zerovalent iron nanoparticles (ZVIn). ZVIn were synthesized via a borohydride reduction method and characterized by X‐ray diffraction (XRD) and scanning electron microscopy (SEM). All Cr(VI) immobilization experiments were conducted in a batch system. The variables for the CCD optimization were the ZVIn dosage (% w/w), reaction time (min), and initial Cr(VI) concentration in soil (mg/kg). The predicted response values by the second‐order polynomial model were found to be in good agreement with experimental values (R2 = 0.968 and adj‐R2 = 0.940). The optimization result showed that the Cr(VI) immobilization efficiency presented the maximal result (90.63%) at the following optimal conditions: ZVIn dosage of 1.5% w/w, reaction time of 60 min, and an initial Cr(VI) concentration of 400 mg/kg.  相似文献   
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