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421.

The purpose of this study is to investigate the enhancement of polycaprolactone (PCL) on total nitrogen (TN) removal of coal pyrolysis wastewater (CPW) with low COD to nitrogen ratio by partial nitrification-denitrification bioprocess (PNDB) in one single reactor. With the innovative combination of PCL and PNDB, the TN removal efficiency in the experimental reactor (signed as R1) was 10.21% higher than control reactor (R2). Nitrite accumulation percentage (NAP) in R1 was 82.02%, which was 17.49% higher than R2 at the dissolved oxygen (DO) concentration of 0.9–1.5 mg/L, for the reason that the extra DO was consumed by PCL biodegradation at the aerobic period. Gel permeation chromatography (GPC) results demonstrated that organics with the molecular weight of 185 Da, which could serve as additional carbon sources for denitrifiers, were generated during the PCL hydrolysis process at the anoxic period. PCL was hydrolyzed by extracellular enzymes with the break of the ester bond which was confirmed by FT-IR spectrometer. Microbial community analysis revealed that Ferruginibacter was the dominant hydrolysis bacteria in R1. Nitrosomonas were the main ammonium-oxidizing bacteria (AOB) and Hyphomicrobium were the denitrifiers in this study.

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422.
以上海交通最为繁忙的隧道之一的邯郸路隧道为研究对象,设计了隧道内(进口、中段、出口)机动车NH_3排放因子测定实验和隧道外(垂直于隧道口310 m范围内)机动车NH_3排放环境扩散梯度实验。隧道内实验结果表明,隧道出口的ρ(NH_3)分别是隧道进口和外围环境质量浓度的5倍和11倍,机动车NH_3排放因子(平均值±标准差)为(28±5)mg/km。据此估算,2014年上海机动车的NH_3排放总量约为1 300 t,占该市NH_3排放量的12%。梯度实验表明,邯郸路隧道出口处的机动车NH_3排放一旦扩散到大气中,其对环境的影响强度在短短数十米内迅速降低,超过150 m的范围后影响基本趋同。证实了在交通路网密集的城市,机动车是大气环境NH_3的重要来源,进而对城市颗粒物污染有潜在贡献。  相似文献   
423.

This comparative field study examined the responses of bacterial community structure and diversity to the revegetation of zinc (Zn) smelting waste slag with eight plant species after 5 years. The microbial community structure of waste slag with and without vegetation was evaluated using high-throughput sequencing. The physiochemical properties of Zn smelting slag after revegetation with eight plant rhizospheres for 5 years were improved compared to those of bulk slag. Revegetation significantly increased the microbial community diversity in plant rhizospheres, and at the phylum level, Proteobacteria, Acidobacteria, and Bacteroidetes were notably more abundant in rhizosphere slags than those in bulk waste slag. Additionally, revegetation increased the relative abundance of plant growth-promoting rhizobacteria such as Flavobacterium, Streptomyces, and Arthrobacter as well as symbiotic N2 fixers such as Bradyrhizobium. Three dominant native plant species (Arundo donax, Broussonetia papyrifera, and Robinia pseudoacacia) greatly increased the quality of the rhizosphere slags. Canonical correspondence analysis showed that the differences in bacterial community structure between the bulk and rhizosphere slags were explained by slag properties, i.e., pH, available copper (Cu) and lead (Pb), moisture, available nitrogen (N), phosphorus (P), and potassium (K), and organic matter (OM); however, available Zn and cadmium (Cd) contents were the slag parameters that best explained the differences between the rhizosphere communities of the eight plant species. The results suggested that revegetation plays an important role in enhancing bacterial community abundance and diversity in rhizosphere slags and that revegetation may also regulate microbiological properties and diversity mainly through changes in heavy metal bioavailability and physiochemical slag characteristics.

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424.
作为重要的水文气象参数,参考作物蒸散量(ET0)在全球生态系统中发挥重要作用。为深化认识湿润气候区ET0变化,基于湖南省87个气象站1960~2015年逐月气候资料,应用Penman Monteith(P M)模型估算ET0,利用线性趋势、Mann Kendall检验、反距离加权插值等分析了ET0及主要气候因子的时空变化,采取逐〖JP〗步回归函数来确定P M方程所涉及的气候因子对ET0变化的贡献。研究表明:年均ET0降幅为-3346 mm/10 a,〖JP+1〗日照时数和风速下降是ET0减少的主要原因,而相对湿度下降提高了ET0。春、夏、秋、冬四季ET0变化幅度分别为2966、-5451、-0922、-0207 mm/10 a,春季ET0增加是由相对湿度下降和最高气温上升引起的,夏、秋、冬三季ET0减少主要与日照时数和风速下降有关。风速、相对湿度、日照时数呈下降趋势,而气温、降水、湿润指数呈上升趋势,后者表明气候暖湿化趋势。气候变化背景下ET0显示出不同时间尺度(年、季)空间分布的多样性  相似文献   
425.
富硒土壤硒生物有效性及影响因素研究   总被引:3,自引:0,他引:3  
湖北恩施是典型的富硒土壤分布区,在恩施市沙地乡采集了199件表层土壤样品以及60件玉米样品进行分析测试,旨在查明研究区硒元素含量特征,并分析硒生物有效性及其影响因素。结果显示:研究区表层土壤中硒含量的平均值为188 mg/kg,同时土壤中水溶态硒含量只占到总硒含量的004%~291%,处于相对较低水平。研究区内,有机碳含量对硒生物有效性影响很小,影响硒生物有效性的主要因素为土壤总硒含量和土壤pH值,碱性土壤中硒生物有效性更高。由于该区土壤主要呈酸性,且水溶态硒含量较少,导致玉米中硒含量整体处于相对较低水平,可以通过人为手段适当调控土壤酸碱性,提高硒生物有效性  相似文献   
426.
铬(chromium)是一种在工业生产过程中广泛使用的重金属,进入人体后可导致急慢性中毒,具有神经毒性、基因毒性、致癌性和免疫毒性。了解六价铬(hexavalent chromium,Cr(Ⅵ))的细胞毒性,进一步探究Cr(Ⅵ)的毒作用机制,可为防治Cr(Ⅵ)对人群健康的损害提供实验依据。电压依赖性阴离子通道蛋白1(voltage-dependent anion channel-1,VDAC1)参与调控线粒体外膜通透性,影响细胞凋亡;同时VDAC1也是BCL-2家族的重要结合位点,它可与BAX/BAK相互作用形成孔道,使线粒体内的凋亡相关蛋白,如细胞色素C等,进入胞浆,引起细胞凋亡。但VDAC1影响细胞凋亡的确切路径与分子机制,目前尚未完全研究清楚。使用L02人正常肝细胞作为实验对象,通过慢病毒包装法建立VDAC1低表达细胞系,检测在相同浓度Cr(Ⅵ)处理的条件下,与非染毒组相比,不同受试细胞的生存率、凋亡情况、活性氧簇(reactive oxygen species,ROS)生成量、线粒体功能和凋亡诱导因子(AIF)的变化情况是否存在差异。结果表明,与VDAC1正常表达的细胞相比,VDAC1低表达组在Cr(Ⅵ)染毒的情况下,细胞生存率升高,凋亡率下降,细胞内ROS生成量减少,MPTP活性增加不明显,胞浆内细胞色素C(Cytochrome C,Cyt C)和AIF含量降低。上述研究结果表明VDAC1参与了由六价铬诱导的线粒体依赖性肝细胞凋亡,并且抑制VDAC1的表达可减轻因Cr(Ⅵ)暴露而引起的L02肝细胞损伤。  相似文献   
427.
Anthropogenic activities could result in increasing concentrations of heavy metals in soil and deteriorating in soil environmental quality. Topsoil samples from a typical industrial area, Shiting River Valley, Sichuan, Southwest China, were collected and determined for the concentrations of Cu, Zn, Cr, Cd, As, and Hg. The mean concentrations of these metals were lower than the national threshold values, but were slightly higher than their corresponding background values, indicating enrichment of these metals in soils in the valley, especially for Cu, Zn, and Hg. The topsoils in this area demonstrated moderate pollution and low potential ecological risk. Principal component analysis coupled with cluster analysis was applied to analyze the data and identified possible sources of these heavy metals; the results showed that soil Cd, Hg, As, Cu, and Zn were predominantly controlled by human activities, whereas Cr was mainly from the parent material. The spatial distribution of the heavy metals varied distinctly and was closely correlated to local anthropogenic activities. Furthermore, the concentrations of heavy metals in the industrial land demonstrated relatively higher levels than those of other land use patterns. Soil metal concentrations decreased with the distance increase from the traffic highway (0–1.0 km) and water system (0–2.0 km). Additionally, soil properties, especially pH and soil organic matter, were found to be important factors in the distribution and composition of metals.  相似文献   
428.
Optimum anaerobic conditions of cephalosporin bacterial residues after thermal-alkaline pretreatment were determined by orthogonal experiments. And through biochemical methane potential tests (BMPs) for cephalosporin bacterial residues, the ability for bacterial degradation of cephalosporin was also evaluated. The thermal-alkaline pretreatment with the optimum values of 6% NaOH at 105 °C for 15 min significantly improved digestion performance. With the thermal-alkaline pretreatment, the specific methane yield of the pretreated cephalosporin bacterial residue increased by 254.79% compared with that of the un-pretreated cephalosporin bacterial residue. The results showed that anaerobic digestion of thermal-alkaline–pretreated cephalosporin bacterial residues could be one of the options for efficient methane production and waste treatment.

Implications: This work investigates the thermal-alkaline pretreatment of cephalosporin bacterial residues, which can increase their methane yield by 254.79% compared with no pretreatment. The digestion performance is significantly improved under the condition of 6% NaOH at 105 °C for 15 min. The results show that anaerobic digestion of thermal-alkaline–pretreated cephalosporin bacterial residues could be one of the options for efficient methane production and waste treatment.  相似文献   

429.
OH自由基与溴乙烷反应动力学和大气中存留寿命   总被引:2,自引:0,他引:2  
溴代烷烃是破坏臭氧层的重要物质,用放电流动-共振荧光技术,测定OH自由基与C2H5Br在297-369K温度范围的反应速率常数,求得其阿仑尼乌斯公式,并根据对流层的平均温度227K下求是OH自由基与溴乙烷反应速率常数(K)值,算出共在对流层的寿命为0.168a这将提供这类化合物使用否的重要科学根据。  相似文献   
430.
红壤对磷有强大吸附固定力,磷肥易被土壤中活性铁、铝固定而使有效态磷转化为各种形态的非有效磷,从而大大降低磷肥的利用率。解磷菌能使土壤中难溶性或不溶性的磷转化为易于被植物吸收利用的磷。通过对江西鹰潭红壤分离筛选并经过紫外诱变获得一株性状稳定的高效解磷细菌Y8。经鉴定,菌株Y8为蜡状芽孢杆菌(Bacillus cereus)。通过与生产中应用的徐州华龙高效复合菌肥厂的解磷细菌X3相比,菌株Y8降解有机磷、溶解Ca3(PO4)2的能力均比较高,分别为155.3mg·L^-1和240.1mg·L^-1。研究各种理化因子对菌株Y8解磷能力的影响,确定了菌株Y8的最佳培养条件为葡萄糖20g·L^-1、NH4(SO4)21.5g·L^-1、pH7.0、温度为35℃,在该条件下菌株Y8溶解Ca3(PO4)2的量为295.6mg·L^-1。在江西鹰潭红壤稻田的施用试验表明,将菌株Y8制成微生物菌剂施用于水稻田可起到减施化肥的作用。  相似文献   
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