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991.
992.
研究了微生物调控对有机生活废物堆肥的理化性质影响,结果表明:添加微生物处理比对照处理提前1 d进入高温分解期,且高温(>50℃)持续时间为6 d,较对照处理的长3 d;pH呈先升高后降低的趋势,微生物处理的pH值对照处理的偏低;EC值呈"M"型变化规律,微生物处理的EC值较对照高;在整个堆肥过程中微生物处理的胡敏酸E 4/E 6值都低于对照,表明添加菌剂有利于生活垃圾腐殖化;以发芽指数GI均大于80%这一标准评判,微生物处理比对照提前8d腐熟. 相似文献
993.
通过吸附实验考察连续流间歇生物反应器(CIBR)中污泥对有机物的吸附效果及吸附类型,分析好氧、缺氧和厌氧环境对污泥吸附有机物能力的影响,进而探讨污泥的吸附能力在CIBR实现有机物高效去除中的作用.实验结果表明,污泥对有机物的吸附主要是物理吸附.好氧/缺氧/厌氧环境对活性污泥及其灭活污泥吸附有机物能力影响不大,各环境下平均吸附率分别达到54.09%和48.62%.污泥良好的吸附能力及其先吸附后生物降解的特性,保证了CIBR混合液中COD值始终低于30 mg/L. 相似文献
994.
995.
TianTian Xiong Annabelle Austruy Antoine Pierart Muhammad Shahi Eva Schreck Stéphane Mombo Camille Dumat 《环境科学学报(英文版)》2016,28(8):16-27
At the global scale, foliar metal transfer occurs for consumed vegetables cultivated in numerous urban or industrial areas with a polluted atmosphere. However, the kinetics of metal uptake, translocation and involved phytotoxicity was never jointly studied with vegetables exposed to micronic and sub-micronic particles (PM). Different leafy vegetables (lettuces and cabbages) cultivated in RHIZOtest® devices were, therefore, exposed in a greenhouse for 5, 10 and 15 days to various PbO PM doses. The kinetics of transfer and phytotoxicity was assessed in relation to lead concentration and exposure duration. A significant Pb accumulation in leaves (up to 7392 mg/kg dry weight (DW) in lettuce) with translocation to roots was observed. Lead foliar exposure resulted in significant phytotoxicity, lipid composition change, a decrease of plant shoot growth (up to 68.2% in lettuce) and net photosynthesis (up to 58% in lettuce). The phytotoxicity results indicated plant adaptation to Pb and a higher sensitivity of lettuce in comparison with cabbage. Air quality needs, therefore, to be considered for the health and quality of vegetables grown in polluted areas, such as certain megacities (in China, Pakistan, Europe, etc.) and furthermore, to assess the health risks associated with their consumption. 相似文献
996.
997.
Juan Zhao Zhe Wang Ting Wu Xinming Wang Wanhong Dai Yujie Zhang Ran Wang Yonggan Zhang Chengfei Shi 《环境科学学报(英文版)》2016,28(7):257-269
A laboratory study was conducted to investigate volatile organic compound(VOC) emissions from agricultural soil amended with wheat straw and their associations with bacterial communities for a period of 66 days under non-flooded and flooded conditions. The results indicated that ethene, propene, ethanol, i-propanol, 2-butanol, acetaldehyde, acetone,2-butanone, 2-pentanone and acetophenone were the 10 most abundant VOCs, making up over 90% of the total VOCs released under the two water conditions. The mean emission of total VOCs from the amended soils under the non-flooded condition(5924 ng C/(kg·hr)) was significantly higher than that under the flooded condition(2211 ng C/(kg·hr)). One "peak emission window" appeared at days 0–44 or 4–44, and over 95% of the VOC emissions occurred during the first month under the two water conditions. Bacterial community analysis using denaturing gradient gel electrophoresis(DGGE) showed that a relative increase of Actinobacteria, Bacteroidetes, Firmicutes and γ-Proteobacteria but a relative decrease of Acidobacteria with time were observed after straw amendments under the two water conditions. Cluster analysis revealed that the soil bacterial communities changed greatly with incubation time, which was in line with the variation of the VOC emissions over the experimental period. Most of the above top 10 VOCs correlated positively with the predominant bacterial species of Bacteroidetes, Firmicutes and Verrucomicrobia but correlated negatively with the dominant bacterial species of Actinobacteria under the two water conditions. These results suggested that bacterial communities might play an important role in VOC emissions from straw-amended agricultural soils. 相似文献
998.
The feed additive ractopamine hydrochloride was fortified at four concentrations into batch vials containing soils that differed in both biological activity and organic matter(OM).Sampling of the liquid layer for 14 days demonstrated that ractopamine rapidly dissipated from the liquid layer. Less than 20% of the fortified dose remained in the liquid layer after 4 hr,and recoveries of dosed ractopamine ranged from 8 to 18% in the liquid layer at 336 hr. Sorption to soil was the major fate for ractopamine in soil:water systems, i.e., 42%–51% of the dose at14 days. The major portion of the sorbed fraction was comprised of non-extractables; a smaller fraction of the sorbed dose was extracted into water and acetone, portions which would be potentially mobile in the environment. Partitioning coefficients for all soils suggested strong sorption of ractopamine to soil which is governed by hydrophobic interactions and cation exchange complexes within the soil OM. Ractopamine degradation was observed, but to mostly non-polar compounds which had a higher potential than ractopamine to sorb to soil. The formation of volatiles was also suggested. Therefore, despite rapid and extensive soil sorption,these studies indicated a portion of ractopamine, present in manures used to fertilize soils,may be mobile in the environment via water-borne events. 相似文献
999.
青藏高原背景站大气VOCs浓度变化特征及来源分析 总被引:3,自引:1,他引:2
采用大气预浓缩与气象色谱/质谱联用法,对2013-09-13到2013-10-14期间在国家大气背景站青海门源站所采集的大气样品进行分析.结果显示,本次研究共检测出38种挥发性有机物(VOCs),其中烷烃16种,烯烃11种,芳香烃9种,卤代烃2种.从组成成分来看,烷烃所占比例最大,达58.6%,烯烃和芳香烃分别占29%和10.5%,卤代烃所占比例最小,仅为1.7%.观测期间大多数VOCs物种呈现白天浓度低、夜晚浓度高的变化趋势,具有明显的高原站点特性,但异戊烷、异戊二烯、甲苯则呈现相反趋势.采用臭氧生成潜势(OFP)对VOCs各组分活性进行分析,各类VOCs中烯烃对OFP贡献最大.利用主成分分析VOCs物种,提取出4个因子,分别归类于燃烧源、天然气和液化石油气的泄露、工业源、生物源.结合HYSPLIT 4.0后向轨迹模型,进一步确定气团的来源与运输途径,发现来自南向的污染源贡献是门源地区VOCs物种浓度增加的主要原因. 相似文献
1000.
融雪对土壤溶解性有机质溶析作用的影响 总被引:1,自引:0,他引:1
利用土壤浸提实验和土柱淋洗实验,考察了化学离子的种类与浓度对进入融雪径流的土壤溶解性有机物(DOM)的含量和光谱学特性的影响,以及不同化学特征的积雪融化过程中土壤DOM的释放规律.土壤浸提实验结果表明,随着Na~+、Mg~(2+)和Ca~(2+)浓度的升高,土壤浸提液中的溶解性有机碳(DOC)浓度显著降低;随着Cl~-、SO_4~(2-)、Mg~(2+)和Ca~(2+)浓度的升高,土壤浸提液中波长254 nm处的紫外吸光度(UV-254)逐渐降低;随着Na~+和Mg~(2+)浓度的升高,土壤浸提液中单位浓度DOC的紫外吸收值(SUVA)值逐渐升高.NO_3~-、SO_4~(2-)和Na~+的浓度过高或过低时,土壤浸提液中DOM的类腐殖酸和类富里酸荧光峰强度较低;随着Cl~-、Mg~(2+)和Ca~(2+)浓度的升高,土壤浸提液中DOM的类腐殖酸荧光峰强度逐渐降低.土柱淋溶实验结果表明,类腐殖酸和类富里酸荧光物质是土壤淋滤液中的主要荧光物质.与纯水相比,融雪水作为淋洗液导致土壤淋滤液中DOC浓度的降低,以及类微生物代谢产物荧光峰强度的增高.冻融交替抑制DOM自土壤解吸进入淋滤液,并且导致土壤淋滤液中芳香族化合物相对含量的降低. 相似文献