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721.
研究了GaAs、Ga3+、Ge4+、Hg2+和Cr6+对活性污泥脱氧核糖核酸(DNA)和核糖核酸(RNA)的影响,以及GaAs对活性污泥氨基酸的影响。结果表明,Hg2+和Cr6+主要使活性污泥中核酸的DNA含量减少,GaAs则主要使RNA含量减少,Ge4+浓度达到300ppm/g MLSS对,无论对DNA还是RNA的合成都有较强的抑制影响。低浓度的GaAs对活性污泥氨基酸含量影响不大,而GaAs浓度达360ppm/g MLSS时则使活性污泥中氨基酸含量明显减少。 相似文献
722.
为了研究钢管再生混凝土框架的抗震破坏机制与性能水准,以100%为再生粗骨料取代率,进行了两榀圆、方钢管再生混凝土柱-钢筋再生混凝土梁框架试件的拟静力试验。实测试件的破坏特征与机制、荷载—位移滞回曲线和荷载—应变滞回曲线等,探讨钢管再生混凝土框架试件基于性能设计的性能水准的确立准则。结果表明:试件呈现出"强柱弱梁、强剪弱弯、强节点,弱构件"的抗震破坏机制。荷载—位移滞回曲线基本对称,呈现出比较饱满的梭形。试件破坏时,柱顶钢管纵向应变均小于屈服应变,柱底钢管纵向应变达到了0.01左右,试件变形能力良好。试件KJ-1和KJ-2梁端的纵向钢筋应变均超过了屈服应变,仅试件KJ-1箍筋应变达到了屈服应变。荷载—钢管横向应变滞回曲线沿着受拉应变轴呈螺旋式发展。基于钢管再生混凝土结构性能设计,划分五档性能水准,确立了水平位移角和损伤指标限值。 相似文献
723.
无机阴离子对镉、铅解吸特性的影响 总被引:3,自引:0,他引:3
土壤中重金属的解吸直接影响重金属在环境中的形态转化和植物有效性.而地表水环境及土壤中的无机阴离子能与重金属离子络合,影响重金属在环境中的迁移和作物的吸收.因此,有关无机阴离子对重金属解吸特性影响的研究,将有利于了解重金属的吸附-解吸机制及其控制措施.文章以我国东北地区草甸棕壤作为研究对象,采用静态解吸实验研究无机阴离子(C1-、SO42-、F-)对土壤中镉、铅的解吸行为的影响.结果表明,土壤中镉、铅的解吸率与无机阴离子类型、浓度密切相关;随着解吸液中无机阴离子(C1-、SO42-、F-)浓度的增大,土壤镉、铅的解吸率随之提高.C1-、SO42-、F-这3种无机阴离子对解吸土壤中镉的影响力顺序是:C1- > SO42- > F-;对解吸土壤中铅的影响力顺序是:SO42- >C1- > F-. 相似文献
724.
城市污水处理厂好氧颗粒污泥的特性 总被引:2,自引:0,他引:2
对城市污水处理厂曝气池中筛选出的好氧颗粒污泥进行了分析.结果表明,这些颗粒污泥的直径主要在0.2~0.8 mm范围;平均圆度为1.29;沉淀速率约在10~42 m h-1之间;比耗氧速率(SOUR)为14.2~18.9 mg g-1h-1,小于活性污泥;挥发性物质占总固体的量与活性污泥基本相似.这些颗粒污泥占污泥总量的0.1%~0.5%.颗粒污泥的激光共聚焦扫描显微镜(CLSM)图像显示:颗粒污泥内部几乎都由胞外聚合物(EPS)组成;细菌主要分布在颗粒污泥表面至100μm厚度区域,少部分分布在100~400μm厚度区域. 相似文献
725.
森林自然保护地生态旅游资源研究进展 总被引:1,自引:0,他引:1
旅游资源的评价、保护与开发模式研究是生态旅游研究领域的重要内容,而森林自然保护地是一类重要的生态旅游区.根据我国自然保护地的实际情况,参考国外自然保护地的定义与分类方式,可认为我国的森林自然保护地主要应主要包括森林生态系统类型自然保护区、森林公园及公益林场三种类型;森林自然保护地的生态旅游资源评价研究主要集中在两方面:一是单纯地从经济学角度对旅游资源游憩价值进行货币化评价与核算,二是从保护生物学和生态学角度对资源的可开发性进行评价,其侧重在于找到保护与开发的的科学平衡点;在森林自然保护地旅游资源的开发模式研究上,必须正确处理开发与保护的关系,把保护放在第一位,坚持"三大效益"兼顾的原则,才能实现森林生态旅游资源开发与保护的良性循环.由于经营目的和保护级别差异,自然保护区、森林公园及公益林场的生态旅游研究与实践尚存在发展不均衡、功能不突出等问题,随着生态旅游事业的深入发展,一些非热点和低等级的森林自然保护地在生态旅游理论研究与开发实践中将会发挥越来越重要的作用. 相似文献
726.
Interaction between cadmium,lead and potassium fertilizer (K<Subscript>2</Subscript>SO<Subscript>4</Subscript>) in a soil-plant system 总被引:1,自引:0,他引:1
A pot experiment was conducted to examine the influence of potassium (K) fertilizer (K2SO4) application on the phytoavailability and speciation distribution of cadmium (Cd) and lead (Pb) in soil. Spring wheat (Triticum aestivum L.) was selected as the test plant. There were seven treatments including single and combined contamination of Cd and Pb.
CdCl2·2.5 H2O and Pb(NO3)2 were added to the soil at the following dosages: Cd + Pb = 0.00 + 0.00, 5.00 + 0.00, 25.0 + 0.00, 0.00 + 500, 0.00 + 1000,
5.00 + 500 and 25.0 + 1000 mg kg−1, denoted by CK, T1, T2, T3, T4, T5 and T6, respectively. The K fertilizer had five levels: 0.00, 50.0, 100, 200 and 400 mg
K2O kg−1 soil, denoted by K0, K1, K2, K3 and K4, respectively. The results showed that the K fertilizer promoted the dry weight (DW)
of wheat in all treatments and alleviated the contamination by Cd and Pb. The application of K2SO4 reduced the uptake of Cd in different parts including roots, haulms and grains of wheat; the optimum dosage was the K2 level.
K supply resulted in a significant (P < 0.05) decrease in the soluble plus exchangeable (SE) fraction of Cd and there was a negative correlation (not significant,
P > 0.05) between the levels of K and the SE fraction of Cd in soil. The application of the K fertilizer could obviously restrain
the uptake of Pb by wheat and there were significant (P < 0.05) negative correlations between the concentrations of Pb in grains and the levels of K in soil. K supply resulted in
a decrease in the SE fraction of Pb (except the K1 level) from the K0 to K4 levels. At the same time, the application of the
K fertilizer induced a significant (P < 0.05) decrease in the weakly specifically adsorbed (WSA) fraction of Pb and a significant (P < 0.05) increase in the bound to Fe–Mn oxides (OX) fraction of Pb. At different K levels, the concentration of Pb in the
roots, haulms and grains had a positive correlation with the SE (not significant, P > 0.05) and WSA (significant, P < 0.05) fractions of Pb in the soil. All the K application levels in this experiment reduced the phytoavailability of Cd
and Pb. Thus, it is feasible to apply K fertilizer (K2SO4) to alleviate contamination by Cd and/or Pb in soil. Moreover, the level of K application should be considered to obtain
an optimal effect with the minimum dosage. 相似文献
727.
728.
729.
Jiuyan Su Ji Zhang Jieqing Li Tao Li 《Journal of environmental science and health. Part. B》2018,53(7):454-463
This study aimed to determine the contents of main mineral elements of wild Boletus edulis and to assess its edible safety, which may provide scientific evidence for the utilization of this species. Fourteen mineral contents (Ba, Ca, Cd, Co, Cr, Cu, Fe, Mg, Mn, Na, Ni, Sr, V and Zn) in the caps and stipes of B. edulis as well as the corresponding surface soils collected from nine different geographic regions in Yunnan Province, southwest China were determined. The analyses were performed using inductively coupled plasma atomic emission spectrometer (ICP-AES) after microwave digestion. Measurement data were analyzed using variance and Pearson correlation analysis. Edible safety was evaluated according to the provisionally tolerable weekly intake (PTWI) of heavy metals recommended by United Nations Food and Agriculture Organization and World Health Organization (FAO/WHO). Mineral contents were significantly different with the variance of collection areas. B. edulis showed relative abundant contents of Ca, Fe, Mg and Na, followed by Ba, Cr, Cu, Mn and Zn, and the elements with the lower content less were Cd, Co, Ni, Sr and V. The elements accumulation differed significantly in caps and stipes. Among them, Cd and Zn were bioconcentrated (BCF > 1) while others were bioexcluded (BCF < 1). The mineral contents in B. edulis and its surface soil were positively related, indicating that the elements accumulation level was related to soil background. In addition, from the perspective of food safety, if an adult (60 kg) eats 300 g fresh B. edulis per week, the intake of Cd in most of tested mushrooms were lower than PTWI value whereas the Cd intakes in some other samples were higher than this standard. The results indicated that the main mineral contents in B. edulis were significantly different with respect to geographical distribution, and the Cd intake in a few of regions was higher than the acceptable intakes with a potential risk. 相似文献
730.
以实际生活污水为研究对象,在序批式活性污泥反应器中探究了Ni2+对活性污泥形态及生物除磷性能的影响。实验结果表明,Ni2+能够抑制生物除磷,当Ni2+质量浓度由0 mg/L增加至10.0 mg/L时,PO43--P去除率由93%下降至12%。机理研究结果表明:Ni2+能抑制聚磷微生物的厌氧释磷和好氧吸磷,并能抑制内聚物聚羟基烷酸酯(PHA)的合成;当Ni2+质量浓度为10.0 mg/L时,PHA的最大含量仅为2.4 mmol/g (以单位质量挥发性悬浮物所含PHA中C的物质的量计),远低于空白组中PHA的含量。此外,Ni2+还对微生物群落的组成产生影响,并促进活性污泥中聚糖微生物的增殖。 相似文献