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911.
通过采集海拉尔盆地地表水样品12件,地下水样品67件,运用Durov图、等值线图和铀形态计算理论,结合数理统计方法,分析研究区域地下水铀的分布特征和赋存形态,结果表明:海拉尔盆地赫尔洪德凹陷地区主要为HCO3-Ca·Na型,蹉岗隆起、乌尔逊凹陷和贝尔凹陷地区主要为Cl-Na型和HCO3-Na型,巴彦山隆起地区主要为HCO3-Na型,红旗牧场和新宝力格凹陷主要为Cl-Na型.研究区域铀的分布范围为17~425μg/L,平均值为80μg/L,标准偏差为70μg/L,引发了区域地源性地下水铀污染问题.地下水中以UO2(CO3)34-和UO2(CO3)22-的主要形式存在,与Eh表现的氧化还原环境具有一致性,其中呼伦贝尔湖东南部属于地下水铀成矿有利区域.潜在铀成矿范围属于重碳酸铀酰占优势的HCO3型含铀地下水,铀酰碳酸盐复合物应占主导地位,铀的溶解与HCO3-的增加有关,地下水中的铀存在参与碳酸盐岩和硫酸盐岩的混合溶滤作用的可能性,UO2(CO3)34-、UO2(CO3)22-、U4O9和沥青铀矿等处于饱和状态,总Fe和(Ca2++Mg2+)浓度较低,各种水化学指标对铀富集具有指示意义,因此可将其视为潜在铀源的参考依据.  相似文献   
912.
研究重稀土元素钇(Y(III))对短程反硝化工艺的短期和长期影响.结果表明,1~50mg/L的Y(III)对亚硝酸盐的积累量无明显影响,60~100mg/L的Y(III)会影响硝酸盐的还原和亚硝酸盐的积累.1~10mg/L的Y(III)对细菌活性呈现促进作用,20~100mg/L的Y(III)对细菌活性呈现抑制作用.胞外吸附的Y(III)是抑制细菌活性的主要因子,线性拟合的相关性系数R2为0.957,半抑制浓度IC50(吸附)为1.079mg/L(以湿重计),对应水中Y(III)浓度为54.35mg/L.SEM显示,添加Y(III)会使细菌产生更多的胞外聚合物(EPS)将细菌包裹以抵抗Y(III)的毒性,EDS显示被包裹的细菌表面碳、氮元素含量大幅度降低,EPS影响了底物的传质.130d的长期实验表明,5mg/L的Y(III)会使反应器的反硝化性能逐渐消失,停止添加稀土后,反应器的亚硝酸盐积累功能也不能恢复.  相似文献   
913.
为了给废水处理生产中最佳孔径的生物载体选型提供依据,本研究系统考察聚氨酯海绵生物载体5种孔径(0.6~4mm)大小对生物膜微型动物群落多样性以及稳定性的影响.结果表明:鞭毛虫、肉足虫等是运行前期与中期的优势种属,游泳型与固着型纤毛虫、轮虫是后期的优势种属.不同孔径载体在不同时期,微型动物多样性、稳定性等参数变化具有明显差异.小孔径(0.6mm)载体微型动物仅在运行中期内表现出较高多样性,中小孔径(1mm)载体多样性总体偏低,中大孔径(3mm)和大孔径(4mm)载体微型动物多样性波动剧烈.小孔径、中小孔径载体内微型动物稳定性好,中大孔径载体稳定性波动大,而大孔径载体最不稳定.中等孔径(2mm)载体内微型动物群落物种丰富度、均匀度高,多样性高且稳定(后期H=2.12、R=1.19、λ=0.16),其微型动物群落最为稳定(后期WH=0.13),且表现出较好的废水处理效果,中等孔径是理想的生物载体内部孔径大小.在生物膜系统中,微型动物多样性稳定指数WH可作为废水中CODcr去除效果的指标参数.  相似文献   
914.
大尺度生态干扰风险评估技术方法及应用研究   总被引:1,自引:0,他引:1  
为实现大尺度生态干扰高风险区域的快速、有效识别,从生态易损性、干扰易达性和资源易引性三个方面选取了9个指标,构建了生态干扰风险评估指标体系和评估模型,形成了完整的大尺度生态干扰评估技术与方法.利用该技术方法,本文评估分析了全国国土空间生态干扰风险状况、空间分布格局及其成因,并结合2017~2019年全国自然保护区人类活动监测数据和《全国主体功能区规划》中生态脆弱性评价结果对生态干扰风险评估结果进行了精度分析.结果显示:超过90%的自然保护区人类活动都集中在评估得到的中高风险区域;全国生态干扰风险主要以中风险为主、低风险次之、再次是较低风险、较高和高风险区域面积最少;其中较高和高风险区域主要分布在我国中西部和东北部的秦岭、祁连山、三江源和内蒙古草原等区域,生态干扰风险空间分布格局与生态系统结构与功能状况、地形与交通条件、资源潜力等因素具有较强相关性.  相似文献   
915.
恶臭是一种感觉公害,极大地危害着人们的身体健康和生活的安宁舒适,其中含硫恶臭气体是最为典型的一类,目前恶臭物质的治理问题成为一项重要的任务.为了达到理想的去除效果,该文在传统的介质阻挡放电技术上,协同由2种不同基体上沉积有纳米二氧化钛的催化剂降解硫化氢废气,分别采用单独DBD放电、协同催化的一段式、两段式系统研究了不同参数(输入电压、气体流量、初始浓度)对硫化氢废气降解效率的影响,并对比研究了在单独低温等离子技术及其协同催化剂的情况下,反应系统中臭氧、二氧化氮浓度的变化,对降解途径进行了分析讨论.结果 表明:随输入电压增大,以及在污染气体初始浓度和流量较小时,反应器对硫化氢气体的去除效率增大;协同催化剂的反应系统中硫化氢去除效果明显增强,且副产物减少.  相似文献   
916.
To investigate the air quality change during the COVID-19 pandemic, we analyzed spatiotemporal variations of six criteria pollutants in nine typical urban agglomerations in China using ground-based data and examined meteorological influences through correlation analysis and backward trajectory analysis under different responses. Concentrations of PM2.5, PM10, NO2, SO2 and CO in urban agglomerations respectively decreased by 18%–45% (30%–62%), 17%–53% (22%–39%), 47%-64% (14%–41%), 9%–34% (0%–53%) and 16%-52% (23%–56%) during Lockdown (Post-lockdown) period relative to Pre-lockdown period. PM2.5 pollution events occurred during Lockdown in Beijing-Tianjin-Hebe (BTH) and Middle and South Liaoning (MSL), and daily O3 concentration rose to grade Ⅱ standard in Post-lockdown period. Distinct from the nationwide slump of NO2 during Lockdown period, a rebound (~40%) in Post-lockdown period was observed in Cheng-Yu (CY), Yangtze River Middle-Reach (YRMR), Yangtze River Delta (YRD) and Pearl River Delta (PRD). With slightly higher wind speed compared with 2019, the reduction of PM2.5 (51%–62%) in Post-lockdown period is more than 2019 (15%–46%) in HC (Harbin-Changchun), MSL, BTH, CP (Central Plain) and SP (Shandong-Peninsula), suggesting lockdown measures are effective to PM2.5 alleviation. Although O3 concentrations generally increased during the lockdown, its increment rate declined compared with 2019 under similar sunlight duration and temperature. Additionally, unlike HC, MSL and BTH, which suffered from additional (> 30%) air masses from surrounding areas after the lockdown, the polluted air masses reaching YRD and PRD mostly originated from the long-distance transport, highlighting the importance of joint regional governance.  相似文献   
917.
In recent years, poly (butylene adipate-co-terephthalate) (PBAT) has been widely used. However, PBAT-degrading bacteria have rarely been reported. PBAT-degrading bacteria were isolated from farmland soil and identified. The effects of growth factors on the degradation of PBAT and the lipase activity of PBAT-degrading bacteria were assessed. The degradation mechanism was analyzed using scanning electron microscopy, attenuated total reflection Fourier transform infrared spectroscopy, proton nuclear magnetic resonance, X-ray diffraction, and liquid chromatography-mass spectrometry. The results showed that Stenotrophomonas sp. YCJ1 had a significant degrading effect on PBAT. Under certain conditions, the strain could secrete 10.53 U/mL of lipase activity and degrade 10.14 wt.% of PBAT films. The strain secreted lipase to catalyze the degradation of the ester bonds in PBAT, resulting in the production of degradation products such as terephthalic acid, 1,4-butanediol, and adipic acid. Furthermore, the degradation products could participate in the metabolism of YCJ1 as carbon sources to facilitate complete degradation of PBAT, indicating that the strain has potential value for the bioremediation of PBAT in the environment.  相似文献   
918.
Understanding the formation mechanisms of secondary air pollution is very important for the formulation of air pollution control countermeasures in China. Thus, a large-scale outdoor atmospheric simulation smog chamber was constructed at Chinese Research Academy of Environmental Sciences (the CRAES Chamber), which was designed for simulating the atmospheric photochemical processes under the conditions close to the real atmospheric environment. The chamber consisted of a 56-m3 fluorinated ethylene propylene (FEP) Teflon film reactor, an electrically-driven stainless steel alloy shield, an auxiliary system, and multiple detection instrumentations. By performing a series of characterization experiments, we obtained basic parameters of the CRAES chamber, such as the mixing ability, the background reactivity, and the wall loss rates of gaseous compounds (propene, NO, NO2, ozone) and aerosols (ammonium sulfate). Oxidation experiments were also performed to study the formation of ozone and secondary organic aerosol (SOA), including α-pinene ozonolysis, propene and 1,3,5-trimethylbenzene photooxidation. Temperature and seed effects on the vapor wall loss and SOA yields were obtained in this work: higher temperature and the presence of seed could reduce the vapor wall loss; SOA yield was found to depend inversely on temperature, and the presence of seed could increase SOA yield. The seed was suggested to be used in the chamber to reduce the interaction between the gas phase and chamber walls. The results above showed that the CRAES chamber was reliable and could meet the demands for investigating tropospheric chemistry.  相似文献   
919.
Understanding ozone (O3) formation regime is a prerequisite in formulating an effective O3 pollution control strategy. Photochemical indicator is a simple and direct method in identifying O3 formation regimes. Most used indicators are derived from observations, whereas the role of atmospheric oxidation is not in consideration, which is the core driver of O3 formation. Thus, it may impact accuracy in signaling O3 formation regimes. In this study, an advanced three-dimensional numerical modeling system was used to investigate the relationship between atmospheric oxidation and O3 formation regimes during a long-lasting O3 exceedance event in September 2017 over the Pearl River Delta (PRD) of China. We discovered a clear relationship between atmospheric oxidative capacity and O3 formation regime. Over eastern PRD, O3 formation was mainly in a NOx-limited regime when HO2/OH ratio was higher than 11, while in a VOC-limited regime when the ratio was lower than 9.5. Over central and western PRD, an HO2/OH ratio higher than 5 and lower than 2 was indicative of NOx-limited and VOC-limited regime, respectively. Physical contribution, including horizontal transport and vertical transport, may pose uncertainties on the indication of O3 formation regime by HO2/OH ratio. In comparison with other commonly used photochemical indicators, HO2/OH ratio had the best performance in differentiating O3 formation regimes. This study highlighted the necessities in using an atmospheric oxidative capacity-based indicator to infer O3 formation regime, and underscored the importance of characterizing behaviors of radicals to gain insight in atmospheric processes leading to O3 pollution over a photochemically active region.  相似文献   
920.
综述了高压氢气泄漏后相关燃爆事故及行为研究现状,总结了泄漏自燃、喷射火、气云爆炸等典型燃爆行为的研究现状、方法及结论,探明了典型氢泄漏后燃爆事故的关键控制参数,提出了现有高压氢气泄漏后燃爆风险实验及数值模拟研究存在的不足,并结合实际氢能场景,从实验尺度、初始条件、边界条件等方面对未来的研究方向进行了展望。  相似文献   
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