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51.
Titanium dioxide films were prepared on glass, indium-tin oxide (ITO) glass and p-type monocrystalline silicon and studied for the photocatalytic degradation of rhodamine B in an aqueous medium. Raman, AFM, and XPS spectroscopic investigations of these films indicated that microstructure of titanium oxide films were greatly affected by the substrate materials. Rutile was confirmed to be easily formed on the surface of ITO glass, and TiO2 tended to grow as closely packed particles that were elongated strips with an average size of 20 nm, and had lovely contrast with the perfectly round particles grown on p-type monocrystalline silicon. Charge transfer between the film and silicon substrate was verified by surface photovoltage spectra. This may be the real reason why the films grown on ITO glass and silicon substrates exhibit higher photocatalytic reactivity than the film on glass substrate. Moreover, the different surface properties also seem to be responsible for the different activity. 相似文献
52.
中国农田土壤Cd累积分布特征及概率风险评价 总被引:1,自引:2,他引:1
通过检索2000~2022年国内外公开发表的文献资料,获得31个省240个市(县)区域160446个农田土壤样点的镉(Cd)含量数据,利用单因子污染指数、地累积指数和概率风险评价方法从整体上分析了我国农田土壤Cd污染时空分布特征及其健康风险,为农田土壤Cd污染治理和风险管控提供了科学依据.结果表明,我国农田土壤ω(Cd)范围在0.012~23.33 mg ·kg-1,几何均值为0.473 mg ·kg-1,是我国农用地土壤Cd风险筛选值(6.5华南>西北>东北>华东>华北;从时间尺度来看,我国农田土壤Cd含量在各时间段并无统计学意义的显著性差异(P>0.05).我国农田土壤Cd对儿童、青年、成年人和老年人尚无非致癌风险,但其对成年人和老年人存在潜在致癌风险,约5.81%和4.49%的成年人和老年人的致癌风险超过美国环保署规定的限量值(1E-06).为提高农田土壤Cd健康风险评价的准确性,概率生态风险评价中还需要进一步考虑土壤Cd的生物有效性和农产品的摄食暴露途径. 相似文献
53.
The iron and steel industry is not only an important foundation of the national economy, but also the largest source of industrial air pollution. Due to the current status of emissions in the iron and steel industry, ultra-low pollutant emission control technology has been researched and developed. Liquid-phase proportion control technology has been developed for magnesian fluxed pellets, and a blast furnace smelting demonstration project has been established to use a high proportion of fluxed pellets (80%) for the first time in China to realize source emission reduction of SO2 and NOx. Based on the characteristics of high NOx concentrations and the coexistence of multiple pollutants in coke oven flue gas, low-NOx combustion coupled with multi-pollutant cooperative control technology with activated carbon was developed to achieve efficient removal of multiple pollutants and resource utilization of sulfur. Based on the characteristics of co-existing multiple pollutants in pellet flue gas, selective non-catalytic reduction (SNCR) coupled with ozone oxidation and spray drying adsorption (SDA) was developed, which significantly reduces the operating cost of the system. In the light of the high humidity and high alkalinity in flue gas, filter materials with high humidity resistance and corrosion resistance were manufactured, and an integrated pre-charged bag dust collector device was developed, which realized ultra-low emission of fine particles and reduced filtration resistance and energy consumption in the system. Through source emission reduction, process control and end-treatment technologies, five demonstration projects were built, providing a full set of technical solutions for ultra-low emissions of dust, SO2, NOx, SO3, mercury and other pollutants, and offering technical support for the green development of the iron and steel industry. 相似文献
54.
作物生长和氮含量对土壤-作物系统CO2排放的影响 总被引:18,自引:3,他引:18
为探讨作物生物学特征对土壤-作物系统CO2排放的影响,本研究基于逐步收割法和静态暗箱-气相色谱技术,以冬小麦和水稻作物为研究对象,采用盆栽和大田试验的方法,在作物生长的主要生育期原位测定了土壤-作物系统CO2排放速率,同时测定了作物生物量和氮含量.研究结果表明:①土壤-作物系统CO2排放在生长季内呈现动态变化,土壤-水稻系统CO2排放高于土壤-冬小麦系统.②作物暗呼吸速率与生物量呈显著线性相关.③作物暗呼吸系数(Rd)的季节变化可以用植株氮含量来描述.冬小麦Rd与N含量的关系可用线性方程Rd=0.0124N-0.0076(R2=0.9879,p<0.001)表示;水稻Rd与N含量的关系可用二次方程Rd=0.0085N2-0.0049NR2=0.9776,p<0.001)表示.④作物根系的参与极大地促进了土壤呼吸.冬小麦生长季土壤表观呼吸CO2平均值为247.2 mg·(m2·h)-1 ,高于未种作物土壤1.78倍,水稻生长季为215.3 mg·(m2·h)-1 CO2,高于未种作物土壤的3.38倍.冬小麦根系呼吸系数大于水稻,其根际呼吸对土壤表观呼吸的贡献高于水稻. 相似文献
55.
揭示了农业污染纠纷的内涵,提出了处理农业污染纠纷的4个“支撑点”,即运用农业技术先行界定,运用监测数据科学鉴证;运用因果关系逻辑推定,强化环境管理,疏通综合处理渠道等。 相似文献
56.
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
57.
运用水样叶绿素荧光仪(Water-PAM)研究了桉树叶水浸出液胁迫下湛江叉鞭金藻(Dicrateria zhanjiangensis)和纤细角毛藻(Chaetoceros gracilis)2种海洋微藻叶绿素荧光特性〔包括PS(光系统)Ⅱ的Fv/F0(潜在活性)、Fv/Fm(最大光能转化效率)、Yield(实际光能转化效率)、ETR(电子传递效率),其中Fm和F0分别为最大荧光和基础荧光〕的变化,同时监测微藻的生长情况,以研究桉树叶水浸出液对海洋微藻的影响,从而为探讨华南沿海大量种植桉树所造成潜在的海洋生态问题提供一些依据. 结果表明:①低浓度(以φ计,0.4、0.8、1.2mL/L)胁迫在96h内对湛江叉鞭金藻的上述4项荧光参数均无显著影响(P>0.05);高浓度(2.0mL/L)胁迫下,24h时湛江叉鞭金藻的4项荧光参数都处于最低值,48h时处于次低值. 表明高浓度在胁迫早期(48h内)对湛江叉鞭金藻4项荧光参数有抑制作用,而后期(72、96h)这4项荧光参数又恢复到正常水平,抑制作用解除. ②低浓度(0.4、0.8mL/L)胁迫下纤细角毛藻的4项荧光参数在24、48h内均得到促进,而高浓度(2.0mL/L)胁迫下Fv/Fm在24h时为最小值,表现抑制作用;另外3项荧光参数则未受显著影响. 在胁迫后期(72、96h),纤细角毛藻的4项荧光参数均随着胁迫浓度的增大而增加,表现为促进作用. ③就生长情况而言,随着胁迫浓度的增大,2种海洋微藻细胞密度的增长明显变缓. 表明桉树叶水浸出液对2种海洋微藻的生长以及叶绿素荧光特性都有影响,从而将会对整个海洋生态系统产生影响. 相似文献
58.
汞污染农田土壤低温热解处理性能研究 总被引:2,自引:0,他引:2
选取贵州清镇地区汞污染农田土壤作为低温热解修复试验对象,研究处理温度、处理时间以及土壤含水率对低温热解法去除土壤汞效率的影响。同时采用连续浸提法对土样中7种形态的汞进行提取,分析热解升温过程中各形态汞的变化状况。结果表明:(1)处理温度越高,汞去除效率越大。当温度为350℃时,去除率达到90%以上。(2)处理时间越长,汞的去除率越高。处理持续时间为90min时,去除率达到90%。(3)土壤含水率越高,汞去除率越低。当风干时间10 d,土壤含水率13.8%时为处理土壤最佳条件。(4)7种形态的汞随温度升高均下降显著,当温度达到350℃时,处理后土样中水溶态和交换态已完全去除,其他形态的去除率也均达到90%以上,土样中最终以残渣态汞为主,环境风险小。 相似文献
59.
60.