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981.
Ambient air quality data, including atmospheric visibility, of Foshan city, a highly polluted city in the Pearl River Delta (PRD), and data obtained by the On-line Air Pollutant Exhaust Monitoring Network (OAPEMN), recently established by the National Emission Monitoring and Control Network for major industrial enterprises, were analyzed and are reported here for the first time, revealing the change in air pollution patterns and its impact on visibility degradation in the last decade. Reduced visibility of less than 8 km (after elimination of rainy and foggy periods) was found 22% of the time from 1998 to 2008, accompanied by elevated levels of pollutants, especially SO2 and PM10, in comparison with that of other developed cities. However, PM10 showed a steady decreasing trend (0.004 mg m???3 year???1) during 2001?C2008, in contrast to the noticeable increase in ambient NO2 concentrations from ~0.020 mg m???3 before 2005 to above 0.050 mg m???3 afterward. Multiple regression analysis revealed that the percentage of reduced visibility strongly correlated with PM10 concentration, suggesting that visibility degradation was directly proportional to the loading of particles. Moreover, the fairly significant correlation between reduced visibility and NO2 concentration also implied that the impact of primary emissions of NO2 and enhanced secondary pollutants, formed via photochemical processes in the atmosphere, could not be ignored. The decreased PM10 levels were obviously the predominant factor for the improvement in visibility (5.0% per 0.01 mg m???3) and were likely due to the implementation of stricter air pollution control measures for industrial exhaust, which also resulted in reduced SO2 pollution levels in the recent 2 years. In particular, the OAPEMN records showed an overall enhanced SO2 removal by 64% in major industrial sectors. The continuous increase in road traffic and lack of efficient NO x control strategies in the PRD region, however, caused an increase in ambient NO2 concentrations.  相似文献   
982.
为明确大田条件下施用钝化材料对镉(Cd)污染农田土壤的原位钝化效应及其持续性,以秸秆生物炭、 YH粉、粉煤灰、海泡石和页岩粉(粒径均<0.2 mm,施用量均为2.25kg·m-2)这5种钝化材料为研究对象,连续监测3 a稻-麦轮作模式下原位钝化处理对土壤养分、土壤酸碱度、土壤Cd污染状况和种植作物籽粒Cd含量的影响,探讨其钝化效应及持续性,为有效控制农田土壤Cd污染、保证作物安全生产提供理论依据和数据支撑.结果表明:(1)稻-麦轮作模式下,施用5种钝化材料对土壤养分含量影响较小,但均可提高土壤pH,促使土壤Cd由酸提取态向残渣态转化,降低土壤Cd有效性,其中秸秆生物炭与YH粉处理下当季土壤有效Cd含量的降幅最大(20.42%~22.53%),是其它钝化处理的1.07~1.84倍.(2)稻-麦轮作模式下,首年施用5种钝化材料后均显著降低了水稻和小麦籽粒Cd含量,降幅分别达19.88%~48.77%和5.06%~24.00%.施用秸秆生物炭、粉煤灰和YH粉后作物籽粒Cd含量显著低于对照和其它钝化材料,该处理条件下的水稻籽粒ω(Cd)(0.195、0.197和0....  相似文献   
983.
This study involved an evaluation of the potential for bioremediation of polychlorinated biphenyls(PCBs) in the effluent from a large municipal wastewater treatment plant. It was focused on the presence of PCBs in two types of effluents: the continuous effluent present during dry weather conditions and the intermittently present effluent that was present during wet weather due to incoming stormwater. The annual discharge of PCBs for both types of effluent was calculated based on a five-year dataset(2011–2015). In addition, the toxicity and bioremediation potential of the PCBs in the effluent were also assessed. It was found that the continuous effluent was responsible for the majority of the discharged PCB into the receiving river(1821 g for five years), while the intermittent effluent contributed 260 g over the five years.The average number of chlorine per biphenyl for the detected PCB congeners showed a 19%difference between the two types of effluent, which indicated a potential for organohalide respiration of PCBs during the continuous treatment. This was further supported by a high level of tri-, tetra-and penta-chlorinated congeners accounting for 75% of the anaerobically respired PCBs. Potential for aerobic degradation and thus biomineralization of PCBs was identified for both effluents. Furthermore, toxicity of 12 dioxin-like PCBs showed that normal operation of the wastewater reduced the toxicity throughout the wastewater treatment plant.  相似文献   
984.

Black-odorous waters are an increasingly common phenomenon characterized by excessive levels of nutrients, the formation of metal sufide precipitates, volatile sulfurous compounds, low dissolved oxygen and high chemical oxygen demand. Black-odorous waters frequently occur in lake and river systems where inputs have restricted circulation. The key remediation issue is the removal of nitrogen and phosphorus. Here, we present a novel aeration-adsorption system using fiber balls and we study treatment parameters and removal mechanism. Kinetics and changes of the solid phase were followed using Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy, and X-ray diffraction. Results show complete removal of ammonia N, initially at 31 mg/L, and 92.8% removal of total nitrogen, initially at 29 mg/L, after a 24 h reaction time at pH 9.67. At pH 5.67 and 9.67, total phosphorus and phosphate could be significantly reduced by 90–92% at 3.2–5.2 mg/L after 24 h. Treatment met China’s integrated wastewater discharge standards, demonstrating an effective and robust treatment capability. First-order and second-order kinetic models provided a good fit to the treatment data, indicating physical and chemical adsorption were involved in the treatment reactions. The reaction mechanism involved hydrogen substitution and binding to oxygen. These results present a cost effective and robust approach for the removal of N and P from black, odorous water, providing opportunity to abate environmental contamination.

  相似文献   
985.
Environmental Chemistry Letters - The demand for nanoparticles has been increasing rapidly in recent years due to their unique properties of interest for a wide range of applications. Several...  相似文献   
986.
987.
Environmental Science and Pollution Research - Combined thermal power (CHP) production mode plays a more important role in energy production, but the impact of its pollutant emission on the natural...  相似文献   
988.
Carbamazepine is frequently detected in waters and hardly eliminated during conventional wastewater treatment processes due to its complicated chemical structure and resistance to biodegradation. A carbamazepine-degrading bacterium named CBZ-4 was isolated at a low temperature (10℃) from activated sludge in a municipal wastewater treatment plant. Strain CBZ-4, which can use carbamazepine as its sole source of carbon and energy, was identified as Pseudomonas sp. by the 16S rRNA gene sequence. The composition and percentage of fatty acids, which can reveal the cold-adaptation mechanism of strain CBZ-4, were determined. Strain CBZ-4 can effectively degrade carbamazepine at optimal conditions: pH 7.0, 10℃, 150 r/min rotation speed, and 13% inoculation volume. The average removal rate of carbamazepine was 46.6% after 144 hr of incubation. The biodegradation kinetics of carbamazepine by CBZ-4 was fitted via the Monod model. Vmax and Ks were found to be 0.0094 hr^-1 and 32.5 mg/L, respectively.  相似文献   
989.
主要论述基于网络的电除尘器分布式可控监测系统的构架。简述了它的运行模式,并综合利用计算机网络,监测,控制等多顶技术,给出了软件的设计流程。  相似文献   
990.
Environmental Science and Pollution Research - Nitrogen (N) loss is generally caused by denitrification under anaerobic conditions and the N loss in the heterotrophic nitrification_aerobic...  相似文献   
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