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831.
全球环境基金(GEF)"通过环境无害化管理减少电器电子产品的生命周期内持久性有机污染物和持久性有毒化学品(POPs/PTS)的排放全额示范项目"湖北省作为项目示范省之一.三家废弃电器电子产品拆解企业,分别开展了废弃电器电子产品拆解技术示范、湿法废弃印刷电路板处置BAT/BEP技术示范、利用再生铅连续熔炼炉协同处置阴极射线管含铅锥玻璃项目技术示范.电子废弃物全自动化分类与拆解生产线,为电子废弃物绿色循环与资源化提供了示范模式.  相似文献   
832.
为掌握可溶性有机质(DOM)对憎水性有机污染物吸附和解吸行为的影响,本研究选取四环多环芳烃——芘作为目标污染物,通过批平衡实验研究了不同分子量组分DOM对芘在泥炭和高岭土上吸附和解吸的影响.结果表明,吸附和解吸数据均可以用Freundlich模型很好地拟合(R2>0.93).DOM的添加抑制了泥炭对芘的吸附,并且分子量越大的DOM产生的抑制效应越明显,主要是由于DOM与芘分子的竞争、增溶作用及泥炭表面微孔的堵塞引起的.与之相反,DOM促进了芘在高岭土上的吸附,DOM分子量越大,促进效应越强,这是由于DOM与芘分子之间通过累积吸附或共吸附增加高岭土对芘的吸附.DOM促进了芘在泥炭和高岭土上的解吸,并且促进效应随分子量的增加而增强.此外,芘在泥炭和高岭土上的解吸均存在迟滞现象,均在低浓度时表现出更明显的效应.DOMbulk和DOM_(>14000 Da)增加了芘在泥炭上的解吸迟滞现象,但降低了其在高岭土上的解吸迟滞现象.  相似文献   
833.
Natural channel design (NCD) and analytical channel design (ACD) are two competing approaches to stable channel design that share fundamental similarities in accounting for sediment transport processes with designs based on hybrid fluvial geomorphology and hydraulic engineering methods. In this paper, we highlight the linkage between ACD's capacity/supply ratio (CSR) and NCD's sediment capacity models (FLOWSED/POWERSED), illustrating how ACD and NCD have reached a point of convergent evolution within the stream restoration toolbox. We modified an existing CSR analytical spreadsheet tool which enabled us to predict relative channel stability using both conventional bed load transport equations and regional sediment regression curves. The stable channel design solutions based on measured data most closely matched the Parker (ACD) and/or Pagosa good/fair (NCD) relationships, which also showed the greatest CSR sensitivity in response to channel alterations. We found that CSR differences among the transport relationships became more extreme the further the design width deviated from the supply reach, suggesting that a stable upstream supply reach may serve as the best design analog. With this paper, we take a step toward resolving lingering controversy in the field of stream restoration, advancing the science and practice by reconciling key differences between ACD and NCD in the context of reach scale morphodynamics.  相似文献   
834.
为了改善堆肥微环境 ,提高生活垃圾堆肥速率 ,研究堆肥工艺条件及其反应动力学是非常必要的。通过控制堆肥工艺条件 ,如初始温度、含水率、C/N比及堆料颗粒大小 ,研究生活垃圾堆肥过程中生物、化学及物理因素的变化。试验结果表明 ,生活垃圾堆肥反应符合一级反应动力学 ;合理控制堆肥初始反应条件 ,能明显提高堆肥效率。  相似文献   
835.
刘妍妍  龙焰  尹华  叶锦韶  何宝燕  张娜 《环境科学》2013,34(11):4349-4355
设计全因子实验研究了NO-3-N对填埋10~12 a的矿化垃圾中兼/厌氧甲烷氧化作用的影响.结果表明,兼/厌氧条件下,NO-3-N能促进矿化垃圾中CH4的去除.初始CH4和NO-3-N对CH4去除和N2产生有明显影响,且两者具有交互作用(P<0.05).CH4去除量随着初始CH4体积分数的增加而增加,添加一定含量的NO-3-N能促进CH4去除,同时通入一定体积分数CH4可以明显促进反硝化作用,说明矿化垃圾中NO-3-N还原能与兼/厌氧甲烷氧化耦合.本实验条件下,初始CH4体积分数为30%,NO-3-N含量为110 mg·kg-1时耦合效应较好.  相似文献   
836.
在京津冀地区可持续发展评估研究中,对生态系统服务价值进行动态估算具有重要意义.本文以京津冀地区为研究区,基于谷歌地球引擎(GEE)云平台采用分类决策树(CART)分类算法对研究区内1998、2003、2008、2013及2018年的Landsat TM/OLI影像进行监督分类得到5个时期土地利用数据并定量分析1998~2018年京津冀地区土地利用动态变化规律,再利用生态服务价值(ESV)当量估算方法定量估算京津冀地区的ESV并结合15 km×15 km尺度格网探明其时空动态变化.结果表明:①1998~2018年间,京津冀地区6种土地利用类型中建设用地(增加16. 67%)及草地(减少13. 73%)面积占比变化幅度最大,水体(减少0. 2%)面积占比变化幅度最小.②京津冀地区ESV总价值在1998~2003年间出现短暂增长(增加91. 97亿元),2003~2018年间持续降低(减少239. 07亿元),主要与建设用地面积在除1998~2003年的其余3个时间段扩张较快有关,6种土地利用类型中林地提供的ESV最高,建设用地及未利用土地提供的ESV最低.③基于15 km×15 km尺度格网的ESV时空分析表明,1998~2018年间京津冀地区ESV中等区逐渐较少,ESV较低区及较高区逐渐增加,且ESV较低区增速高于较高区.④1998~2018年间,京津冀地区6种土地利用类型对价值系数的敏感性系数(SI)范围为0~0. 40,且均低于1,表明本文ESV对修订后的生态系统服务价值系数缺乏弹性,证明本文定量估算ESV的结果是可靠的.在未来经济发展中,京津冀地区应合理优化土地利用格局,加强对林地、草地、水体及耕地的保护.研究可为制定可持续发展战略,建设生态友好型社会提供参考.  相似文献   
837.
田晓峰  侯浩波 《四川环境》2005,24(2):21-23,46
医疗垃圾属于国家规定的危险废物,焚烧后的残渣同样存在最后稳定化的问题,国外处理方法主要是填埋和基础回填,本文通过对两种胶凝材料(普硅水泥和复合矿渣水泥)对医疗废渣的固定化效果研究,探讨医疗废渣再利用的可行性和影响因素。  相似文献   
838.
• An integrated method, called PHDVPSS, was proposed for treating DCS. • The PHDVPSS method showed superior performance compared to conventional method. • Using the method, water content (%) of DCS decreased from 300 to<150 in 3 days. • The 56-day UCS from this method is 12‒17 times higher than conventional method. • Relative to PC, GGBS-MgO binder yielded greater reduction in the leachability. To more efficiently treat the dredged contaminated sediment (DCS) with a high water content, this study proposes an integrated method (called PHDVPSS) that uses the solidifying/stabilizing (S/S) agents and prefabricated horizontal drain (PHD) assisted by vacuum pressure (VP). Using this method, dewatering and solidification/stabilization can be carried out simultaneously such that the treatment time can be significantly shortened and the treatment efficacy can be significantly improved. A series of model tests was conducted to investigate the effectiveness of the proposed method. Experimental results indicated that the proposed PHDVPSS method showed superior performance compared to the conventional S/S method that uses Portland cement (PC) directly without prior dewatering. The 56-day unconfined compressive strength of DCS treated by the proposed method with GGBS-MgO as the binder is 12‒17 times higher than that by the conventional S/S method. DCS treated by the PHDVPSS method exhibited continuous decrease in leaching concentration of Zn with increasing curing age. The reduction of Zn leachability is more obvious when using GGBS-MgO as the binder than when using PC, because GGBS-MgO increased the residual fraction and decreased the acid soluble fraction of Zn. The microstructure analysis reveals the formation of hydrotalcite in GGBS-MgO binder, which resulted in higher mechanical strength and higher Zn stabilization efficiency.  相似文献   
839.
•Bacterially-mediated coupled N and Fe processes examined in incubation experiments. •NO3 reduction was considerably inhibited as initial Fe/N ratio increased. •The maximum production of N2 occurred at an initial Fe/N molar ratio of 6. •Fe minerals produced at Fe/N ratios of 1–2 were mainly easily reducible oxides. The Fe/N ratio is an important control on nitrate-reducing Fe(II) oxidation processes that occur both in the aquatic environment and in wastewater treatment systems. The response of nitrate reduction, Fe oxidation, and mineral production to different initial Fe/N molar ratios in the presence of Paracoccus denitrificans was investigated in 132 h incubation experiments. A decrease in the nitrate reduction rate at 12 h occurred as the Fe/N ratio increased. Accumulated nitrite concentration at Fe/N ratios of 2–10 peaked at 12–84 h, and then decreased continuously to less than 0.1 mmol/L at the end of incubation. N2O emission was promoted by high Fe/N ratios. Maximum production of N2 occurred at a Fe/N ratio of 6, in parallel with the highest mole proportion of N2 resulting from the reduction of nitrate (81.2%). XRD analysis and sequential extraction demonstrated that the main Fe minerals obtained from Fe(II) oxidation were easily reducible oxides such as ferrihydrite (at Fe/N ratios of 1–2), and easily reducible oxides and reducible oxides (at Fe/N ratios of 3–10). The results suggest that Fe/N ratio potentially plays a critical role in regulating N2, N2O emissions and Fe mineral formation in nitrate-reducing Fe(II) oxidation processes.  相似文献   
840.
• Real ML-GFW with high salinity and high organics was degraded by O3/H2O2 process. • Successful optimization of operation conditions was attained using RSM based on CCD. • Single-factor experiments in advance ensured optimal experimental conditions. • The satisfactory removal efficiency of TOC was achieved in spite of high salinity. • The initial pH plays the most significant role in the degradation of ML-GFW. The present study reports the use of the O3/H2O2 process in the pretreatment of the mother liquor of gas field wastewater (ML-GFW), obtained from the multi-effect distillation treatment of the gas field wastewater. The range of optimal operation conditions was obtained by single-factor experiments. Response surface methodology (RSM) based on the central composite design (CCD) was used for the optimization procedure. A regression model with Total organic carbon (TOC) removal efficiency as the response value was established (R2 = 0.9865). The three key factors were arranged according to their significance as: pH>H2O2 dosage>ozone flow rate. The model predicted that the best operation conditions could be obtained at a pH of 10.9, an ozone flow rate of 0.8 L/min, and H2O2 dosage of 6.2 mL. The dosing ratio of ozone was calculated to be 9.84 mg O3/mg TOC. The maximum removal efficiency predicted was 75.9%, while the measured value was 72.3%. The relative deviation was found to be in an acceptable range. The ozone utilization and free radical quenching experiments showed that the addition of H2O2 promoted the decomposition of ozone to produce hydroxyl radicals (·OH). This also improved the ozone utilization efficiency. Gas chromatography-mass spectrometry (GC-MS) analysis showed that most of the organic matters in ML-GFW were degraded, while some residuals needed further treatment. This study provided the data and the necessary technical supports for further research on the treatment of ML-GFW.  相似文献   
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