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51.
北京市新东城和新西城成立后迫切需要对现有生活垃圾物流方案进行优化,实现生活垃圾资源化处理.以北京市东西城区生活垃圾为研究对象,利用统计预测模型和GIS空间分析技术与方法,在分析了4个老城区生活垃圾产生量及所属密闭清洁站垃圾流向和流量基础上,提出了基于满负荷运行的三大转运站(马家楼、小武基和大屯)生活垃圾等距离收集运输优化物流模式,分析了现状及新物流模式下生活垃圾物料平衡.结果表明,与现状收集模式相比,等距离优化物流模式可使清运距离减少约9.3×105km.a-1,与现状相比减少10%;同时,基于三大转运站满负荷运转的,部分考虑海淀、丰台和朝阳区跨区运行的生活垃圾优化物流模式下,且充分利用现有的处理处置设施,可减少原生垃圾填埋量约28.3%.在优化模式的基础上若北京市正筹建的3座垃圾焚烧厂建成后,可使新东西城区生活垃圾焚烧、生化、填埋比例由现状1∶4.8∶4.2,达到3.8∶4.5∶1.7,可基本接近北京市2015年生活垃圾焚烧、堆肥和填埋比例达到4∶3∶3规划目标. 相似文献
52.
河套灌区土壤水和地下水动态变化及水平衡研究 总被引:4,自引:0,他引:4
为探究田间土壤水及地下水在不同作物种植区、不同灌期等情况下的动态变化规律与水平衡特征,以春小麦、玉米、向日葵为典型作物,在河套灌区选取4块2亩的试验田,于2009年4-11月采集田间土壤及地下水样品进行研究.结果表明,不同作物地块间土壤含水率的变化差别主要集中在5-9月的作物生长期.夏灌灌水量不足,土壤含水率呈下降趋势,田间土壤水分变化属于“蒸腾蒸发消耗型”;秋浇期内水量充足,各地块各土层含水率均明显增加,田间土壤水分呈“入渗补给型”.各地块地下水埋深月均变化趋势基本一致,由于优先流的存在,地下水对灌溉降水响应快.本文定量研究了区域土壤水和地下水的变化规律,揭示了灌区水平衡要素间的相互转换关系,可为灌区科学合理的水资源管理提供理论依据. 相似文献
53.
54.
在追求环境效应与经济发展获得"双赢"的今天,跨行政区域联合执法已经成为平衡区域环境利益、妥善解决区域间环境纠纷,进而促进环境与经济协调发展的重要手段。本文提出了包括组建联合执法小组、主持联合执法会议、建立信息共享平台和实现联合监测的联合执法机制,并概括地阐述了确立长效性执法主体、先期处理制度、联合执法活动、活动监督、异议处理和惩罚制度的具体执行程序。试图利用联合执法的机制来解决区域间环境利益失衡的难题,以期为决策者提供相应的理论支持或政策参考。 相似文献
55.
镉胁迫对虾夷扇贝抗氧化防御系统的影响 总被引:1,自引:0,他引:1
实验研究了虾夷扇贝在96 h的急性毒性效应,以及不同浓度Cd2+(0,0.005,0.025,0.050,0.150和0.300 mg/L)对虾夷扇贝内脏团超氧化物岐化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽-过氧化物酶(GSH-PX)活力的影响,以探讨其用于污染暴露的生物标记的可行性。结果表明:虾夷扇贝96 h的LC50为1.73 mg/L;其95%的置信区间是1.58~1.90 mg/L;安全浓度为0.0173 mg/L。酶活力:0.025 mg/L及以上的各实验组SOD活力先上升后下降,在第3 d时达到峰值,与对照组呈显著差异(P<0.05);处理第6 d,各浓度组SOD活力有所下降,到第9 d时受到抑制;CAT活力在处理0.5 d时,0.025mg/L0、.150 mg/L和0.300 mg/L三个浓度组均受到显著诱导(P<0.05),处理第6 d时,各实验组酶活力开始受到抑制。两种酶对实验设计的Cd2+浓度反应敏感,呈现出"诱导-抑制"规律,对海洋Cd2+早期污染具有指示作用。GSH-PX对Cd2+污染没有SOD和CAT那样敏感,GSH-PX的各个实验组与对照组相比差异均不显著,因而它作为对海洋Cd2+早期污染指示物的意义不大。 相似文献
56.
羟基磷灰石对Cd污染土壤中马铃薯生长及品质的影响 总被引:1,自引:0,他引:1
通过温室盆栽实验研究了施用羟基磷灰石改良Cd污染土壤对马铃薯生长及品质的影响.实验设置了3个Cd污染水平(0、5、10 mg.kg-1)、6个羟基磷灰石施用量(0、4、8、10、16、30 g.kg-1)和2个马铃薯品种(中薯3号、大西洋).结果表明,土壤Cd污染导致马铃薯单株产量下降(5 mg.kg-1的Cd污染土壤中降低24%~31%,10 mg.kg-1的Cd污染土壤中降低41%~45%),但是施用羟基磷灰石可以提高单株产量.相对于不施用羟基磷灰石,5 mg.kg-1的Cd污染土壤中施用10 g.kg-1的羟基磷灰石可以增产17%~39%,10 mg.kg-1的Cd污染土壤中施用30 g.kg-1的羟基磷灰石可以增产45%~58%.由于羟基磷灰石改善了Cd污染土壤环境,因此马铃薯器官中叶绿素含量和SOD活性明显上升,而MDA含量明显下降.施用羟基磷灰石也提高了马铃薯品质,马铃薯块茎中维生素C含量、淀粉含量以及蛋白质含量也明显提高.随着羟基磷灰石施用量由0 g.kg-1增加到30 g.kg-1,在5 mg.kg-1的Cd污染土壤中,马铃薯块茎Cd含量由0.87~0.95 mg.kg-1下降到0.13~0.21 mg.kg-1,降幅为78%~85%;在10 mg.kg-1的Cd污染土壤中,块茎Cd含量由1.86~1.93 mg.kg-1下降到0.52~0.65 mg.kg-1,降幅为66%~72%.实验表明,羟基磷灰石缓解土壤Cd毒性的主要机制是提高土壤pH值,降低土壤中有效态Cd含量,羟基磷灰石中的Ca阻碍土壤Cd向马铃薯迁移.但是羟基磷灰石对土壤Cd毒性的缓解效应是有限性的,过量施用可能对马铃薯生长和品质产生胁迫作用.在Cd污染土壤中施用适量的羟基磷灰石后中薯3号生长状况和品质好于大西洋,说明不同马铃薯品种对种植环境的改善有不同的响应. 相似文献
57.
Oxidative stress and DNA damages induced by cadmium accumulation 总被引:22,自引:0,他引:22
Experimental evidence shows that cadmium (Cd) could induce oxidative stress and then causes DNA damage in animal cells, however, whether such effect exists in plants is still unclear. In the present study, Vicia faba plants was exposed to 5 and 10 mg/L Cd for 4 d to investigate the distribution of Cd in plant, the metal effects on the cell lipids, antioxidative enzymes and DNA damages in leaves. Cd induced an increase in Cd concentrations in plants. An enhanced level of lipid peroxidation in leaves and an enhanced concentration of H2O2 in root tissues suggested that Cd caused oxidative stress in Vicia faba. Compared with control, Cd-induced enhancement in superoxide dismutase activity was significant at 5 mg/L than at 10 mg/kg in leaves, by contrast, catalase and peroxidaseactivities were significantly suppressed by Cd addition. DNA damage was detected by neutral/neutral, alkaline/neutral and alkaline/alkaline Comet assay. Increased levels of DNA damages induced by Cd occurred with reference to oxidative stress in leaves, therefore, oxidative stress induced by Cd accumulation in plants contributed to DNA damages and was possibly an important mechanism of Cd-phytotoxicity in Vicia faba plants. 相似文献
58.
Variation of soil fertility and carbon sequestration by planting Hevea brasiliensis in Hainan Island, China 总被引:5,自引:0,他引:5
The development of rubber industry depends on the sustainable management of rubber plantation. To evaluate the environmental effects of planting Hevea brasiliensis on a subsystem of tropical forest ecosystem, the variation of soil fertility and carbon sequestration under rubber plantation within 30-year life period were investigated in Hainan Island. Results showed that (1) with the increase of stand age of rubber plantation, soil fertility decreased all along. From 1954 to 1995, soil organic matter, total N, available K and available P decreased by 48.2%, 54.1%, 56.7% and 64.1%, respectively. (2) If the complete return of litters was considered without additional fertilizer application to the soil of the rubber plantations, the consumption periods for P, N, K, Mg were only 825 years, 329 years, 94 years and 65 years, respectively~ To improve soil fertility is essential for rubber plantation development. (3) The C sequestration of rubber trees per hectare accounts for 272.08 t within 30-year life period and 57.91% of them was fixed in litters. In comparison with C sequestration by rain forest (234.305 t/hm^2) and by secondary rain forest (150.203 t/hm^2), rubber forest has more potentials for C fixation. On the base of above results, the following measures would benefit the maintenance of soil fertility and the development of rubber industry, including applying fertilizer to maintain the balance of soil nutrients, intercropping leguminous plant to improve soil fertility, reducing the collection of litters, optimizing soil properties to improve element P availability such as applying CaCO3. The information gathered from the study can be used as baseline data for the sustainable management of rubber plantation elsewhere. 相似文献
59.
The nitrogen (N) distribution and cycling of atmosphere-plant-soil system in the typical meadow Calamagrostis angustifolia wetland (TMCW) and marsh meadow Calamagrostis angustifolia wetland (MMCW) in the Sanjiang plain were studied by a compartment model. The results showed that the N wet deposition amount was 0.757 gN/(m2·a), and total inorganic N (TIN) was the main body (0.640 gN/(m2·a)). The ammonia volatilization amounts of TMCW and MMCW soils in growing season were 0.635 and 0.687 gN/m2, and the denitrification gaseous lost amounts were 0.617 and 0.405 gN/m2, respectively. In plant subsystem, the N was mainly stored in root and litter. Soil organic N was the main N storage of the two plant-soil systems and the proportions of it were 93.98% and 92.16%, respectively. The calculation results of N turnovers among compartments of TMCW and MMCW showed that the uptake amounts of root were 23.02 and 28.18 gN/(m2·a) and the values of aboveground were 11.31 and 6.08 gN/(m2·a), the re-translocation amounts from aboveground to root were 5.96 and 2.70 gN/(m2·a), the translocation amounts from aboveground living body to litter were 5.35 and 3.38 gN/(m2·a), the translocation amounts from litter to soil were larger than 1.55 and 3.01 gN/(m2·a), the translocation amounts from root to soil were 14.90 and 13.17 gN/(m2·a), and the soil (0-15cm) N net mineralization amounts were 1.94 and 0.55 gN/(m2·a), respectively. The study of N balance indicated that the two plant-soil systems might be situated in the status of lacking N, and the status might induce the degradation of C. angustifolia wetland. 相似文献
60.
江西省陆地生态系统氮平衡的时空分布规律研究 总被引:4,自引:1,他引:3
利用系统物质平衡模型,对1995-2005年江西省陆地生态系统的N收支平衡进行了核算,并分析了不同来源N收支量的时间序列特征以及N盈余强度的空间分布特征,探讨了自然灾害和政策实施对N平衡的影响.结果表明:江西省陆地生态系统的N输入量变化范围是(155.5-184.2)×107kg·a-1,平均值为168.5 ×107 ... 相似文献