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811.
对80名接触二硫化碳的生产工人进行了血脂和心血管系统影响的调查.结果显示,接触组的收缩压和舒张压均值与对照组相比,均明显增高(收缩压t=4.15,P<0.01;舒张压t=2.89,P<0.01);心电图异常和高血压发生率两组相比,接触组亦明显高于对照组,差异有极显著性意义(心电图异常χ2=23.06,P<0.01;高血压χ2=18.03,P<0.01);但血脂(TC,TG,HDL-C,LDL-C)检查,两组相比,差别均无显著性意义(P均>0.05).研究显示,较长时间接触二硫化碳对心血管系统可产生影响,表现为血压升高,心电功能异常. 相似文献
812.
Mechanism for the destruction of carbon tetrachloride and chloroform DNAPLs by modified Fenton's reagent 总被引:1,自引:0,他引:1
The destruction of a carbon tetrachloride DNAPL and a chloroform DNAPL was investigated in reactions containing 0.5 mL of DNAPL and a solution of modified Fenton's reagent (2M H2O2 and 5mM iron(III)-chelate). Carbon tetrachloride and chloroform masses were followed in the DNAPLs, the aqueous phases, and the off gasses. In addition, the rate of DNAPL destruction was compared to the rate of gas-purge dissolution. Carbon tetrachloride DNAPLs were rapidly destroyed by modified Fenton's reagent at 6.5 times the rate of gas purge dissolution, with 74% of the DNAPL destroyed within 24h. Use of reactions in which a single reactive oxygen species (hydroxyl radical, hydroperoxide anion, or superoxide radical anion) was generated showed that superoxide is the reactive species in modified Fenton's reagent responsible for carbon tetrachloride DNAPL destruction. Chloroform DNAPLs were also destroyed by modified Fenton's reagent, but at a rate slower than the rate of gas purge dissolution. Reactions generating a single reactive oxygen species demonstrated that chloroform destruction was the result of both superoxide and hydroxyl radical activity. Such a mechanism of chloroform DNAPL destruction is in agreement with the slow but relatively equal reactivity of chloroform with both superoxide and hydroxyl radical. The results of this research demonstrate that modified Fenton's reagent can rapidly and effectively destroy DNAPLs of contaminants characterized by minimal reactivity with hydroxyl radical, and should receive more consideration as a DNAPL cleanup technology. 相似文献
813.
814.
简易水处理活性炭的选择和应用方法 总被引:18,自引:11,他引:7
首先介绍活性炭性能测试与水处理活性炭选炭、吸附技术选择、工艺应用的关系,其次报导两个活性炭选用方面的改进方法。通过重新定义、整合、完善现有活性炭性能指标,建立了以酚值、碘值、亚甲基蓝、丹宁酸值为吸附性能指标的选炭方法。这四种指标化合物的分子量与直径覆盖了大多数有机污染物的范围,用此法可减少活性炭应用测试的炭型。在活性炭精选和吸附工艺应用研究中,用微型炭柱进行穿透实验可弥补缩小式传统型、小型炭柱的不足。相对于国外现用微型柱的实验方法,文中介绍的微型柱快速穿透(MCRB)方法的设备要求较低,操作简单,可以在国内大多数实验室中进行;遇过对多种污染物质的实验结果,建立了MCRB方法的可信性和适用性。这两种新方法完善了活性炭水处理研究的实验体系,可降低其应用于水与污水处理的成本,有利于中国的环境保护。 相似文献
815.
活性炭吸附-微波技术再生处理粘胶纤维废气的研究 总被引:1,自引:0,他引:1
针对粘胶纤维厂冷凝处理后的废气浓度低的特点,开发了吸附-微波再生处理技术。主要考察了吸附剂的种类、H2S和CS2进口浓度、湿度的影响,同时还对微波再生条件和效果进行了实验。结果表明,活性炭对二硫化碳的吸附效果较好;H2S和CS2进口浓度很低(Ci<200mg/m3)时对吸附影响不明显;湿度对吸附影响很大。实验亦证实,微波再生后的活性炭性能有很大的改善。 相似文献
816.
Perrine C. S. J. Laroche Catharina J. E. Schulp Thomas Kastner Peter H. Verburg 《Ambio》2022,51(3):770
Nearly three-quarters of global natural rubber production is used to produce tyres, supporting mobility around the globe. The projected increase in mobility could contribute to further expansion of rubber plantations and impact tropical ecosystems. We quantified the use of natural rubber in tyres in the European Union (EU), the corresponding land footprint, and explored drivers of tyre use using country-specific transport statistics and trade registers of rubber goods. Five percent of the world’s natural rubber is consumed in tyres used in the EU, using up to a quarter of the area under rubber plantations in some producing countries. Car use is responsible for 58% of this consumption, due to car-dependent lifestyles that are associated with economic prosperity and spatial planning paradigms. While the EU’s transport policy focuses on reducing dependence on fossil-fuels, cross-cutting policies are needed to address car-dependency and reduce the EU’s land footprint in tropical landscapes without compromising progress towards decarbonisation.Supplementary InformationThe online version contains supplementary material available at 10.1007/s13280-021-01579-x. 相似文献
817.
Paul J. Mann Jens Strauss Juri Palmtag Kelsey Dowdy Olga Ogneva Matthias Fuchs Michael Bedington Ricardo Torres Luca Polimene Paul Overduin Gesine Mollenhauer Guido Grosse Volker Rachold William V. Sobczak Robert G. M. Spencer Bennet Juhls 《Ambio》2022,51(2):439
Arctic warming is causing ancient perennially frozen ground (permafrost) to thaw, resulting in ground collapse, and reshaping of landscapes. This threatens Arctic peoples'' infrastructure, cultural sites, and land-based natural resources. Terrestrial permafrost thaw and ongoing intensification of hydrological cycles also enhance the amount and alter the type of organic carbon (OC) delivered from land to Arctic nearshore environments. These changes may affect coastal processes, food web dynamics and marine resources on which many traditional ways of life rely. Here, we examine how future projected increases in runoff and permafrost thaw from two permafrost-dominated Siberian watersheds—the Kolyma and Lena, may alter carbon turnover rates and OC distributions through river networks. We demonstrate that the unique composition of terrestrial permafrost-derived OC can cause significant increases to aquatic carbon degradation rates (20 to 60% faster rates with 1% permafrost OC). We compile results on aquatic OC degradation and examine how strengthening Arctic hydrological cycles may increase the connectivity between terrestrial landscapes and receiving nearshore ecosystems, with potential ramifications for coastal carbon budgets and ecosystem structure. To address the future challenges Arctic coastal communities will face, we argue that it will become essential to consider how nearshore ecosystems will respond to changing coastal inputs and identify how these may affect the resiliency and availability of essential food resources.Supplementary InformationThe online version contains supplementary material available at 10.1007/s13280-021-01666-z. 相似文献
818.
819.
炭素石墨制品生产过程中产生的石墨化废旧辅料,在炭素行业是最有开发潜力的固体废物。通过初加工可实现回收利用,经研制开发新产品可实现综合利用。该综合利用方法表明,在实现综合利用中可获得大的经济效益和可观的社会效益。 相似文献
820.
新型水处理活性炭选型技术 总被引:8,自引:5,他引:3
活性炭依其原料不同、生产工艺不同,而有不同的吸附性能.使用简易的活性炭选型方法,可以减少应用测试时的备选炭型,从而大大降低活性炭水处理技术的运行成本.以碘值、甲基蓝值、苯酚值和丹宁酸值4种吸附容量性能指标为依据的活性炭选型技术,可以有效地预测活性炭对于水中各种大小不同污染物的去除能力.BET测试结果证明了这4项指标数据对于活性炭孔径分布预测的准确性.2,4-二氯苯酚和腐殖酸等目标化合物的吸附容量实验结果也都验证了这4项指标的预测功用,说明这种简便的活性炭选型技术有着广泛的应用价值. 相似文献