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11.
The global plastics production has increased annually and a substantial part is used for packaging (in Europe 39%). Most plastic packages are discarded after a relatively short service life and the resulting plastic packaging waste is subsequently landfilled, incinerated or recycled. Laws of several European and Asian countries require that plastic packaging waste collected from households has to be sorted, reprocessed, compounded and reused. These recycling schemes typically produce milled goods of poly(ethylene terephthalate) (PET), poly(ethylene) (PE), isotactic poly(propylene) (PP), mixed plastics, and agglomerates from film material. The present study documents the composition and properties of post-consumer polyolefin recyclates originating from both source separation and mechanical recovery from municipal solid refuse waste (MSRW). The overall composition by Fourier transform-infrared (FT-IR) spectroscopy and differential scanning calorimetry (DSC) were determined and compared with the sorting results of the sorted fractions prior to the reprocessing into milled goods. This study shows that the collection method for the plastic packaging waste has hardly any influence on the final quality of the recyclate; however, the sorting and reprocessing steps influence the final quality of the recyclate. Although the mechanical properties of recyclate are clearly different than those of virgin polymers, changes to the sorting and reprocessing steps can improve the quality. 相似文献
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Vincent T. Breslin 《Journal of Polymers and the Environment》1998,6(1):9-21
The compostability of starch–CaCO3 disposable packaging was examined in a source-separated municipal solid waste (MSW) composting facility located in East Hampton, NY. Source-separated MSW:starch–CaCO3 container mixtures of 0 (control), 5, and 20% (by volume) were prepared as feedstock for composting. Compost samples were collected weekly or biweekly during the composting process and examined for fragments of the starch–CaCO3 containers. Changes in compost quality due to the presence of starch–CaCO3 containers were assessed by measuring the nutrient and metal content of the three resultant MSW:starch–CaCO3 composts. Finally, plant growth studies were conducted to examine the composts for possible plant growth inhibition due to the deterioration of the starch–CaCO3 containers. Results showed that portions of the starch–CaCO3 containers were not identified in any of the 5 and 20% sieved and characterized compost fractions > 1.3 cm following 1–3 weeks of composting. Mechanical agitation of the waste along with optimum composting conditions were sufficient to initiate the rapid degradation of the starch–CaCO3 composites. Degradation of starch–CaCO3 containers did not affect compost nutrient and trace element content. Grass biomass measurements were performed once weekly over 28 days for grass grown in control (0%), 5%, and 20% starch–CaCO3-containing compost:soil mixtures. Significant differences in grass biomass for these compost:soil mixtures were measured only for the 0 and 20% starch–CaCO3-containing compost:soil mixtures at 28 days (9.07 vs 11.05 g, respectively; P = 0.046). 相似文献
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Trace metal emissions from co-combustion of refuse derived and packaging derived fuels in a circulating fluidized bed boiler 总被引:3,自引:0,他引:3
Helena Manninen Annikki Perkiö Juha Palonena Karl Peltola Juhanl Ruuskanen 《Chemosphere》1996,32(12):2457-2469
Energy recovery from refuse derived fuels (RDF) and packaging derived fuels (PDF) is one option in integrated waste management. Nine RDF and PDF co-combustion tests with peat and coal in a circulating fluidized bed boiler were carried out in this work. Heavy metal emissions in flue gas and fly ash were measured. Multivariate data analyses were used to find out the most important parameters affecting metal emissions in the flue gas.
The results showed that total heavy metal emissions were low. Although RDF and PDF had more heavy metals than peat and coal, the multivariate data analysis showed that an increase of the RDF or PDF share in the fuel mixture up to 20% did not correlate directly with the metal emissions in the flue gas. Distribution of Cd, Cu, Zn and Sn between flue gas and fly ash correlated with each other. Injection of limestone to bind sulphur and chlorine did not have a significant effect on heavy metal emissions in the flue gas. Heavy metals concentrated on the fly ash, but all fly ashes passed the EPA-TCLP tests. 相似文献
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Behind humanitarian assistance and disaster relief (HADR) efforts are governance networks of actors working together to facilitate, coordinate, and deliver joint aid and response initiatives. Militaries are key stakeholders in these networks because of their unique capabilities, particularly in Southeast Asia. This paper explores the role of military governance networks in shaping HADR affairs. It presents a framework for examining military-to-military relational structures in humanitarian and disaster contexts using network theory and social network analysis. It also assesses the nature of military ties and their influence on two capability areas essential to humanitarian activities in the region: (i) the distribution of military assets and equipment used in HADR; and (ii) the coordination of HADR exercises and training. This paper seeks to provide insights into how governance network features and properties affect the capacity of ASEAN (Association of Southeast Asian Nations) militaries to use available resources efficiently and to achieve shared objectives in regional disaster response. 相似文献
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以聚乳酸快递包装为研究对象,运用生命周期评价(LCA)方法对聚乳酸快递包装的原料获取、加工、使用及5种处置情景的环境影响进行比较,并采用累积能源需求(CED)方法对能源消耗情况进行分析.功能单位(1000个规模为25×35cm的聚乳酸快递袋,918kg)快递袋原材料获取、加工及使用阶段的环境影响潜能值分别为1.09×10-9、5.64×10-10、1.24×10-10.海洋水生态毒性是聚乳酸快递袋环境影响的主要类型,占77%;非生物资源耗竭潜能值、人类毒性次之,分别占9%和6%.能源消耗主要类型为不可再生能源,占总能源消耗的89%,其中,快递袋使用阶段为主要贡献阶段,占比为91%.处理阶段5种处置情景中情景Ⅴ(焚烧47%,填埋13%,回收40%)对环境最为友好,通过增加焚烧和回收处置的比例,减少填埋比例对环境有着更为积极的影响. 相似文献
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纸基复合包装中的纸基部分通过水力碎浆分离后可直接用于生产再生纸. 其铝塑部分由1层0.02~0.03 mm厚的铝箔和2层0.03~0.08 mm厚的低密度聚乙烯膜层压复合而成,主要对铝塑的湿法分离进行研究.比较了甲酸、乙酸、盐酸3种剥离剂的分离效果; 用甲酸作为铝塑剥离剂时, 考察了剥离剂的浓度、反应温度、液固比及破碎尺寸对铝塑分离的影响; 根据铝塑分离时间、分离率、铝的损失率等指标,通过正交试验及方差分析优化铝塑分离的工艺条件. 结果表明,甲酸分离铝塑的最优条件: 剥离剂浓度为4 mol/L, 反应温度为60 ℃,液固比为60 L/kg, 破碎尺寸为5 cm×5 cm. 在该条件下, 铝塑的分离率达到100%. 相似文献
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