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61.
Bioabsorbable Soy Protein Plastic Composites: Effect of Polyphosphate Fillers on Biodegradability 总被引:8,自引:0,他引:8
Alan H. Tkaczyk Joshua U. Otaigbe Kai-Lai G. Ho 《Journal of Polymers and the Environment》2001,9(1):19-23
The use of biodegradable polymers made from renewable agricultural products such as soy protein isolate has been limited by the tendency of these materials to absorb moisture. A straightforward approach for controlling the inherent water absorbency of the biodegradable polymers involves blending special bioabsorbable polyphosphate fillers, biodegradable soy protein isolate, plasticizer, and adhesion promoter in a high-shear mixer followed by compression molding. The procedure yields a relatively water-resistant, biodegradable soy protein polymer composite, as previously reported. The aim of the present study is to determine the biodegradability of the new polyphosphate filler/soy protein plastic composites by monitoring the carbon dioxide released over a period of 120 days. The results suggest that the composites biodegrade satisfactorily, with the fillers having no significant effect on the depolymerization and mineralization of the soy protein plastic, processes that would otherwise result in nonbiodegradable composites. Further, the results indicate that the biodegradation and useful service life of these biocomposites may be controlled by changing the filler concentration, making the biocomposites useful in applications in which the control of water resistance and biodegradation is critical. 相似文献
62.
Zhao Rongfang Ye Shufeng Xie Yusheng Chen Yunfa 《Journal of Material Cycles and Waste Management》2007,9(1):7-14
A new way to implement the simultaneous reutilization of solid waste, the desulfurization of coke oven gas (COG), and even
the desulfurization of coke by the co-coking of coking coal (CC) and waste plastic (WP) blended with a sorbent is proposed;
the evolution of H2S and the removal efficiency of H2S from COG during the co-coking process were investigated in a lab-scale cylindrical reactor. The experimental results indicated
that for the coking of CC blended with ZnO, Fe2O3, or blast furnace dust (BFD) as a sorbent, the instantaneous concentration of H2S in COG was lower than 500 mg/m3 (which meets the technical specification requirement of the Chinese Cleaner Production Standard–Coking Industry, HJ/T 126-2003)
when the molar ratio between the key component of the sorbent and the volatile S in CC or the CC/WP blend, n
Zn+Fe/n
S, was about 1.2 for ZnO and Fe2O3, but not for BFD under the same conditions, suggesting that ZnO and Fe2O3 are promising sorbents, but that BFD must be treated chemical or thermally before being used as a sorbent because of the
size and complicated nature of the influence of its phase/chemical composition on its desulfurization ability. However, for
the co-coking of CC and WP blended with ZnO as a sorbent, n
Zn+Fe/n
S must increase to 1.4 and 1.7 for 100/2 and 100/5 blends of CC/WP, respectively, to ensure a satisfactory efficiency for H2S removal from COG.
Part of this paper was presented at the International Symposium on EcoTopia Science 2005 (ISET05), Aug 8–9, 2005, Chikusa-ku,
Nagoya, Japan 相似文献
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66.
概述了干膜润滑涂层的原理。研制的WJ-R01干膜耐磨自润滑涂层具有耐磨减摩自润滑性能突出,耐腐蚀性能优异,能适应海洋大气环境等特点。介绍了其组成、理化性能,以及应用施工等情况。在兵器某枪械上应用效果良好。 相似文献
67.
68.
研究了废弃含溴化阻燃剂的电子塑料在超临界异丙醇中的液化特性.研究结果表明塑料在超临界异丙醇中发生了解聚,产生油、气以及固体残渣,塑料中的溴化阻燃剂发生了脱溴降解.反应时间、固/液比、溶剂填充度对塑料解聚及阻燃剂脱溴降解影响较大,在最佳工艺条件(温度:400℃,反应时间:60min,固/液比:1/10,溶剂填充度:50%)下获得60%的产油率及95.3%的脱溴率.油以苯系物及酚类物质为主要组成物质,其热值为37.5MJ/kg.超临界异丙醇处理含溴化阻燃剂塑料主要包括溴化阻燃剂的萃取、脱溴降解和塑料高温解聚等过程. 相似文献
69.
以位于西南大学农业部重庆紫色土生态环境重点野外科学观测试验站内的稻-油轮作为研究对象,采用静态箱/气相色谱法,对覆膜和对照(不覆膜)处理下稻油轮作CO2、CH4和N2O排放特征进行了为期1 a的原位观测.结果表明,稻-油轮作农田CO_2、CH_4和N_2O排放通量均呈现出明显的季节变化,且2种处理下这3种温室气体的季节变化模式相似.覆膜处理下稻-油轮作农田全年CH_4排放量为(46. 14±13. 40) kg·hm~(-2),相比于对照处理下的(18. 61±2. 05) kg·hm~(-2),提高了147. 93%(P 0. 05),但覆膜对CO_2和N_2O的排放影响并不显著,覆膜及对照处理下CO2年排放量分别是(-47. 54±2. 11) t·hm~(-2)和(-47. 60±2. 19) t·hm~(-2),N2O年排放量分别是(18. 94±4. 74) kg·hm~(-2)和(23. 14±3. 68) kg·hm~(-2).覆膜和对照处理下GWP值分别为-41. 16 t·hm~(-2)和-40. 95 t·hm~(-2),表现为大气温室气体的吸收汇,但差异并不显著. 相似文献
70.
以环状生物膜挂片反应器(BAR)模拟实际管网,研究了有氯、无氯2种原水情况下,镀锌钢、铸铁、不锈钢、PE、UPVC5种管材上细菌的生长规律.结果表明,单位面积最大细菌数,镀锌钢>铸铁>UPVC>不锈钢>PE;在无氯原水的试验中,达到单位面积最大细菌数所需天数,镀锌钢>(铸铁、不锈钢)>UPVC,PE管上细菌没有较大增加.加氯可控制镀锌钢、PE、UPVC上细菌的生长速度,此外,3种金属管材会发生锈蚀,引起水浊度、色度上升;PE是防止微生物在管壁生长最理想的管材;不锈钢则是值得选择的金属材料. 相似文献