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排序方式: 共有193条查询结果,搜索用时 31 毫秒
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Charles M. Buchanan Debra Dorschel Robert M. Gardner Ron J. Komarek Andrew J. Matosky Alan W. White Matthew D. Wood 《Journal of Polymers and the Environment》1996,4(3):179-195
In this account, we report our findings on blends of cellulose acetate having a degree of substitution (DS) of 2.49 (CA2.5) with a cellulose acetate having a DS of 2.06 (CA2.0). This blend system was examined over the composition range of 0–100% CA2.0 employing both solvent casting of films (no plasticizer) and thermal processing (melt-compressed films and injection molding) using poly(ethylene glycol) as a common plasticizer. All thermally processed blends were optically clear and showed no loss in optical quality after storage for several months. Thermal analysis and measurement of physical properties indicate that blends in the middle composition range are partially miscible, while those at the ends of the composition range are miscible. We suggest that the miscibility of these cellulose acetate blends is influenced primarily by the monomer composition of the copolymers. Bench-scale simulated municipal composting confirmed the biodestructability of these blends and indicated that incorporation of a plasticizer accelerated the composting rates of the blends.In vitro aerobic biodegradation testing involving radiochemical labeling conclusively demonstrated that both the lower DS CA2.0 and the plasticizer significantly enhanced the biodegradation of the more highly substituted CA2.5.While this work was in progress, Robert Gardner was struck with cancer and died on June 6, 1995. This paper is dedicated to his memory and to his contributions as a friend and colleague. 相似文献
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制备了不同β-环糊精(β-CD)含量的醋酸纤维素(CA)纳米纤维膜,并对纤维膜的结构形貌、尺寸分布、孔隙率、比表面积以及纤维膜的力学性能进行表征分析。随后研究了不同β-CD含量、初始浓度、吸附时间下,纳米纤维膜对甲基红染料的截留性能和吸附性能。结果表明:过量(≥30%)的β-环糊精会使纳米纤维产生珠节,纤维的形貌和力学性能变差;吸附试验表明,β-CD的加入提高了CA纳米纤维膜对染料的吸附,MR吸附率可达93.48%,最大平衡吸附量可达181.74 mg/g,比纯CA纳米纤维膜提高了将近40%;此外,染料的截留实验表明,纳米纤维膜对染料的截留效果较差,最大截留率为50.35%。 相似文献
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通过静态实验,考察了电子供体类型及用量对厌氧条件下微生物去除地下水中高氯酸盐的影响.结果表明,电子供体醋酸盐和H2的加入,可以明显提高ClO4-的去除率,驯化后的微生物去除ClO4-的速率比未加入电子供体时提高约1.4~3倍.Monod动态模型能很好地拟合两种电子供体环境下ClO4-的微生物去除过程,分别以醋酸盐和H2作为电子供体时,基质半饱和常数Ks为12.6 mg·L-1和2.2 mg·L-1,最大比基质消耗速率Vm为0.45 d-1和0.08 d-1.动力学参数表明,本实验条件下,异养型混合菌去除ClO4-的效果明显优于自养型混合菌;在少数受高浓度ClO4-污染的地下水环境中,为了提高ClO4-的去除速率只有通过增加菌体浓度或提高微生物酶的活性来实现.随着电子供体醋酸盐用量增加,ClO4-的(比)消耗速率逐渐增大.当初始CH3COO-与ClO4-的比例为3.80 mg(COD)/mg(ClO4-)时,比消耗速率v最大(0.27 d-1). 相似文献
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建立了用气相色谱法测定大气中乙酸乙酯和甲基丙烯酸甲酯的方法。大气中乙酸乙酯和甲基丙烯酸甲酯活性炭吸附,二硫化碳解吸,DB-200毛细管柱分离,直接进样分析,氢火焰离子化检测器检测,时间定性,峰面积定量。本方法前处理简便,分离度好,分析灵敏度高,满足环境分析要求。 相似文献
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Catalytic oxidation is widely used in pollution control technology to remove volatile organic compounds. In this study, Pd/ZSM-5 catalysts with different Pd contents and acidic sites were prepared via the impregnation method. All the catalysts were characterized by means of N2 adsorption- desorption, X-ray fluorescence (XRF), HE temperature programmed reduction (H2-TPR), and NH3 temperature programmed desorption (NH3-TPD). Their catalytic performance was investigated in the oxidation of butyl acetate experiments. The by-products of the reaction were collected in thermal desorption tubes and identified by gas chromatography/mass spectrometry. It was found that the increase of Pd content slightly changed the catalytic activity of butyl acetate oxidation according to the yield of CO2 achieved at 90%, but decreased the cracking by-products, whereas the enhancement of strong acidity over Pd-based catalysts enriched the by-product species. The butyl acetate oxidation process involves a series of reaction steps including protolysis, dehydrogenation, dehydration, cracking, and isomerization. Generally, butyl acetate was cracked to acetic acid and 2- methylpropene and the latter was an intermediate of the other by-products, and the oxidation routes of typical by-products were proposed. Trace amounts of 3-methylpentane, hexane, 2-methylpentane, pentane, and 2-methylbutane originated from iso4merization and protolysis reactions. 相似文献
8.
pH值与乙酸对易腐有机垃圾水解过程的抑制 总被引:1,自引:0,他引:1
通过外部添加水解酶比较和区分pH值和乙酸对水解的影响,结果表明:以固相挥发性固体和元素碳的减少以及液相有机碳的增加表征水解率,在pH=7时最大,144h的水解率可达66.9%;与pH=7相比,pH=8-9时,水解率降低8%-24%;pH=5-6,水解率降低40%-60%.20g·l-1乙酸的加入抑制了水解,在不同pH值条件下与不添加乙酸的水解相比,抑制程度为2%-35%,pH=7时乙酸的抑制最显著,可达35%.颗粒态物料的水解过程动力学符合Chen-Hashimoto公式. 相似文献
9.
针对煤气脱硫废料(简称废料)的成分(硫、碳、萘及少量其他有机物),提出了一种处理废料的新工艺,先用乙酸乙酯提取废料中的萘和少量其他有机物,再用复合溶剂B加热溶解废料,热过滤得碳粉,最后将溶液冷却结晶分离出硫。实验结果表明:在乙酸乙酯与废料的质量比(R1)为3.75,提取温度为60℃,提取时间为4h的条件下,萘回收率为98%,纯度大于等于70%,在复合溶剂B与提取剩余物的质量比(R2)为2.69,过滤温度为100℃的条件下,硫回收率接近100%,纯度大于等于99%,碳回收率和纯度为100%。 相似文献
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