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采用150 g/L的聚乙二醇(Polyethylene glycol,PEG)模拟干旱胁迫,研究两种桑科植物(构树和桑树)的叶片光合及光呼吸特征对干旱胁迫的响应。对植物培养液的相关化学参数以及叶片的光合参数进行测定,结果表明:干旱对构树根系吸水能力的影响小于桑树的;构树以中光合-低蒸腾-高水分利用率的模式适应干旱环境,桑树以低光合-低蒸腾-高水分利用率的模式来应对干旱环境;在模拟干旱环境下,构树以稳定的羧化效率-高光呼吸速率-高光呼吸利用份额来适应外界胁迫,而桑树以低羧化效率-低光呼吸速率-低光呼吸利用份额来应对外界胁迫。构树表现出对外界干旱胁迫更好的适应性,这种适应机制可能与其较强的光呼吸作用及其碳酸氢根离子利用能力有关。这种"以碳换水"的机制可能是喀斯特适生植物适应岩溶干旱的又一个重要机制。 相似文献
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采用含有二乙二醇(DEG)和乙醇胺(ETA)的双组分解交联剂降解废旧硬质聚氨酯泡沫塑料(PU硬泡),并利用降解得到的低聚物多元醇与木质素复合制备出性能增强的再生PU硬泡。通过对制备的再生PU硬泡的红外光谱、密度、吸水率、抗压强度、热稳定性、导热系数、热重曲线等进行分析测试,考察m(DEG)∶m(ETA)对再生PU硬泡性能的影响。实验结果表明:m(DEG)∶m(ETA)=1∶3时废旧PU硬泡的降解效果最好;木质素加入量为2.0%(w)时再生PU硬泡的密度低、抗压强度高、保温性能良好,达到国家标准《建筑绝热用硬质聚氨酯泡沫塑料》(GB/T 21558—2008)的品质要求。 相似文献
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Jitendra Kumar Najam A. Shakil Manish K. Singh Pankaj Mukesh K. Singh Alka Pandey 《Journal of environmental science and health. Part. B》2013,48(4):310-314
Controlled release (CR) formulations of azadirachtin-A, a bioactive constituent derived from the seed of Azadirachta indica A. Juss (Meliaceae), have been prepared using commercially available polyvinyl chloride, polyethylene glycol (PEG) and laboratory synthesized poly ethylene glycol–based amphiphilic copolymers. Copolymers of polyethylene glycol and various dimethyl esters, which self assemble into nano micellar aggregates in aqueous media, have been synthesized. The kinetics of azadirachtin-A, release in water from the different formulations was studied. Release from the commercial polyethylene glycol (PEG) formulation was faster than the other CR formulations. The rate of release of encapsulated azadirachtin-A from nano micellar aggregates is reduced by increasing the molecular weight of PEG. The diffusion exponent (n value) of azadirachtin-A, in water ranged from 0.47 to 1.18 in the tested formulations. The release was diffusion controlled with a half release time (t1/2) of 3.05 to 42.80 days in water from different matrices. The results suggest that depending upon the polymer matrix used, the application rate of azadirachtin-A can be optimized to achieve insect control at the desired level and period. 相似文献
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采用溶胶-凝胶法制备TiO2/Ti负载体系,并以聚乙二醇2000(PEG-2000)为模拟废水对其光催化性能进行研究。实验表明,TiO2/Ti的最佳负载条件为镀膜层数8层、pH值为3、焙烧温度700℃、焙烧时间2 h,掺杂Fe3+、Ag+、La3+、Pt4+4种金属离子均可有效提高TiO2/Ti对PEG-2000模拟废水的处理效果,在Ag+掺杂量为0.3%、焙烧温度800℃时,2.5h反应后的COD去除率达到了79.5%。XRD分析表明,金属离子的加入抑制了TiO2由锐钛矿相向金红石相转化。GC-MS分析表明,PEG-2000的光催化是大分子分解为小分子然后被矿化的过程。 相似文献
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采用聚乙二醇(PEG)和海藻酸钠(SA)作为混合固定化载体材料对硝化细菌进行包埋固定化.结果表明,PEG和SA质量分数分别为6%和4%时,其溶液黏稠度、成球效果及机械强度、传质性能等方面都均为最佳.另外,固定化小球扫描电镜显示球体为外密内疏的结构,这满足体内细胞泄漏少、外面细胞难以进入的条件.将所得最佳性能的固定化小球与游离菌体进行模拟废水降解对比试验,经过7d处理后废水中氨氮和亚硝态氮质量浓度都明显下降,且固定化颗粒的降解率要明显高于游离菌株,此时氨氮的去除率为90%,亚硝态氮去除率为80%. 相似文献
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目的 解决目前水露点数据多为人工采用测量仪器测得,时效性低且成本高昂的问题。方法 建立一种基于极端梯度提升(XGBoost)和随机森林(RF)的天然气水露点预测方法。采用XGBoost方法对所有监测工艺参数进行分析,筛选出主要影响水露点的关键工艺特征参数,以排除无关特征参数对预测的干扰。建立RF预测模型,输入关键特征集参数,实现对水露点的实时预测。以重庆气矿某脱水监测系统监测数据与生产数据为例,对所提预测方法进行对比分析验证。结果 相较于XGBoost、SVM等预测方法,RF模型具有最佳的预测性能,且经过XGBoost特征选择后,RF预测结果的MAE值降低了0.016 9 ℃,RMSE值降低了0.014 6 ℃。结论 基于极端梯度提升与随机森林融合的水露点预测方法具有更优的预测精度与鲁棒性,对指导脱水现场生产具有积极作用。 相似文献
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Andrea Corti Salvatore D'Antone Roberto Solaro Emo Chiellini 《Journal of Polymers and the Environment》1998,6(3):121-131
Different bacterial strains able to attack polyoxyethylene-type nonionic surfactants were isolated by enrichment procedure from the surface waters of the Arno River. Alkylphenol polyethoxylates and alkyl polyethoxylates, as well as polyethylene glycols, were degraded and assimilated by bacterial strains in axenic cultures. Degradative routes of polyethyleneoxide chains were investigated by matching each bacterial isolate with several types of nonionic surfactants and polyethers and by the identification of their degradation products isolated during aerobic digestion experiments. In accordance with previous reports, the first attack led to the shortening of the poly(oxyethylene) chains of the nonionic surfactants. It was found that the strains able to degrade PEG segments of nonionic surfactants possess enzymatic systems unable to degrade free PEGs, whereas those degrading the latter substrates cannot degrade PEG segments coupled to hydrophobic moieties. 相似文献
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聚对苯二甲酸乙二醇酯废料的回收方法 总被引:6,自引:0,他引:6
介绍了聚对苯二甲酸乙二醇酯传统的化学回收方法:甲醇醇解法、水解法和醣酵解法;简述了聚酯新的回收工艺:伊斯曼乙二醇水解工艺、超临界水水解工艺和Reco-PET工艺,及有关国家聚酯回收的工业化实践,并对聚酯回收的前景及影响聚酯回收的因素进行了分析。 相似文献
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结合工程实际,介绍了太阳能产业用多晶硅片切割过程中产生的割液废液的处理工艺及回收工艺,并分析了它的投资成本和经济效益。 相似文献