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71.
随着社会经济的发展和人们生活水平的提高,人们对居住生活环境质量要求也越来越高,如何为人们提供一个安全舒适、健康、和谐、高效并具有良好景观效果的居住空间是景观设计师在做规划设计时首要解决的问题。  相似文献   
72.
短时间微流水处理对异育银鲫肌肉品质的影响   总被引:1,自引:0,他引:1  
采用微流水系统处理池塘养殖异育银鲫(Carassius auratus gibelio),测定不同处理时间(0~9 d)鲫肌肉的主要营养成分、滋味特征、气味特征和挥发性成分等参数,研究微流水处理对鲫肌肉品质的提升作用。结果显示,微流水处理对养殖鲫肌肉中水分、粗蛋白和粗脂肪含量的影响不大(P0.05),但对鱼肉中灰分、肌糖原和总糖含量及滋味、气味及感官评分有显著影响(P0.05)。随着微流水处理时间延长,鲫鱼肉中肌糖原、总糖含量显著下降,灰分明显增加(P0.05)。电子舌和电子鼻检测结果显示,微流水处理可显著改变鲫肌肉的滋味特征、气味特征。随着微流水处理时间延长,鲫肌肉中异味挥发物含量明显减少、鱼肉自身代表性风味物质含量明显增加,且蒸熟后鱼肉的气味、滋味、质地和总分等评分明显升高,微流水处理7 d的鲫肌肉的感官评分优于0、1、3、5 d样品的,而与微流水处理9 d的样品无差异。综上可见,短时间微流水处理(≤7 d)不影响鲫鱼肉中粗蛋白和粗脂肪含量,但可显著改善养殖鲫肌肉品质,其适宜处理时间为7 d。  相似文献   
73.
This study evaluated the protection effectiveness of alcohol-borne reagents for the green color of ma bamboo (Dendrocalamus latiflorus Munro) and moso bamboo (Phyllostachys pubescens Mazel). The results show that the types and concentrations of alcohol-borne reagents, the kinds of solvent, and the conditions of treatment greatly affected the green color of these two bamboo species. Without alkali pretreatment, an excellent green color protection (a* = −14.5) was obtained when the ma bamboo culms were treated with 0.5% methanol-borne copper chloride (CuCl2) at 60°C for 30 min. Similar results were also obtained when ma bamboo culms were treated with 0.5% methanol-borne copper nitrate [Cu(NO3)2] at 60°C for 2 h (a* = −13.5). For moso bamboo, an attractive green color in the bamboo culms was achieved by treating the specimens with 1% methanol-borne copper acetate [Cu(CH3COO)2] at 60°C for 30 min. The a* value of treated specimens was −13.3. In addition, results demonstrated that ultrasonic treatment was more effective on green color protection than conventional water bath treatment. When moso bamboo was treated with 1% copper acetate at 60°C in an ultrasonic bath for only 15 min, a remarkable green color with an a* value of −13.6 was obtained on the bamboo epidermis.  相似文献   
74.
环保阻燃胶的开发   总被引:6,自引:0,他引:6  
为了改善人造板的阻燃性能及降低人造板游离甲醛释放量,在引进国外先进技术基础上,历经两年的消化、吸收、创新工作,开发出一种集环保、阻燃、抑烟、胶粘于一体的环保型阻燃胶。实验室及福州人造板厂生产性试验结果表明,这种胶粘剂符合中密度纤维板生产的要求,可生产出低游离甲醛释放的阻燃中密度纤维板。初步的成本分析表明,与常用阻燃剂相比,这种阻燃胶在价格上极具优势。  相似文献   
75.
This study examined the hypothesis that incorporation of Gliricidia sepium (Jacq.) Walp.) (gliricidia), a fast-growing, nitrogen-fixing tree, into agroforestry systems in southern Malawi may be used to increase the input of organic fertilizer and reduce the need for expensive inorganic fertilizers. The productivity of maize (Zea mays L.), pigeonpea (Cajanus cajan L.) and gliricidia grown as sole stands or in mixed cropping systems was examined at Makoka Research Station (latitude 15° 30′ S, longitude 35° 15′ E) and a nearby farm site at Nazombe between 1996 and 2000. Treatments included gliricidia intercropped with maize, with or without pigeonpea, and sole stands of gliricidia, maize and pigeonpea. Trees in the agroforestry systems were pruned before and during the cropping season to provide green leaf manure. Maize yields and biomass production by each component were determined and fractional light interception was measured during the reproductive stage of maize. Substantial quantities of green leaf manure (2.4 to 9.0 Mg ha−1 year−1) were produced from the second or third year after tree establishment. Green leaf manure and fuelwood production were greatest when gliricidia was grown as unpruned sole woodlots (c. 8.0 and 22 Mg ha−1 year−1 respectively). Improvements in maize yield in the tree-based systems also became significant in the third year, when c. 3.0 Mg ha−1 of grain was obtained. Tree-based cropping systems were most productive and exhibited greater fractional light interception (c. 0.6 to 0.7) than cropping systems without trees (0.1 to 0.4). No beneficial influence of pigeonpea on maize performance was apparent either in the presence or absence of gliricidia at either site in most seasons. However, as unpruned gliricidia provided the greatest interception of incident solar radiation (>0.9), coppicing may be required to reduce shading when gliricidia is grown together with maize. As pigeonpea production was unaffected by the presence of gliricidia, agroforestry systems containing gliricidia might be used to replace traditional maize + pigeonpea systems in southern Malawi. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   
76.
通过对山西省偏关县退耕还林、加快后续产业发展主要做法的调查。认为柠条先行、灌草结合、兴林促牧是一条改善生态、发展经济、农民增益、实现“三嬴”之路。推进灌草结合造林模式,不仅缓解了林牧矛盾,巩固了退耕还林成果,也为加快农村产业结构调整、推动农民在退耕还林后发展商品型畜牧业创造了有利条件。  相似文献   
77.
浅谈绿色设计   总被引:4,自引:0,他引:4  
从绿色设计产生的背景、绿色设计及绿色产品的基本概念、绿色设计研究的主要内容、绿色设计方法和程序几方面来阐述绿色设计。  相似文献   
78.
相对于我国退耕还林工程,农区林业的优势在于:经营模式多样,农民经营风险低,行为自主性较强,为农村剩余劳动力(特别是妇女)提供更多就业机会,政府干预较少。我国退耕还林工程应该学习农区林业的成功经验,从政策上做出调整,建立促使农民积极参与的激励机制,并减少政府的直接干预,以降低政策成本。  相似文献   
79.
This paper examines the first-best instruments for biodiversity maintenance in commercial boreal forests when landowners behave either in Faustmannian or Hartmanian way. Using an extended Hartman model, we show that biodiversity conservation requires both prolonged rotation age and leaving retention trees. While the former promotes some old growth species, the latter create new structural elements of decaying and dead wood, which can sustain a variety of saprolyxic species. A fully synchronized combination of retention tree subsidy and tax instrument is needed both to lengthen the privately optimal rotation period and to provide an incentive to leave retention trees. Using Finnish data we illustrate empirically the sizes of instruments. When combined with a harvest tax, the retention tree subsidy is 1000 and 750 € in the Faustmann and in the Hartman model, respectively. When used with a timber subsidy or a site value tax, the retention tree subsidy is 1700 €/ha in both models. The harvest tax rate varies over the range 40–65% in the Faustmann model and 20–40% in the Hartman model, while timber subsidy is between 0.5–1.0% and site value tax is about 1.75%.  相似文献   
80.
日本龟蜡蚧在枣树上的发生与危害   总被引:3,自引:0,他引:3  
1996年8月 ̄1997年6月,在陕西大荔县八鱼乡西营村和蒲支县平路庙乡直杜村调查了日本龟蜡蚧在枣树上的分布与危害。结果表明,单叶幼虫数随枣树受害程度的增加而增加,单果重随枣树爱害程度的增加而减少,越冬雌虫的危害造成每股的抽吊数减少,吊长显著变短,每吊的刺树数减少,幼虫和雌成虫在树冠上的分布是阳面(南面)大于阴面(北面),其中树冠中部虫量分布的最多。  相似文献   
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