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南京市溧水区林场锥栗群落特征研究
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作者 李冬林 孙戴妍 +2 位作者 张存宽 俞春萍 王燕 《江苏林业科技》 2018年第3期1-6,共6页
采用群落调查法,对南京溧水区林场锥栗群落的植物组成、物种多样性,及种群结构特征进行了研究。结果表明:群落内共发现有种子植物60种,隶属38科57属,其中乔木17种,灌木18种,草本25种;锥栗群落结构简单,层次分明,自上而下可分为乔木层、... 采用群落调查法,对南京溧水区林场锥栗群落的植物组成、物种多样性,及种群结构特征进行了研究。结果表明:群落内共发现有种子植物60种,隶属38科57属,其中乔木17种,灌木18种,草本25种;锥栗群落结构简单,层次分明,自上而下可分为乔木层、灌木层和草本层;锥栗在群落中的重要值最大,优势地位突出,是该群落的第1优势种;群落内物种多样性程度不高,Shannon-Wiener指数(H’)变化区间为1.4—1.8,Simpson指数(D)为0.67—0.83,而Pielou均匀度指数(J)为0.33—0.43。对种群结构分析表明,种群Ⅰ,Ⅱ级幼树缺少,幼苗贮备严重不足,种群不稳定,处于衰败之中,应尽快建立物种保护小区,促进幼苗更新和种群健康发展。 展开更多
关键词 锥栗 群落 种群 多样性指数 溧水区林场
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氮肥形态对李氏禾富集铜的影响及生理响应 被引量:4
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作者 张存款 林华 +2 位作者 满向甜 张学洪 陈俊 《生态环境学报》 CSCD 北大核心 2017年第9期1599-1604,共6页
土壤重金属污染是环境和生态领域研究的热点及难点。超富集植物受到土壤各种特性的影响,需要采取强化措施来提高植物修复效率。该文旨在加深对李氏禾(Leersia hexandra Swartz)累积铜的认知,为植物修复铜污染土壤提供理论数据。在土壤... 土壤重金属污染是环境和生态领域研究的热点及难点。超富集植物受到土壤各种特性的影响,需要采取强化措施来提高植物修复效率。该文旨在加深对李氏禾(Leersia hexandra Swartz)累积铜的认知,为植物修复铜污染土壤提供理论数据。在土壤中铜污染水平分别为低(100 mg·kg^(-1))、中(300 mg·kg^(-1))、高(500 mg·kg^(-1))时,研究不同氮肥(NH_4)_2SO_4、CO(NH_2)_2、Ca(NO_3)_2、NH_4NO_3处理对超富集植物李氏禾累积铜、植物生长的影响以及生理响应,氮肥按肥土质量比0.3‰以水溶液的形式每周添加1次,李氏禾生长两个月后,收获,进行植株分析。结果表明:在土壤铜污染水平为500 mg·kg^(-1)时,施加Ca(NO_3)_2后李氏禾根、茎、叶中的铜富集量达到最大,分别为6 167.15、1 251.99和975.92 mg·kg^(-1),约为对照处理组的2.5~4.0倍,相对于其他各氮肥处理和对照组差异达显著。在低、中、高Cu污染水平下,施加(NH_4)_2SO_4处理组李氏禾株高均显著高于其他处理组,分别为68.5、65.2和65 cm;CO(NH_2)_2组李氏禾生物量分别为12.75、13.45和11.63 g·10 plants-1;叶绿素质量浓度分别为24.139、22.615、23.752 mg·L^(-1);可溶性蛋白质量分数分别为21.704、23.506和20.940 mg·g^(-1);金属硫蛋白质量分数分别为9 131.06、10 014.02和11 018.04 pg·g-1,均高于其他处理组;而NH_4NO_3处理组李氏禾叶片中丙二醛(MDA)物质的量浓度最少,分别为0.893、0.957和0.859mmol·L^(-1),有效地缓解了铜对李氏禾的损伤。因此,适量施加氮肥可以有效提高李氏禾的生物量以及根、茎、叶各部分铜累积量,增强了李氏禾对铜污染土壤的修复效果。 展开更多
关键词 李氏禾 生理响应 氮肥形态
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Low-carbon design towards sustainable city development:Integrating glass space with natural greenery
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作者 CAO Shi-Jie zhang cunkuan +3 位作者 WANG JunQi FENG ZhuangBo CHEN Gang HAGHIGHAT Fariborz 《Science China(Technological Sciences)》 SCIE EI CAS 2024年第9期2659-2674,共16页
The rapid urban development has caused serious problems such as high energy consumption and carbon emissions,especially under the context of climate change.Buildings are particularly energy-intensive,generating about ... The rapid urban development has caused serious problems such as high energy consumption and carbon emissions,especially under the context of climate change.Buildings are particularly energy-intensive,generating about one third of global energyrelated carbon emissions.Compared with active solutions(like mechanical systems),passive solutions offer the potential to balance energy consumption,thermal comfort,and ecological benefits.One potential solution is the integration of green glass space(GGS)into passive building design.GGS is a transitional building space with glass curtain walls that exhibit excellent insulation performance during winter.However,GGS is susceptible to overheating during summer,which limits its applicability.Therefore,this work proposes a strategy of integrating vertical greenery into GGS,leveraging the nature-based solution of greenery(i.e.,flourishes in summer and withers in winter)to address this seasonal challenge of GGS.The results demonstrated that the strategic application of vertical greenery can effectively mitigate the overheating in GGS and improve comprehensive benefits.By using full coverage of vertical greenery in a linear layout,the air temperature of GGS and cooling energy consumption were largely reduced by 8.02℃and 12.2%,respectively,while the carbon abatement was enhanced by up to 101.11 tons.Based on a comprehensive evaluation of energy,economy,and environmental benefits,it is recommended to use a greenery configuration with 50%coverage in a vertical linear layout for GGS.The integration of greenery into building design can mitigate adverse environmental impacts,reduce energy consumption,and contribute to the sustainable development of low-carbon cities. 展开更多
关键词 low-carbon design green glass space vertical greenery greenery configuration carbon abatement
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