Leaf trait networks(LTNs)visualize the intricate linkages reflecting plant trait-functional coordination.Typical karst vegetation,developed from lithological dolomite and limestone,generally exhibits differential comm...Leaf trait networks(LTNs)visualize the intricate linkages reflecting plant trait-functional coordination.Typical karst vegetation,developed from lithological dolomite and limestone,generally exhibits differential communities,possibly due to habitat rock exposure,soil depth,and soil physicochemical properties variations,leading to a shift from plant trait variation to functional linkages.However,how soil and habitat quality affect the differentiation of leaf trait networks remains unclear.LTNs were constructed for typical dolomite and limestone habitats by analyzing twenty-one woody plant leaf traits across fifty-six forest subplots in karst mountains.The differences between dolomite and limestone LTNs were compared using network parameters.The network association of soil and habitat quality was analyzed using redundancy analysis(RDA),Mantle's test,and a random forest model.The limestone LTN exhibited significantly higher edge density with lower diameter and average path length when compared to the dolomite LTN.It indicates LTN differentiation,with the limestone network displaying a more compact architecture and higher connectivity than the dolomite network.The specific leaf phosphorus and leaf nitrogen contents of dolomite LTN,as well as the leaf mass and leaf carbon contents of limestone LTN,significantly contributed to network degree and closeness,serving as crucial node traits regulating LTN connectedness.Additionally,both habitat LTNs significantly correlated with soil nitrogen and phosphorus,stoichiometric ratios,pH,and organic carbon,as well as soil depth and rock exposure rates,with soil depth and rock exposure showing greater relative importance.Soil depth and rock exposure dominate trait network differentiation,with the limestone habitat exhibiting a more compact network architecture than the dolomite habitat.展开更多
This paper introduces the effect of dolomite and limestone on waste tyre pyrolysis When waste tyre was pyrolyzed in 700?℃, the derived gases was passed through the catalyst zone in which the temperature was controlle...This paper introduces the effect of dolomite and limestone on waste tyre pyrolysis When waste tyre was pyrolyzed in 700?℃, the derived gases was passed through the catalyst zone in which the temperature was controlled at 700?℃, 800?℃and 900?℃, respectively It is found that both dolomite and limestone affect the product distribution of tyre pyrolysis with erhancing gas yield and effective absorption of H 2S The effect of these catalysts on tar cracking is obvious at 900?℃, however, the life of catalyst is short The product yields are about 40% for gas, 30% for liquid and 30% for char in the presence of dolomite and limestone The result indicates that multi use of the pyrolysed product is highly recommended [WT5H1]展开更多
2004年2月、9月、12月和2005年3月,利用澳大利亚产的微侵蚀计(M EM,M icroe-rosion m eter)对湖南郴州礼家洞观测点非岩溶流水中的碳酸盐岩(包括石灰岩和白云岩)试块进行了侵蚀速率的精确测定,共取得数据1550个。用SPSS应用软件对数据...2004年2月、9月、12月和2005年3月,利用澳大利亚产的微侵蚀计(M EM,M icroe-rosion m eter)对湖南郴州礼家洞观测点非岩溶流水中的碳酸盐岩(包括石灰岩和白云岩)试块进行了侵蚀速率的精确测定,共取得数据1550个。用SPSS应用软件对数据进行了处理,发现礼家洞非岩溶流水中的碳酸盐岩的侵蚀速率异常的高,最大的达到了13.6mm/a。在每次测量碳酸盐岩侵蚀速率的同时,使用德国WTW公司生产的MultilineP3多参数自动记录仪,对每个碳酸盐岩试块放置点的水温、pH值、电导率进行了现场监测,并取回水样分析了其中的主要阴阳离子浓度。通过对这些水化学资料的分析,发现礼家洞非岩溶流水的侵蚀能力很强,表现在水的CO2分压很高(可达到12882Pa),而方解石和白云石的饱和指数很低(分别达到-4.78和-10.35)。对比发现,非岩溶流水中碳酸盐岩的侵蚀速率与其方解石和白云石的饱和指数呈负相关关系,即水中方解石和白云石的饱和指数愈低,碳酸盐岩的侵蚀速率就愈高。此外,观察发现,碳酸盐岩试块本身的结构特别是本试验中白云岩的粗晶结构对其侵蚀速率有巨大的影响,反映了机械侵蚀(流水的物理搬运)对侵蚀速率的贡献(可达90%以上),这与传统的将碳酸盐岩试片放入土壤中测得的主要是化学溶蚀速率不同。展开更多
基金supported by the National Natural Science Foundation of China(NSFC:32260268)the Science and Technology Project of Guizhou Province[(2021)General-455]the Guizhou Hundred-level Innovative Talents Project[Qian-ke-he platform talents(2020)6004-2].
文摘Leaf trait networks(LTNs)visualize the intricate linkages reflecting plant trait-functional coordination.Typical karst vegetation,developed from lithological dolomite and limestone,generally exhibits differential communities,possibly due to habitat rock exposure,soil depth,and soil physicochemical properties variations,leading to a shift from plant trait variation to functional linkages.However,how soil and habitat quality affect the differentiation of leaf trait networks remains unclear.LTNs were constructed for typical dolomite and limestone habitats by analyzing twenty-one woody plant leaf traits across fifty-six forest subplots in karst mountains.The differences between dolomite and limestone LTNs were compared using network parameters.The network association of soil and habitat quality was analyzed using redundancy analysis(RDA),Mantle's test,and a random forest model.The limestone LTN exhibited significantly higher edge density with lower diameter and average path length when compared to the dolomite LTN.It indicates LTN differentiation,with the limestone network displaying a more compact architecture and higher connectivity than the dolomite network.The specific leaf phosphorus and leaf nitrogen contents of dolomite LTN,as well as the leaf mass and leaf carbon contents of limestone LTN,significantly contributed to network degree and closeness,serving as crucial node traits regulating LTN connectedness.Additionally,both habitat LTNs significantly correlated with soil nitrogen and phosphorus,stoichiometric ratios,pH,and organic carbon,as well as soil depth and rock exposure rates,with soil depth and rock exposure showing greater relative importance.Soil depth and rock exposure dominate trait network differentiation,with the limestone habitat exhibiting a more compact network architecture than the dolomite habitat.
文摘This paper introduces the effect of dolomite and limestone on waste tyre pyrolysis When waste tyre was pyrolyzed in 700?℃, the derived gases was passed through the catalyst zone in which the temperature was controlled at 700?℃, 800?℃and 900?℃, respectively It is found that both dolomite and limestone affect the product distribution of tyre pyrolysis with erhancing gas yield and effective absorption of H 2S The effect of these catalysts on tar cracking is obvious at 900?℃, however, the life of catalyst is short The product yields are about 40% for gas, 30% for liquid and 30% for char in the presence of dolomite and limestone The result indicates that multi use of the pyrolysed product is highly recommended [WT5H1]
文摘2004年2月、9月、12月和2005年3月,利用澳大利亚产的微侵蚀计(M EM,M icroe-rosion m eter)对湖南郴州礼家洞观测点非岩溶流水中的碳酸盐岩(包括石灰岩和白云岩)试块进行了侵蚀速率的精确测定,共取得数据1550个。用SPSS应用软件对数据进行了处理,发现礼家洞非岩溶流水中的碳酸盐岩的侵蚀速率异常的高,最大的达到了13.6mm/a。在每次测量碳酸盐岩侵蚀速率的同时,使用德国WTW公司生产的MultilineP3多参数自动记录仪,对每个碳酸盐岩试块放置点的水温、pH值、电导率进行了现场监测,并取回水样分析了其中的主要阴阳离子浓度。通过对这些水化学资料的分析,发现礼家洞非岩溶流水的侵蚀能力很强,表现在水的CO2分压很高(可达到12882Pa),而方解石和白云石的饱和指数很低(分别达到-4.78和-10.35)。对比发现,非岩溶流水中碳酸盐岩的侵蚀速率与其方解石和白云石的饱和指数呈负相关关系,即水中方解石和白云石的饱和指数愈低,碳酸盐岩的侵蚀速率就愈高。此外,观察发现,碳酸盐岩试块本身的结构特别是本试验中白云岩的粗晶结构对其侵蚀速率有巨大的影响,反映了机械侵蚀(流水的物理搬运)对侵蚀速率的贡献(可达90%以上),这与传统的将碳酸盐岩试片放入土壤中测得的主要是化学溶蚀速率不同。