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黄土丘陵区不同恢复年限人工刺槐林土壤水分时空动态及其时间稳定性 被引量:18
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作者 陈维梁 王树学 +5 位作者 齐统祥 焦磊 王聪 买尔当·克依木 李宗善 傅伯杰 《生态学报》 CAS CSCD 北大核心 2021年第14期5643-5657,共15页
以空间代时间的方法研究不同恢复年限对人工刺槐林土壤水分时空动态及其时间稳定性的影响,对于了解人工刺槐林在生态恢复过程中的土壤水分动态特征具有重要意义。基于长期定位观测,选取黄土丘陵沟壑区15、20、30、35 a等4个恢复年限人... 以空间代时间的方法研究不同恢复年限对人工刺槐林土壤水分时空动态及其时间稳定性的影响,对于了解人工刺槐林在生态恢复过程中的土壤水分动态特征具有重要意义。基于长期定位观测,选取黄土丘陵沟壑区15、20、30、35 a等4个恢复年限人工刺槐林,自2014年5月至2018年10月每年生长季(5-10月)开展土壤水分自动观测。研究结果如下:(1)不同恢复年限刺槐林土壤水分差异显著,刺槐林土壤储水量随恢复年限增加呈现先增加后降低的趋势,排序依次为30 a(184.9 mm)>20 a(184.6 mm)>35 a(150.8 mm)>15 a(128.8 mm);不同恢复年限刺槐林土壤水分的时空分布特征差异明显,土壤水分变异性随土层增加而降低,但不随恢复年限而有规律的变化;土壤水分主要受到降水以及植被生长的影响,其变异性的时空格局也说明随土壤深度增加土壤水分的稳定性随之增加;(2)通过相对差分分析不同恢复年限刺槐林土壤水分时间稳定性,确定15、20、30、35 a的代表深度分别为80、100、80、150cm土层,都属于与100cm相近的土壤深度;(3)Spearman秩相关分析显示,上土层与下土层的土壤水分的时间稳定性特征差异明显;(4)线性回归与纳什系数结果表明通过相对差分与时间稳定性指数得到土壤水分代表深度的结果是可接受的,其中15 a恢复年限刺槐林的结果最好,决定系数R2和纳什系数NSE分别可达0.91和0.82,但总体结果仍存在误差,在区域土壤水分模拟时需考虑这一不确定性。(5)灰色关联分析表明,土壤质地(砂粒),土壤总氮、土壤容重、土壤有机碳、土壤总孔隙度以及坡度是不同恢复年限刺槐林土壤水分时间稳定性主要影响因素。 展开更多
关键词 恢复年限 人工刺槐林 土壤储水量 时间稳定性 时间稳定性指数
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北京东灵山辽东栎林树木生长对气候要素的响应特征 被引量:27
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作者 李宗善 陈维梁 +4 位作者 韦景树 买尔当·克依木 张育新 张霜 王晓春 《生态学报》 CAS CSCD 北大核心 2021年第1期27-37,共11页
根据北京东灵山辽东栎(Quercus wutaishanica)的年轮宽度资料,分析了该地区树木生长在1951—2010年时段对气候要素的响应特征。相关分析表明,夏季干旱胁迫是限制东灵山辽东栎树木生长的最为重要的气候要素,主要体现在与夏季(7—9月)温... 根据北京东灵山辽东栎(Quercus wutaishanica)的年轮宽度资料,分析了该地区树木生长在1951—2010年时段对气候要素的响应特征。相关分析表明,夏季干旱胁迫是限制东灵山辽东栎树木生长的最为重要的气候要素,主要体现在与夏季(7—9月)温度的负相关关系和夏季降雨(7月)的正相关关系,另外春季(5月)温度对树木生长也有一定的限制性影响;年表与生长季节干旱指数普遍呈正相关关系,进一步证实了干旱胁迫对树木生长的限制性作用。滑动相关分析表明,年表与夏季温度负相关关系及与夏季降雨的正相关关系在近期趋于增强,这表明夏季干旱胁迫对树木生长影响作用有不断加强的趋势。辽东栎林是北京东灵山温带落叶阔叶林的优势群落,在暖干化气候不断发展背景下,辽东栎林生长的干旱胁迫效应将更加突出,对北京东灵山地区森林的生产力及固碳能力产生负面影响。 展开更多
关键词 树木年轮 气候响应 干旱胁迫 北京东灵山
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流域水文变化对胡杨荒漠河岸林林窗及形成木特征的影响 被引量:6
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作者 阿依加马力·克然木 玉米提·哈力克 +3 位作者 塔依尔江·艾山 买尔当·克依木 祖皮艳木·买买提 艾力亚尔·艾尼瓦尔 《生态学报》 CAS CSCD 北大核心 2019年第17期6322-6331,共10页
林窗作为森林生态系统得以长期维持的主要驱动力之一,能够促进森林的自然更新与演替、优化森林结构和养分循环,从而提高生物多样性及生态系统服务功能。基于塔里木河中游历年径流量、耗水量与地下水埋深等水文数据,利用回归模型、拟合优... 林窗作为森林生态系统得以长期维持的主要驱动力之一,能够促进森林的自然更新与演替、优化森林结构和养分循环,从而提高生物多样性及生态系统服务功能。基于塔里木河中游历年径流量、耗水量与地下水埋深等水文数据,利用回归模型、拟合优度t检验与种群结构动态定量相结合的方法,分析了研究区水文条件对胡杨荒漠河岸林林窗数量及其形成木种群结构与动态的影响。结果表明:1)1970年前塔里木河中游水量较为充足,在一定程度上可满足胡杨生存发育的需水量。自1980年来,塔里木河中游年径流量(R2=0.785,P<0.01)与耗水量(R2=0.524,P<0.01)呈明显减少趋势、地下水日益匮乏,其埋深呈直线下滑趋势(R^2=0.8618,P<0.01)。这导致河道两岸的胡杨林生态用水日益紧缺,从而引起胡杨林林窗现象频繁出现,尤其是在1997—2006年期间。2)随着中游年径流量与耗水量逐渐减少、地下水埋深逐渐增加,林窗内胡杨形成木数量则变为增长趋势。3)林窗形成木除1957—1966、1967—1976年属衰退型外,1977—1986、1987—1996、1997—2006和2007—2016年均呈现增长型特征。特别是林窗内胡杨形成木Ⅱ级幼龄树大幅度增加,其表现出胡杨林年龄结构的老龄化特征。4)由模型显示,林窗及其形成木数量与径流量之间存在显著性负相关,径流量降至17.81×10^8m^3时,林窗内的胡杨将面临高峰死亡。由此可知,在干旱区水文条件是决定胡杨生死的主导因子,也是塔里木河中游荒漠河岸林林窗形成的主要原因。 展开更多
关键词 塔里木河 水文变化 胡杨荒漠河岸林 林窗 林窗形成木 径级结构
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河北坝上樟子松人工林径向生长及其对气候因素的响应 被引量:21
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作者 刘亚玲 信忠保 +2 位作者 李宗善 买尔当·克依木 闫腾飞 《生态学报》 CAS CSCD 北大核心 2022年第5期1830-1840,共11页
利用树木年轮学方法测定了河北坝上地区樟子松逐年树轮宽度和胸高断面积增量,建立了樟子松树轮宽度差值年表并分析其对气候因素的响应以及生态弹性,为河北坝上地区利用樟子松开展退化杨树防护林更新建设的适宜性提供理论参考。研究结果... 利用树木年轮学方法测定了河北坝上地区樟子松逐年树轮宽度和胸高断面积增量,建立了樟子松树轮宽度差值年表并分析其对气候因素的响应以及生态弹性,为河北坝上地区利用樟子松开展退化杨树防护林更新建设的适宜性提供理论参考。研究结果表明,河北坝上地区樟子松树龄在28 a左右,其生长阶段可划分为快速生长期(0—10 a),生长下降期(11—20 a)和生长平稳期(21—28 a);樟子松树轮宽度在1992—2000年期间为快速增长期((4.49±1.15)mm/a),在2001—2010年期间呈现下降趋势((3.62±1.39)mm/a),而在2011—2019年期间樟子松生长呈平稳特征((2.21±0.68)mm/a),约为快速增长期增长速度的一半;樟子松BAI在1992—2000年间一直呈上升趋势((5.09±2.26)cm^(2)/a),2001—2019年期间呈平稳特征((10.46±0.67)cm^(2)/a),表现出稳定且持续的生长能力。樟子松差值年表与气候因素的相关性显示:樟子松径向生长主要与上一年生长季末期(9、10月)、休眠期(12月)及当年生长季(7月)平均温度和最高温度呈显著负相关,其中最高温度对其影响最显著;樟子松径向生长主要与上一年生长季末期(9月)及当年生长季(5、7月)的降水和相对湿度呈显著正相关。樟子松与多月份(上一年9月—当年10月)的帕默尔干旱指数呈显著正相关,干旱胁迫会明显抑制樟子松的径向生长。随树龄增加,樟子松应对干旱事件的抵抗力下降,而恢复力表现出增强的趋势。综上所述,河北坝上地区樟子松生长主要受上年生长季末期、休眠期和当年生长季月最高温度的限制,当年生长季降水促进樟子松的生长,同时樟子松易遭受夏季干旱胁迫。从约30 a时间尺度来看,河北坝上地区樟子松生长良好,年径向生长呈现稳定状态,尚未出现明显的衰退现象。随着该地区暖干化趋势加重以及樟子松树龄增加,对干旱事件抵抗力下降,樟子松健康生长将面临着更大的风险。 展开更多
关键词 河北坝上 樟子松 差值年表 径向生长 气候响应 生态弹性
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黄土高原多年生草本物种根部导水结构及空间分异特征 被引量:2
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作者 张国帅 买尔当·克依木 +3 位作者 焦磊 高光耀 李宗善 王晓春 《生态学报》 CAS CSCD 北大核心 2020年第14期4883-4893,共11页
植物茎干导水系统起着植株水分长距离输导功能,深入了解植物导水解剖结构和功能对于认识植物水分、养分输导和分配策略具有重要意义,然而相关研究还是主要集中在木本乔、灌木物种上,而对于多年生草本物种的相关研究还未引起人们的重视... 植物茎干导水系统起着植株水分长距离输导功能,深入了解植物导水解剖结构和功能对于认识植物水分、养分输导和分配策略具有重要意义,然而相关研究还是主要集中在木本乔、灌木物种上,而对于多年生草本物种的相关研究还未引起人们的重视。以黄土高原多年生草本物种为研究对象,在黄土高原沿降雨梯度(250—530 mm)布设12个采样点,采集了30种多年生草本物种的主根解剖材料,并分析了该地区草本物种根部导管解剖结构及空间分异特征。研究结果表明1)多年生草本物种根部导管特征参量具有较大的变异性,在固定测量范围内导管数量、导管直径、导管分数、总水分传导效率的变化范围分别为25—295个、24.46—54.58μm、2.42%—33.16%、0.034—25.357 kg m^(-1) MPa^(-1) s^(-1)。2)多年生草本根部导管直径、导管分数和导水效率均沿降雨量的增加呈不断下降趋势,其中以导水效率下降趋势最为明显(R=-0.3—-0.362,P<0.05),这表明水分条件是限制黄土高原草本物种根部导水特征空间变异的主要因素。3)多年生草本根部导管直径和导水效率以半荒漠分布为主的蒺藜科草本物种中数值最高,其次是人工种植为主的豆科草本物种,而以自然分布为主的菊科草本物种的导管参量数值最低,这表明黄土高原不同类群草本物种的导水特征和输水策略存在较大差异性。 展开更多
关键词 多年生草本 主根导管 导水效率 黄土高原
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Vitality variation and population structure of a riparian forest in the lower reaches of the Tarim River,NW China 被引量:8
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作者 maierdang keyimu Umut Halik +1 位作者 Florian Betz Choimaa Dulamsuren 《Journal of Forestry Research》 SCIE CAS CSCD 2018年第3期742-753,共12页
Since 2000, the Chinese government has implemented emergency water diversion measures to restore the damaged riparian forest ecosystem with dominant tree species Euphrat poplar(Populus euphratica Oliv.)at the lower re... Since 2000, the Chinese government has implemented emergency water diversion measures to restore the damaged riparian forest ecosystem with dominant tree species Euphrat poplar(Populus euphratica Oliv.)at the lower reaches of the Tarim River. In the present study, comparative analysis of variations in the vitality of P. euphratica trees were made using 2005 and 2010 data to illustrate the revitalization process of riparian forest. Poplar trees within 300 m of the riverbed were positively revitalized, while the vitality of trees farther than 300 m from the river decreased. Population structure was studied to demonstrate the development of poplar community. In the first belt, the class structure for the diameter at breast height(DBH) of P. euphratica fit a logistic model, and the 2nd, 3rd and 4th belt curve fittings were close to a Gaussian model; in other plots they were bimodal. Cluster analysis of the composition of the DBH class of poplar trees demonstrated that those within 16–36 cm DBH were the most abundant(58.49% of total) in study area, under 16 cm of DBH were second(31.36%), and trees >40 cm DBH were the least abundant(10.15%). More than 80% of the trees were young and medium-sized, which means that the poplar forest community in the vicinity of the lower Tarim River is at a stable developmental stage. The abundance of juvenile trees of P. euphratica in the first and second measuring belts was 12.13% in 2005 and increased to 25.52% in 2010, which means that the emergency water transfer had a positive impact on the generation of young P. euphratica trees in the vicinity of the river. 展开更多
关键词 Lower Tarim River Riparian forest ecosystem Populus euphratica VITALITY Population structure Diameter at breast height
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疏伐对黄土丘陵区刺槐林蒸腾的影响 被引量:8
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作者 杨文慧 焦磊 +6 位作者 买尔当·克依木 李宗善 高光耀 王聪 白应飞 孙婧雅 温润泉 《生态学报》 CAS CSCD 北大核心 2021年第12期4923-4934,共12页
黄土高原地区植被建设已达到土壤水分承载力的阈值,需要对现有林分进行结构优化并提升其生态功能。不合理的林分密度是导致黄土丘陵区刺槐林土壤干化、生长衰退的主要原因之一。疏伐可以优化林分结构,并能够通过控制蒸腾耗水来调控土壤... 黄土高原地区植被建设已达到土壤水分承载力的阈值,需要对现有林分进行结构优化并提升其生态功能。不合理的林分密度是导致黄土丘陵区刺槐林土壤干化、生长衰退的主要原因之一。疏伐可以优化林分结构,并能够通过控制蒸腾耗水来调控土壤水分,是促进刺槐林可持续生长的有效手段。疏伐对黄土丘陵区刺槐林蒸腾有何影响,目前并不清楚。研究基于树干液流法估算了4个不同疏伐强度(样地1:52%、样地2:48%、样地3:35%、样地4:未疏伐)下刺槐单株尺度的液流速率与林分尺度的日平均蒸腾量,并分析了不同时间尺度下液流速率与环境因子的关系,以阐明疏伐对黄土丘陵区刺槐林蒸腾的影响。结果表明:(1)单株尺度刺槐蒸腾速率(即液流速率)随疏伐强度减小(林分密度增大)呈现下降趋势(样地1:0.53 kg cm^(-2) d^(-1)、样地2:0.41 kg cm^(-2) d^(-1)、样地3:0.31 kg cm^(-2) d^(-1)、样地4:0.33 kg cm^(-2) d^(-1));(2)观测期林分尺度日平均蒸腾量随疏伐强度减小呈现上升趋势(样地1:0.90 mm/d、样地2:1.18 mm/d、样地3:1.04 mm/d、样地4:1.44 mm/d);(3)在半小时尺度与日尺度上,各样地液流速率与环境因子的关系没有显著差异,半小时尺度单株液流速率均与太阳辐射相关性最高(相关系数0.883—0.908),液流速率日变化过程与环境因子日变化过程存在时滞现象;日尺度单株液流速率与饱和水汽压亏缺相关性最高(相关系数0.843—0.913),样地间日尺度单株液流速率的差异性随着饱和水汽压亏缺增大而增大。研究结果初步反映了疏伐导致的林分密度变化对刺槐蒸腾的影响,将为黄土丘陵区刺槐林的结构改造、功能提升和土壤水分调控提供理论支持。 展开更多
关键词 疏伐 刺槐 液流速率 林分密度 黄土丘陵沟壑区
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胡杨树干液流日变化及其与气象因素的相关关系 被引量:9
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作者 买尔当.克依木 玉米提.哈力克 +1 位作者 古丽比亚.乌买尔 阿不都艾尼.阿不里 《冰川冻土》 CSCD 北大核心 2018年第1期166-175,共10页
选取塔里木河中游胡杨林自然保护区内不同长势和直径的六棵胡杨(Populus euphratica Oliv.)样木,利用热比率树干液流仪(SFM1)进行树干液流测定,并分析其日变化规律;同步监测各样地的气象因子,建立气象因子与树干液流速率日变化之间的逐... 选取塔里木河中游胡杨林自然保护区内不同长势和直径的六棵胡杨(Populus euphratica Oliv.)样木,利用热比率树干液流仪(SFM1)进行树干液流测定,并分析其日变化规律;同步监测各样地的气象因子,建立气象因子与树干液流速率日变化之间的逐步回归方程(Stepwise Regression Equation),分析气象因子对胡杨树干液流的影响。研究结果如下:(1)不同长势和直径的胡杨树干液流速率差异很大,但其整个日变化过程类似,均有明显的昼夜变化规律。旺盛胡杨树干液流日变化特征呈单峰曲线,而衰弱胡杨呈双峰曲线。(2)大直径胡杨树干液流速率和日累计液流量大于小直径胡杨;长势旺盛的胡杨树干液流速率和日累计液流量均大于衰弱胡杨。各胡杨样木日累计液流量的大小排序为:旺盛大直径胡杨﹥旺盛中直径胡杨﹥衰弱大直径胡杨﹥旺盛小直径胡杨﹥衰弱中直径胡杨﹥衰弱小直径胡杨。(3)虽然胡杨各样树在长势和直径结构上有差异,但其树干液流速率日变化与气象因子的关系大致相同,均与太阳辐射、气温、风速和土壤温度呈显著正相关(P<0.05),而与空气湿度呈显著负相关。(4)在诸多气象因子中,气温、太阳辐射和空气湿度是影响树干液流速率的主要因子。 展开更多
关键词 胡杨 长势 直径(DBH) 树干液流 气象因子
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Trunk volume estimation of irregular shaped Populus euphratica riparian forest using TLS point cloud data and multivariate prediction models 被引量:6
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作者 Asadilla Yusup Umut Halik +4 位作者 maierdang keyimu Tayierjiang Aishan Abdulla Abliz Babierjiang Dilixiati Jianxin Wei 《Forest Ecosystems》 SCIE CSCD 2023年第1期1-11,共11页
Background: Trunk volume(Vt) is an essential parameter for estimating forest stand volume, biomass, and carbon sequestration potential. As the dominant tree species in desert riparian forests, Euphrates poplar(Populus... Background: Trunk volume(Vt) is an essential parameter for estimating forest stand volume, biomass, and carbon sequestration potential. As the dominant tree species in desert riparian forests, Euphrates poplar(Populus euphratica) has a high proportion of irregularly shaped tree trunks along the Tarim River, NW China, where the habitat is very fragile owing to long-term water stress. This causes uncertainty in estimation accuracy as well as technical challenges for forest surveys. Our study aimed to acquire P. euphratica Vtusing terrestrial laser scanning(TLS) and to establish a species-specific Vtprediction model.Methods: A total of 240 individual trees were measured by TLS multiple-station in 12 sampling plots in three sections along the lower reaches of the Tarim River. Vtwas calculated by a definite integration method using trunk diameters(Di) at every 0.1-m tree height obtained from TLS, and all data were split randomly into two sets:70% of data were used to estimate the model parameter calibration, and the remaining 30% were used for model validation. Sixteen widely used candidate tree Vtestimation models were fitted to the TLS-measured Vtand tree structural parameter data, including tree height(H), diameter at breast height(DBH), and basal diameter(BD). All model performances were evaluated and compared by the statistical parameters of determination coefficient(R^(2)),root mean square error(RMSE), Bayesian information criterion(BIC), mean prediction error(ME), mean absolute error(MAE), and modeling efficiency(EF), and accordingly the best model was selected.Results: TLS point cloud reflection intensity(RI) has advantageous in the extraction of data from irregular tree trunk structures. The P. euphratica tree Vtvalues showed obvious differences at the same tree height(H). There was no significant correlation between Vtand H(R^(2)=0.11, P < 0.01), which reflected the irregularity of P. euphratica trunk shape in the study area. Among all the models, model(14): Vt=0.909DBH1.184H0.487BD0.836(R^(2)=0.97, RMSE=0.14) had the best prediction capability for irregularly shaped Vtwith the highest R^(2), BIC(-37.96), and EF(0.96), and produced a smaller ME(0.006) and MAE(1.177) compared to other models. The prediction accuracy was 93.18%.Conclusions: TLS point cloud RI has a potential for nondestructively measuring irregularly shaped trunk structures of P. euphratica and developed Vtprediction models. The multivariate models more effectively predicted Vtfor irregularly shaped trees compared to one-way and general volume models. 展开更多
关键词 Populus euphratica Trunk volume Terrestrial laser scanning(TLS) Reflection intensity Tarim river
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Tree mortality and regeneration of Euphrates poplar riparian forests along the Tarim River,Northwest China 被引量:2
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作者 Ayjamal Keram Umut Halik +3 位作者 Tayierjiang Aishan maierdang keyimu Kadeliya Jiapaer Guolei Li 《Forest Ecosystems》 SCIE CSCD 2021年第4期659-671,共13页
Background:Tree mortality and regeneration(seedling and sapling recruitment)are essential components of forest dynamics in arid regions,especially where subjected to serious eco-hydrological problems.In recent decades... Background:Tree mortality and regeneration(seedling and sapling recruitment)are essential components of forest dynamics in arid regions,especially where subjected to serious eco-hydrological problems.In recent decades,the mortality of the Euphrates poplar(Populus euphratica)along the Tarim River in Northwest China has increased.However,few studies have quantified the causes of mortality and regeneration in this azonal riparian forest type.Methods:The present study describes the annual hydrological response of tree mortality and regeneration in forest gaps.A total of 60 canopy gaps were investigated in six replicate grid plots(50m×50 m)and the annual runoff and water consumption data during the period of 1955–2016 were collected from hydrological stations in the middle reaches of the Tarim River.We compared the regeneration density of seedlings and saplings within the canopy gap areas(CGAs),undercanopy areas(UCAs),and uncovered riverbank areas(RBAs)through detailed field investigation.Results:Our study found that the mortality of young and middle-aged gap makers has increased remarkably over recent decades,particularly since the year 1996.The main results indicated that regional water scarcity was the primary limiting factor for long-term changes in tree mortality,as shown by a significant correlation between the diameter at breast height(DBH)of dead trees and the annual surface water.The average density(or regeneration rate)of seedlings and saplings was highest in the RBAs,intermediate in the CGAs,and lowest in the UCAs.Compared with the UCAs,the CGAs promote tree regeneration to some extent by providing favorable conditions for the survival and growth of seedlings and saplings,which would otherwise be suppressed in the understory.Furthermore,although the density of seedlings and saplings in the CGAs was not as high as in the RBAs,the survival rate was higher in the CGAs than in the RBAs.Conclusion:Forest canopy gaps in floodplain areas can play a decisive role in the long-term germination and regeneration of plant species.However,as a typical phreatophyte in this hyper-arid region,the ecosystem structure,functions and services of this fragile P.euphratica floodplain forests are threatened by a continuous decrease of water resources,due to excessive water use for agricultural irrigation,which has resulted in a severe reduction of intact poplar forests.Furthermore,the survival of seedlings and saplings is influenced by light availability and soil water at the regional scale.Our findings suggest that policymakers may need to reconsider the restoration and regeneration measures implemented in riparian P.euphratica forests to improve flood water efficiency and create canopy gaps.Our results provide with valuable reference information for the conservation and sustainable development of floodplain forest ecosystems. 展开更多
关键词 Tree mortality Regeneration strategy Seedling and sapling recruitment Gap makers Riparian forest Tarim River
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Effects of land use patterns on slope soil water in the semiarid Loess Plateau,China 被引量:1
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作者 JIAO Lei YANG Wenhui +6 位作者 JIA Tian maierdang keyimu CHEN Weiliang GAO Guangyao WANG Shuai LIU Jianbo WANG Cong 《Journal of Geographical Sciences》 SCIE CSCD 2022年第4期701-716,共16页
Land use patterns(LUPs)are the form in which various land use types are combined spatially,evidently impacting soil water.However,the influence mechanism by which LUPs form remains unclear.In this study,the soil water... Land use patterns(LUPs)are the form in which various land use types are combined spatially,evidently impacting soil water.However,the influence mechanism by which LUPs form remains unclear.In this study,the soil water content(SWC)in the 0–160-cm soil depth was observed in shrubland(SL),mature forestland(MF),grassland(GL)and young forestland(YF)sites on four slopes with different LUPs in the Yangjuangou catchment of the Chinese Loess Plateau.The SWC in SL-YF-SL(13.28%)was significantly greater than that in YF-MF(9.93%),MF-GL-YF(10.38%)and SL-MF(10.83%)and was temporally stable during the study period.The spatial distribution of SWC along the slope differed among the four LUPs.Vegetation characteristics and soil texture mainly determined the spatial variations in SWC in the shallow soil layers(0–40 cm),while topographic factors were the determinants in the deep soil layers(60–160 cm)as well as in the entire soil profile(0–160 cm).The significance of SWC differences among the various land use patterns increased with decreasing precipitation during the growing seasons.YF-MF(77.8 mm)and SL-YF-GL(73.9 mm)required more rainwater than SL-MF(68.2 mm)and MF-GL-MF(67.5 mm)to compensate for the loss of soil water on the monthly scale during the rainy season.Therefore,vegetation restoration should consider land use patterns on hillslopes for soil water conservation. 展开更多
关键词 land use patterns land management soil water resource vegetation restoration HILLSLOPE
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Changes in Water Quality of Origin Flows of Hotan River Based on Nemorow Pollution Index
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作者 Aikeremu Wubuli müt Halik +3 位作者 Gumeniyaz Seydehmet Aliya Baidourela maierdang keyimu Hua Jin 《Meteorological and Environmental Research》 CAS 2013年第8期50-52,共3页
[Objective] The study aimed to analyze water quality of origin flows of Hctan River using Nemorow pollution index method. [Method] Based on data monitored at four monitoring sections of Yorungkash River and Karakash R... [Objective] The study aimed to analyze water quality of origin flows of Hctan River using Nemorow pollution index method. [Method] Based on data monitored at four monitoring sections of Yorungkash River and Karakash River dudng 2001 -2005, water quality of Hotan River was assessed by using Nemorow pollution index method. [ Result] During 2001 -2005, Yorungkash River and Karakash River had clean water reaching the first standard. Nemorow pollution index was 0.15 -0.69 at the first section of Yorungkash River, and it was 0.23 -0.46 at its last section; there were few changes in water quality at the last section, while Nemorow pollution index showed a downward trend at the first section. Nemorow pollu- tion index was 0.23 -0.65 at the first section of Karakash River, and it was 0.23 -0.47 at its last section, showing a downward trend at its last section. [Condusion] Water quality of Hotan River belonged to first-class clean water. 展开更多
关键词 Hotan River Nemorow pollution index Water quality assessment China
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20世纪后期气候加速变暖促进了北半球树木径向生长 被引量:2
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作者 Jie Liu Zong-Shan Li +5 位作者 maierdang keyimu Xiaochun Wang Haibin Liang Xiaoming Feng Guangyao Gao Bojie Fu 《Journal of Plant Ecology》 SCIE CSCD 2023年第1期61-75,共15页
20世纪后期全球加速变暖导致北半球森林衰退事件频发,并增加了树木生长-气候关系的复杂性。然而,关于气候加速变暖前后北半球不同地区树木生长对气候因子响应的异质性研究仍较为缺乏。本研究利用北半球3大洲9个地区共计229条温度敏感型... 20世纪后期全球加速变暖导致北半球森林衰退事件频发,并增加了树木生长-气候关系的复杂性。然而,关于气候加速变暖前后北半球不同地区树木生长对气候因子响应的异质性研究仍较为缺乏。本研究利用北半球3大洲9个地区共计229条温度敏感型树轮宽度年表分析了气候加速变暖前后不同地区树木生长趋势和气候响应的异质性表现。结果表明:(i)1977–2000年期间,气候加速变暖显著促进了北半球不同地区树木的径向生长,但在1950–2000年期间,不同地区的树木径向生长表现出异质性特征。(ii)1976年后,除北美中部和欧洲北部,北半球树木生长和温度的相关性均显著增加,亚洲地区最为明显。(iii)在1977–2000年期间,9个地区的树木年轮指数与温度均出现了短暂的分离(2–5年)。在1950–2000年期间,各地区树木生长能够更好地追踪到北半球平均温度的变化趋势而不是区域温度。 展开更多
关键词 气候变暖 北半球 树轮 树木生长-气候关系 分离效应
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Developing New Allometric Models for Estimating Aboveground Woody Biomass and Volume of Populus euphratica Using Terrestrial Laser Scanning
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作者 Asadilla Yusup Xiaomei Hu +4 位作者 Umüt Halik Tayierjiang Aishan maierdang keyimu Hao Bai Shengli Tao 《Journal of Remote Sensing》 2025年第1期362-376,共15页
Populus euphratica is an endangered species in desert riparian forests along the Tarim River in the arid region of northwestern China.Accurately estimating aboveground biomass is essential for assessing the growth sta... Populus euphratica is an endangered species in desert riparian forests along the Tarim River in the arid region of northwestern China.Accurately estimating aboveground biomass is essential for assessing the growth status of P.euphratica,but is challenging as harvesting P.euphratica is strictly prohibited.In this study,we developed new allometric equations to estimate the woody aboveground biomass and volume of P.euphratica based on data collected along 200 km of the lower Tarim River.Our approach is nondestructive as it combines terrestrial laser scanning and quantitative structure modeling.We found that quantitative structure model effectively acquired tree 3D structures from high-density point clouds.The total volumes of the sample trees were found to range from 0.01 to 4.25 m^(3),and aboveground biomass from 3.07 to 1,997.41 kg,with 86% of the trees having a biomass below 500 kg.The biomass of large trees has been underestimated by previous allometric equations due to the limited sample sizes used to build the models.Our new allometric equations utilizing diameter at breast height and tree height(AGB=20.86+152.58⋅H⋅DBH^(2);Volume=0.096+0.316⋅H⋅DBH^(2))showed less bias(R^(2)≥0.94)since our data encompass not only smallsized but also large trees,resulting in a reduction of RMSE by 40% to 50% compared to previous models.When tree height was not available,diameter alone also provided high accuracy for estimating biomass(AGB=1,454.02⋅DBH^(2054))and volume(Volume=0.15⋅e3.02⋅DBH),with R^(2) values of 0.93.Our research provides a nondestructive method to accurately estimate the biomass of P.euphratica,contributing to improved forest conservation and carbon storage assessment in the desert riparian forest. 展开更多
关键词 estimating aboveground biomass assessing growth status desert riparian forests aboveground biomass allometric equations woody aboveground biomass developed new allometric equations populus euphratica
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