资源生态

固沙植被黄柳、小叶锦鸡儿蒸腾耗水尺度提升研究

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  • 1. 内蒙古农业大学水利与土木建筑工程学院,内蒙古自治区水资源保护与利用重点实验室,呼和浩特 010018;
    2. Hydraulics/Water Resources Laboratory, Department of Civil and Environmental Engineering, Old Dominion University, Norfolk VA 23529-0241, USA
段利民(1982- ),男,助理研究员,博士,研究方向为寒旱区生态水文。E-mail: dlm@imau.edu.cn

收稿日期: 2016-11-01

  修回日期: 2017-04-12

  网络出版日期: 2018-01-20

基金资助

国家自然科学基金项目(51369016,51620105003); 内蒙古农业大学优秀青年科学基金(2014XYQ-11); 内蒙古自然科学基金项目(2015MS0566); 教育部创新团队发展计划(IRT_17R60); 科技部重点领域创新团队(2015RA4013)

Upscaling of the Transpiration and Water Consumption of Sand-fixing Vegetation Salix gordejevii and Caragana microphylla

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  • 1. Water Conservancy and Civil Engineering College, Inner Mongolia Agricultural University, Inner Mongolia Water Resource Protection and Utilization Key Laboratory, Hohhot 010018, China;
    2. Hydraulics/Water Resources Laboratory, Department of Civil and Environmental Engineering, Old Dominion University, Norfolk VA 23529-0241, USA

Received date: 2016-11-01

  Revised date: 2017-04-12

  Online published: 2018-01-20

Supported by

National Natural Science Foundation of China, No. 51369016 and 51620105003; Excellent Young Scientist Foundation of Inner Mongolia Agricultural University of China, No. 2014XYQ-11; Natural Science Foundation of Inner Mongolia, No. 2015MS0566; Ministry of Education Innovative Research Team, No. IRT_17R60; Innovation Team in Priority Areas Accredited by the Ministry of Science and Technology, No. 2015RA4013.

摘要

论文以科尔沁沙地主要固沙植被黄柳、小叶锦鸡儿为研究对象,基于生长季典型枝条茎流的逐日动态观测数据,以黄柳茎干截面积和小叶锦鸡儿叶面积实测数据为扩展纯量,实现了由枝条茎流向灌丛群落蒸腾耗水的尺度提升。结果表明:生长季黄柳和小叶锦鸡儿群落的蒸腾耗水量分别为287.26 mm和197.23 mm,黄柳的耐旱性相对较低。采用FAO Penman-Monteith公式计算出同时期两种植被群落的蒸散量分别为328.70 mm和233.15 mm。日蒸腾耗水量与日蒸散量变化趋势基本一致,两种植被的决定系数分别为0.717 3和0.678 7。论文所建立的尺度提升方法在荒漠化灌木植被蒸腾耗水估算方面行之有效,可为科学选育和管理固沙植被、确定合理造林密度等提供参考依据。

本文引用格式

段利民, 童新, 吕扬, 闫雪, 刘廷玺, WangXi-xi . 固沙植被黄柳、小叶锦鸡儿蒸腾耗水尺度提升研究[J]. 自然资源学报, 2018 , 33(1) : 52 -62 . DOI: 10.11849/zrzyxb.20161196

Abstract

This study measured the daily sap flow of the selected individual stems of sand-fixing vegetation Salix gordejevii and Caragana microphylla in the Horqin Sandy Land, China, throughout the growing season. The stem cross-sectional area of Salix gordejevii and the leaf area of Caragana microphylla were selected as potential upscaling factors for modeling the transpiration of the communities across large area. The transpiration of the community Salix gordejevii and the community Caragana microphylla were found to be 287.26 mm and 197.23 mm, respectively, indicating that the drought tolerance of Salix gordejevii is lower than that of Caragana microphylla. The evapotranspiration of the two communities calculated with the FAO Penman-Monteith equation were 328.70 mm and 233.15 mm, respectively. The daily transpiration and evapotranspiration followed the similar trend, the coefficient of determination being 0.717 3 and 0.678 7, respectively. These results indicate that the upscaling method proposed in this paper is effective for estimating transpiration and water consumption of desert shrubs and provids a useful reference for the selection and management of sand-fixing vegetation and the determination of reasonable afforestation densities.

参考文献

[1] 程磊磊, 尹昌斌, 卢琦, 等. 荒漠化成因与不合理人类活动的经济分析 [J]. 中国农业资源与区划, 2016, 37(7): 123-129.
[CHENG L L, YIN C B, LU Q, et al. Ecnomic analysis of desertification causes and irrational human activities. Journal of China Agricultural Resources and Regional Planning, 2016, 37(7): 123-129. ]
[2] 赵哈林. 沙漠化过程中植物的适应对策及植被稳定性机理 [M]. 北京: 海洋出版社, 2004.
[ZHAO H L. Vegetation Adaptation Strategy and Sustainable Mechanism under Desertification. Beijing: China Ocean Press, 2004. ]
[3] 张萍, 哈斯额尔敦, 杨一, 等. 小叶锦鸡儿 ( Caragana microphylla ) 灌丛沙堆形态对沙源供给形式和丰富度的响应 [J]. 中国沙漠, 2015, 35(6): 1453-1460.
[ZHANG P, HASI E, YANG Y, et al. Responses of Caragana microphylla nebkhas morphology to the mode and richness of sand supply. Journal of Desert Research, 2015, 35(6): 1453-1460. ]
[4] 袁国富, 张佩, 罗毅. 中国温带荒漠植物蒸腾过程模拟的若干问题分析 [J]. 中国沙漠, 2012, 32(1): 47-53.
[YUAN G F, ZHANG P, LUO Y. Some questions on modeling the desert plants transpiration process in China. Journal of Desert Research, 2012, 32(1): 47-53. ]
[5] 岳广阳, 赵哈林, 张铜会, 等. 小叶锦鸡儿灌丛群落蒸腾耗水量估算方法 [J]. 植物生态学报, 2009, 33(3): 508-515.
[YUE G Y, ZHAO H L, ZHANG T H, et al. Estimation of transpiration in communities dominated by shrub Caragana microphylla . Chinese Journal of Plant Ecology, 2009, 33(3): 508-515. ]
[6] 张玉翠, 孙宏勇, 沈彦俊, 等. 氢氧稳定同位素技术在生态系统水分耗散中的应用研究进展 [J]. 地理科学, 2012, 32(3): 289-293.
[ZHANG Y C, SUN H Y, SHEN Y J, et al. Application of hydrogen and oxygen stable isotopes technique in the water depletion of ecosystems. Scientia Geographica Sinica, 2012, 32(3): 289-293. ]
[7] SUGIURA H, SAKAMOTO D, SUGIURA T, et al. Evaluation of the use of the Granier sap flow method in Japanese pear by comparison with transpiration by the weighing method [J]. Acta Horticulturae, 2009, 846: 121-126.
[8] YOUNG M H, WIERENGA P J, MANCINO C F. Monitoring near-surface soil water storage in turfgrass using time domain reflectometry and weighing lysimetry [J]. Soil Science Society of America Journal, 1997, 61(4): 1138-1146.
[9] RICHARD L S, SHU G, MORTEZA O, et al. Calculation and simulation of evapotranspiration of applied water [J]. Journal of Integrative Agriculture, 2012, 11(3): 489-501.
[10] ISA A M, YUNUSA, IAN K N, et al. A simple field validation of daily transpiration derived from sapflow using a porometer and minimal meteorological data [J]. Plant and Soil, 2008, 305(1): 15-24.
[11] 刘绍民, 孙中平, 李小文, 等. 蒸散量测定与估算方法的对比研究 [J]. 自然资源学报, 2003, 18(2): 161-167.
[LIU S M, SUN Z P, LI X W, et al. A comparative study on models for estimating evapotranspiration. Journal of Natural Resources, 2003, 18(2): 161-167. ]
[12] JIN H X, LIU Z J, WANG J H, et al. Measurement of shrub’s water consumption with stemheat balance (SHB) in the desert and arid area [J]. Protection Forest Science and Technology, 2004, 6: 9-13.
[13] WANG X P, WANG Z N, BERNDTSSON R, et al. Desert shrub stemflow and its significance in soil moisture replenishment [J]. Hydrology and Earth System Sciences, 2011, 15(2): 561-567.
[14] GARCIA E P, ALONSO B N, ALEGRE J. Water storage capacity, stemflow and water funneling in Mediterranean shrubs [J]. Journal of Hydrology, 2010, 389(3/4): 363-372.
[15] 李思静, 查天山, 秦树高, 等. 油蒿 ( Artemisia ordosica ) 茎流动态及其环境控制因子 [J]. 生态学杂志, 2014, 33(1): 112-118.
[LI S J, CHA T S, QIN S G, et al. Temporal patterns and environmental controls of sap flow in Artemisia ordosica . Chinese Journal of Ecology, 2014, 33(1): 112-118. ]
[16] RAZZAGHI F, AHMADI S H, ADOLF V I, et al. Water relations and transpiration of quinoa ( Chenopodium quinoa Willd.) under salinity and soil drying [J]. Journal of Agronomy and Crop Science, 2011, 197(5): 348-360.
[17] 赵自国, 夏江宝, 王荣荣, 等. 不同土壤水分条件下叶底珠 ( Securinega suffruticosa ) 茎流特征 [J]. 中国沙漠, 2013, 33(5): 1385-1389.
[ZHAO Z G, XIA J B, WANG R R, et al. Effects of soil moisture on characteristics of sap flow of Securinega suffruticosa . Journal of Desert Research, 2013, 33(5): 1385-1389. ]
[18] HAM J M, HEILMANN J L, LASCANO R J. Determination of soil water evaporation and transpiration from energy balance and flow measurements [J]. Agricultural and Forest Meteorology, 1990, 52(3/4): 287-301.
[19] HATTON T J, WU H I. A scaling theory to extrapolate individual tree water use to stand water use [J]. Hydrological Processes, 1995, 9(5/6): 527-540.
[20] 熊伟, 王彦辉, 于澎涛, 等. 华北落叶松树干茎流的个体差异和林分蒸腾估计的尺度上推 [J]. 林业科学, 2008, 44(1):34-40.
[XIONG W, WANG Y H, YU P T, et al. Variation of sap flow among individual trees and scaling up for estimation of transpiration of Larix principis - rupprechtii stand. Scientia Silvae Sinicae, 2008, 44(1): 34-40. ]
[21] JASKIERNIAK D, BENYON R, KUCZERA G, et al. A new method for measuring stand sapwood area in forests [J]. Ecohydrology, 2015, 8: 504-517.
[22] 张毓涛, 梁凤超, 常顺利, 等. 基于8 hm 2 样地的天山云杉林蒸腾耗水从单株到林分的转换 [J]. 生态学报, 2011, 31(12): 3330-3339.
[ZHANG Y T, LIANG F C, CHANG S L, et al. Scaling up for transpiration of Pinaceae schrenkiana stands based on 8 hm 2 permanent plots in Tianshan Mountains. Acta Ecologica Sinica, 2011, 31(12): 3330-3339. ]
[23] 牛丽, 岳广阳, 赵哈林, 等. 利用茎流法估算樟子松和小叶锦鸡儿人工林蒸腾耗水 [J]. 北京林业大学学报, 2008, 30(6): 1-8.
[NIU L, YUE G Y, ZHAO H L, et al. Evaluating transpiration from Pinus sylvestris var. mongolica and Caragana microphylla using sap flow method. Journal of Beijing Forestry University, 2008, 30(6): 1-8. ]
[24] 岳广阳, 张铜会, 赵哈林, 等. 科尔沁沙地黄柳和小叶锦鸡儿茎流及蒸腾特征 [J]. 生态学报, 2006, 26(10): 3205-3213.
[YUE G Y, ZHANG T H, ZHAO H L, et al. Characteristics of sap flow and transpiration of Salix gordejevii and Caragana microphylla in Horqin Sandy Land, Northeast China. Acta Ecologica Sinica, 2006, 26(10): 3205-3213. ]
[25] JI X B, ZHAO W Z, KANG E S, et al. Transpiration from three dominant shrub species in a desert-oasis ecotone of arid regions of northwestern China [J]. Hydrological Processes, 2016, 30(25): 4841-4854.
[26] 吴立峰, 白桦, 张富仓, 等. FAO Penman-Monteith及简化方法在西北适用性研究 [J]. 农业机械学报, 2016, 47(12): 139-151.
[WU L F, BAI H, ZHANG F C, et al. Applicability of FAO Penman-Monteith and alternative methods for estimating reference evapotranspiration in Northwest China. Transactions of the CSAM, 2016, 47(12): 139-151. ]
[27] 马宁, 王乃昂, 王鹏龙, 等. 黑河流域参考蒸散量的时空变化特征及影响因素的定量分析 [J]. 自然资源学报, 2012, 27(6): 975-989.
[MA N, WANG N A, WANG P L, et al. Temporal and spatial variation characteristics and quantification of the affect factors for reference evapotranspiration in Heihe River Basin. Journal of Natural Resources, 2012, 27(6): 975-989. ]
[28] ALLEN R G, PEREIRA L S, RAES D, et al. Crop evapotranspiration guidelines for computing crop water requirements: FAO irrigation and drainage paper 56 [R]. Rome: FAO of the United Nations, 1998.
[29] 王娟, 汤军, 郭月峰, 等. 内蒙古敖汉旗北部风沙土区两种灌木地上生物量估算模型 [J]. 农业工程, 2015, 5(6): 44-47.
[WANG J, TANG J, GUO Y F, et al. Aboveground biomass estimation model of two shrubs to Aohan Banner northern wind-sandy area in Inner Mongolia. Agricultural Engineering, 2015, 5(6): 44-47. ]
[30] HAO H M, LU R, LIU Y, et al. Effects of shrub patch size succession on plant diversity and soil water content in the water-wind erosion crisscross region on the Loess Plateau [J]. Catena, 2016, 144: 177-183.
[31] TONG C, GONG J Z, MARRS R, et al. Pattern of transpiration of four shrub species and water consumption from shrub stands in an eco-reclamation catchment in Northwest China [J]. Arid Land Research and Management, 2008, 22(3): 242-254.
[32] TOMO’OMI K, HISAMI N, TETSUYA M, et al. Sources of error in estimating stand transpiration using allometric relationships between stem diameter and sapwood area for Cryptomeria japonica and Chamaecyparis obtusa [J]. Forest Ecology and Management, 2005, 206: 191-195.
[33] HUANG L, ZHANG Z, LI X. The extrapolation of the leaf area-based transpiration of two xerophytic shrubs in a revegetated desert area in the Tengger Desert, China [J]. Hydrology Research, 2015, 46(3): 389-399.
[34] CERMAK J, KUCERA J, NADEZHDINA N. Sap flow measurements with some thermodynamic methods, flow integration with trees and scaling up from sample trees to entire forest stands [J]. Trees, 2004, 18(5): 529-546.
[35] LOTT J E, KHAN A A H, BLACK C R, et al. Water use in a Grevillea robusta -maize overstorey agroforestry system in semi-arid Kenya [J]. Forest Ecology and Management, 2003, 180(6): 45-59.
[36] 王朗, 徐延达, 傅伯杰, 等. 半干旱区景观格局与生态水文过程研究进展 [J]. 地球科学进展, 2009, 24(11): 1238-1246.
[WANG L, XU Y D, FU B J, et al. Landscape pattern and eco-hydrological process. Advances in Earth Science, 2009, 24(11): 1238-1246. ]
[37] ALLEN S J, GRIME V L. Measurements of transpiration from savannah shrubs using sap flow gauges [J]. Agricultural and Forest Meteorology, 1995, 75(1/2/3): 23-41.
[38] 曹晓明, 陈曦, 王卷乐, 等. 古尔班通古特沙漠南缘非灌溉条件下梭梭 ( Haloxylon ammodendron ) 蒸腾耗水特征 [J]. 干旱区地理, 2013, 36(2): 292-302.
[CAO X M, CHEN X, WANG J L, et al. Water consumption and transpiration of non-irrigated Haloxylon ammodendron in hinterland of Taklimakan Desert. Arid Land Geography, 2013, 36(2): 292-302. ]
[39] 褚建民, 邓东周, 王琼, 等. 降雨量变化对樟子松生理生态特性的影响 [J]. 生态学杂志, 2011, 30(12): 2672-2678.
[CHU J M, DENG D Z, WANG Q, et al. Effects of precipitation change on eco-physiological characteristics of Mongolian pine. Chinese Journal of Ecology, 2011, 30(12): 2672-2678. ]
[40] ZHAO W, LIU B. The response of sap flow in shrubs to rainfall pulses in the desert region of China [J]. Agricultural & Forest Meteorology, 2010, 150(9): 1297-1306.
[41] 白龙. 基于双涌源模型的浑善达克沙地野生黄柳生育期需水量研究 [D]. 呼和浩特: 内蒙古农业大学, 2014.
[BAI L. Research and Analysis of Water Requirement in Growth Period of the Wild Salix gordejevii in the Hunshandake Desert Based on Dual Source Model. Hohhot: Inner Mongolia Agricultural University, 2014. ]
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