JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2024, Vol. 48 ›› Issue (5): 21-27.doi: 10.12302/j.issn.1000-2006.202309044
Special Issue: 专题报道:自然保护地森林生态系统研究
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YAO Hongwen1(), WANG Shihong2, ZHU Chenghao1, LI Zuohui1,*(), CHENG Linghong3, LIAN Jihe4, LIN Jie5
Received:
2023-09-28
Revised:
2024-03-14
Online:
2024-09-30
Published:
2024-10-03
Contact:
LI Zuohui
E-mail:yaohongwen2005@163.com;379937228@qq.com
CLC Number:
YAO Hongwen, WANG Shihong, ZHU Chenghao, LI Zuohui, CHENG Linghong, LIAN Jihe, LIN Jie. Research on the ecological compensation mechanism and standards for Qianjiangyuan-Baishanzu National Park[J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2024, 48(5): 21-27.
Table 1
Indicators and evaluation methods of forest ecosystem regulatory services of 2021"
指标 index | 物质量 ecosystem product amount | 价值量 ecosystem product value | 参数说明 parameter description | 参数来源 parameter sources | |||||
---|---|---|---|---|---|---|---|---|---|
水源涵养 water conservation | Qwr= | Vwr=Qwr×C | Qwr为森林生态系统水源涵养总量,m3;Ai为第i类森林生态系统的面积,hm2;Kf为森林生态系统功能调整系数;Pi为第i类森林生态系统的年产流降雨量,mm;Ri为第i类森林生态系统的年地表径流量,mm;Ei为第i类森林生态系统的年蒸发量,mm;n为森林生态系统类型的数量;Vwr为森林生态系统水源涵养总价值,元;C为水价,元/m3 | 降雨量参考浙江省及周边气象站点30年的降雨量。蒸散率、地表径流量参数参照文献[ | |||||
土壤保持 soil retention | Qsr= | Vsr=λ× | Qsr森林生态系统土壤保持总量,t;di第i类森林生态系统土壤侵蚀模数,t/hm2;d0无立木林地平均土壤侵蚀模数,t/hm2;Ai第i类森林生态系统的面积,hm2; Vsr为森林生态系统土壤保持总价值,元;λ为森泥沙淤积系数;ρ为森土壤容重,t/m3;C1为单位水库清淤工程费用,元/m3 | 土壤侵蚀模数、土壤容重参数参照文献[ | |||||
洪水调蓄 flood regulation and storage | Cfc= Kf×10 Rf,i=pi×βi | Vwm=Cfc×(Cwe+Cwo) | Cfc为森林生态系统洪水调蓄量,m3;Pl,i为第i类森林生态系统年暴雨降雨量,mm;Rf,i为第i类森林生态系统年暴雨径流量,mm;βi为第i类森林生态系统的平均地表暴雨径流系数;Vwm为森林生态系统洪水调蓄总价值,元;Cwe为水库单位库容的工程造价,元/m3;Cwo为水库单位库容的运营成本,元/m3 | 暴雨降雨量和暴雨径流量参数参照文献[ | |||||
空气净化 air purification | Qap= | Vap= | Qap为大气污染物净化总量,t;Qij为第i类森林生态系统对第j种大气污染物的单位面积年净化量,t/hm2;nl为核算地域大气污染物类型的数量;Vap为森林生态系统空气净化总价值,元;Ci为第i类大气污染物的治理成本,元/t;n2为大气污染物类型的数量 | 净化二氧化硫量、氮氧化物量参数参照文献[ | |||||
固定二氧化碳 carbon sequestration | Vcf= | ||||||||
释放氧气 oxygen release | Qor= | Vor=Qor×Cor | Qor为森林生态系统释氧量,t; | 采用浙江省单株生物量模型计算生物量,模型见文献[ | |||||
提供负离子 provide negative ions | Qnoi= | Vnoi= Hi×Kf×Cnoi/L | Qnoi为森林生态系统提供负离子数量,个;Tnoi,i为森林生态系统实测林分负离子浓度,个/m3;Hi为第i类森林生态系统实测林分高度,m;L为负离子寿命,min;Vnoi为森林生态系统提供负离子总价值,元;Cnoi为负离子生产费用,元/个;n3为森林生态系统类别数 | 参考文献[ | |||||
调整系数 adjustment coefficient | Ka= | Kb=0.4K1+0.6K2= 0.4 | Ka为乔木林的调整系数;b为评估林分生物量,t;B为平均林分生物量,t;Kb为竹林、经济林和灌木林的调整系数;K1为植被覆盖度系数;K2为高度系数;Gi为竹林、经济林、灌木林盖度,%; | — |
Table 2
Volume and value of provincial publilwelfare forest ecosystem regulating services within and outside the national park of 2021"
调节服务 regulating service | 统计类别 accounting categorie | 范围内 within the national park | 范围外 outside the national park |
---|---|---|---|
面积/hm2 area | 62 084.37 | 33 4920.64 | |
水源涵养 water conservation | 物质量/(×104 m3) | 50 873.38 | 232 284.05 |
价值量/万元 | 51 890.85 | 236 929.73 | |
单位面积价值量/(元·hm-2) | 8 358.12 | 7 074.21 | |
土壤保持 soil retention | 物质量/(×104 m3) | 306.55 | 1 361.58 |
价值量/万元 | 1 604.69 | 7 198.39 | |
单位面积价值量/(元·hm-2) | 258.47 | 214.93 | |
洪水调蓄 flood regulation and storage | 物质量/(×104 m3) | 34 971.84 | 144 951.80 |
价值量/万元 | 104 216.09 | 431 956.47 | |
单位面积价值量/(元·hm-2) | 16 786.20 | 12 897.28 | |
空气净化 air purification | 物质量/(×104 m3) | 0.73 | 3.34 |
价值量/万元 | 12 780.27 | 58 642.34 | |
单位面积价值量/(元·hm-2) | 2 058.53 | 1 750.93 | |
固定二氧化碳 carbon sequestration | 物质量/(×104 m3) | 118.48 | 365.90 |
价值量/万元 | 5 360.18 | 16 553.21 | |
单位面积价值量/(元·hm-2) | 863.37 | 494.24 | |
释放氧气 oxygen release | 物质量/(×104 m3) | 86.17 | 266.11 |
价值量/万元 | 105 557.76 | 325 981.54 | |
单位面积价值量/(元·hm-2) | 17 002.31 | 9 733.10 | |
提供负离子 provide negative ions | 物质量/(×104 m3) | 63 399.88 | 228 183.23 |
价值量/万元 | 2 145.17 | 6 751.71 | |
单位面积价值量/(元·hm-2) | 345.52 | 201.59 | |
合计 total | 价值量/万元 | 283 555.01 | 1 084 013.39 |
单位面积价值量/(元·hm-2) | 45 672.53 | 32 366.28 |
[1] | SALZMAN J, BENNETT G, CARROLL N, et al. The global status and trends of payments for ecosystem services[J]. Nat Sustain, 2018, 1: 136-144. DOI: 10.1038/s41893-018-0033-0. |
[2] | VAN HECKEN G, BASTIAENSEN J. Payments for ecosystem services: justified or not? A political view[J]. Environ Sci Policy, 2010, 13(8): 785-792. DOI: 10.1016/j.envsci.2010.09.006. |
[3] | 董海宾, 刘思博, BOLORMAA D, 等. 基于CiteSpace的国内生态补偿研究[J]. 生态学报, 2022, 42(20): 8521-8529. |
DONG H B, LIU S B, BOLORMAA D, et al. Study on domestic ecological compensation based on CiteSpace[J]. Acta Ecol Sin, 2022, 42(20): 8521-8529. DOI: 10.5846/stxb202109082529. | |
[4] | LUNDBERG L, PERSSON U M, ALPIZAR F, et al. Context matters: exploring the cost-effectiveness of fixed payments and procurement auctions for PES[J]. Ecol Econ, 2018, 146: 347-358. DOI: 10.1016/j.ecolecon.2017.11.021. |
[5] | 李晓光, 苗鸿, 郑华, 等. 生态补偿标准确定的主要方法及其应用[J]. 生态学报, 2009, 29(8): 4431-4440. |
LI X G, MIAO H, ZHENG H, et al. Main methods for setting ecological compensation standard and their application[J]. Acta Ecol Sin, 2009, 29(8): 4431-4440. DOI: 10.3321/j.issn:1000-0933.2009.08.050. | |
[6] | 吴乐, 孔德帅, 靳乐山. 中国生态保护补偿机制研究进展[J]. 生态学报, 2019, 39(1): 1-8. |
WU L, KONG D S, JIN L S. Research on the progress of the eco-compensation mechanism in China[J]. Acta Ecol Sin, 2019, 39(1): 1-8. DOI:10.5846/stxb201808281842. | |
[7] | 夏云娇, 王俊华. 国家公园生态补偿地方立法的特点和不足及其完善[J]. 安全与环境工程, 2020, 27(2): 35-41. |
XIA Y J, WANG J H. Local legislation on ecological compensation in National Parks: characteristics,deficiencies and countermeasures[J]. Saf Environ Eng, 2020, 27(2): 35-41. DOI: 10.13578/j.cnki.issn.1671-1556.2020.02.005. | |
[8] | 刘富国, 李姣, 汪杰, 等. 南山国家公园生态补偿标准研究: 基于生态系统服务功能价值和机会成本[J]. 湖南林业科技, 2019, 46(5): 9-16. |
LIU F G, LI J, WANG J, et al. Research on ecological compensation standard of Nanshan National Park: based on ecosystem service value and opportunity cost[J]. Hunan For Sci Technol, 2019, 46(5): 9-16. DOI: 10.3969/j.issn.1003-5710.2019.05.002. | |
[9] | 赵淼峰, 黄德林. 国家公园生态补偿主体的建构研究[J]. 安全与环境工程, 2019, 26(1): 26-34, 41. |
ZHAO M F, HUANG D L. Construction of ecological compensation subject in National Parks[J]. Saf Environ Eng, 2019, 26(1): 26-34, 41. DOI: 10.13578/j.cnki.issn.1671-1556.2019.01.004. | |
[10] | 闫海明, 张瑜, 李炜, 等. 生态补偿标准估算方法研究进展[J]. 河北师范大学学报(自然科学版), 2022, 46(5): 533-540. |
YAN H M, ZHANG Y, LI W, et al. Review of methods to estimate the ecological compensation standard[J]. J Hebei Norm Univ (Nat Sci), 2022, 46(5): 533-540. DOI: 10.13763/j.cnki.jhebnu.nse.202205011. | |
[11] | 王振波, 于杰, 刘晓雯. 生态系统服务功能与生态补偿关系的研究[J]. 中国人口·资源与环境, 2009, 19(6): 17-22. |
WANG Z B, YU J, LIU X W. Research on the relationship between ecosystem services and ecological compensation[J]. China Popul Resour Environ, 2009, 19(6): 17-22. DOI: 10.3969/j.issn.1002-2104.2009.06.004. | |
[12] | 武萍, 张慧. 三江源国家公园生态补偿适度标准评估: 基于生态系统服务价值供给的视角[J]. 青海社会科学, 2022(1): 50-58. |
WU P, ZHANG H. Evaluation of appropriate criteria for ecological compensation in Sanjiangyuan National Park: based on the supply of ecosystem service value[J]. Qinghai Soc Sci, 2022(1): 50-58. DOI: 10.14154/j.cnki.qss.2022.01.009. | |
[13] | 柳荻, 胡振通, 靳乐山. 生态保护补偿的分析框架研究综述[J]. 生态学报, 2018, 38(2): 380-392. |
LIU D, HU Z T, JIN L S. Review on analytical framework of eco-compensation[J]. Acta Ecol Sin, 2018, 38(2): 380-392. DOI: 10.5846/stxb201605281028. | |
[14] | 吴娜, 宋晓谕, 康文慧, 等. 不同视角下基于InVEST模型的流域生态补偿标准核算: 以渭河甘肃段为例[J]. 生态学报, 2018, 38(7): 2512-2522. |
WU N, SONG X Y, KANG W H, et al. Standard of payment for ecosystem services in a watershed based on InVEST model under different standpoints: a case study of the Weihe River in Gansu Province[J]. Acta Ecol Sin, 2018, 38(7): 2512-2522. DOI: 10.5846/stxb201704130664. | |
[15] | 谭秋成. 关于生态补偿标准和机制[J]. 中国人口·资源与环境, 2009, 19(6): 1-6. |
TAN Q C. Eco-compensation standard and mechanism[J]. China Popul Resour Environ, 2009, 19(6): 1-6. DOI: 10.3969/j.issn.1002-2104.2009.06.001. | |
[16] | 李屹峰, 罗玉珠, 郑华, 等. 青海省三江源自然保护区生态移民补偿标准[J]. 生态学报, 2013, 33(3): 764-770. |
LI Y F, LUO Y Z, ZHENG H, et al. Standard of payments for ecosystem services in Sanjiangyuan Natural Reserve[J]. Acta Ecol Sin, 2013, 33(3): 764-770. DOI: 10.5846/stxb201205280785. | |
[17] | 王昊天, 陈珂, 王玲. 基于机会成本法的退耕还林生态补偿标准: 以辽西北生态脆弱区为例[J]. 沈阳大学学报(社会科学版), 2020, 22(2): 176-181. |
WANG H T, CHEN K, WANG L. Eco-compensation standard of sloping land conversion program based on opportunity cost method: taking ecological vulnerable region of northwestern Liaoning as an example[J]. J Shenyang Univ (Soc Sci), 2020, 22(2): 176-181. DOI: 10.16103/j.cnki.21-1582/c.2020.02.010. | |
[18] | 戴家远, 胡淑恒, 张贝尔, 等. 基于机会成本和生态系统服务价值核算的生态补偿标准研究: 以新安江流域为例[J]. 湖北农业科学, 2021, 60(21): 152-157. |
DAI J Y, HU S H, ZHANG B E, et al. Study on ecological compensation standard based on opportunity cost and ecosystem service value accounting: a case study of Xin’an River Basin[J]. Hubei Agric Sci, 2021, 60(21): 152-157. DOI: 10.14088/j.cnki.issn0439-8114.2021.21.033. | |
[19] | 姚鸿文, 陶吉兴, 杜群, 等. 浙江省森林生态服务功能评估与分析[J]. 南京林业大学学报(自然科学版), 2012, 36(4): 13-17. |
YAO H W, TAO J X, DU Q, et al. Evaluation and analysis of forest ecosystem services in Zhejiang Province[J]. J Nanjing For Univ (Nat Sci Ed), 2012, 36(4): 13-17. DOI: 10.3969/j.issn.1000-2006.2012.04.003. | |
[20] | 国家林业和草原局. 森林生态系统服务功能评估规范:GB/T 38582—2020[S]. 北京: 中国标准出版社, 2020. |
[21] | 浙江省发展和改革委员会. 生态系统生产总值(GEP)核算技术规范—陆域生态系统:DB33/T 2274—2020[S]. 杭州: 浙江省市场监督管理局, 2020. |
[22] | 李少宁. 江西省暨大岗山森林生态系统服务功能研究[D]. 北京: 中国林业科学研究院, 2007. |
LI S N. Study on forest ecosystem services in Jiangxi Province and Dagangshan[D]. Beijing: Chinese Academy of Forestry, 2007. | |
[23] | 刘玉莉, 江洪, 周国模, 等. 安吉毛竹林水汽通量变化特征及其与环境因子的关系[J]. 生态学报, 2014, 34(17): 4900-4909. |
LIU Y L, JIANG H, ZHOU G M, et al. Water vapor flux variation characteristic and the relationship with its environment factors in Phyllostachys edulis forest in Anji[J]. Acta Ecol Sin, 2014, 34(17): 4900-4909. DOI: 10.5846/stxb201301050025. | |
[24] | 唐小燕. 钱江源典型森林类型地表径流和土壤侵蚀特征研究[D]. 杭州: 浙江农林大学, 2012. |
TANG X Y. Characteristics of runoff and soil erosion of typical forest types in the source of Qiantang River[D]. Hangzhou: Zhejiang A & F University, 2012. | |
[25] | 袁位高, 江波, 葛永金, 等. 浙江省重点公益林生物量模型研究[J]. 浙江林业科技, 2009, 29(2): 1-5. |
YUAN W G, JIANG B, GE Y J, et al. Study on biomass model of key ecological forest in Zhejiang Province[J]. J Zhejiang For Sci Technol, 2009, 29(2): 1-5. DOI: 10.3969/j.issn.1001-3776.2009.02.001. | |
[26] | 浙江省林业科学研究院. 浙江省公益林建设与效益评价技术报告[R]. 杭州: 浙江省林业科学研究院, 2021. |
Zhejiang Academy of Forestry Sciences. Technical report on the construction and benefit evaluation of public welfare forests in Zhejiang Province[R]. Hangzhou: Zhejiang Academy of Forestry Science, 2021. | |
[27] | 国家发展和改革委员会, 国家统计局. 生态产品总值核算规范[M]. 北京: 人民出版社, 2023. |
National Development and Reform Commission, National Bureau of Statistics. Technical specification for gross ecosystem product accounting[M]. Beijing: People’s Publishing House, 2023. | |
[28] | 陶吉兴, 杜群, 季碧勇. 浙江森林碳汇功能监测[M]. 北京: 中国林业出版社, 2014. |
TAO J X, DU Q, JI B Y. The forest carbon sequestration function monitoring in Zhejiang[M]. Beijing: China Forestry Publishing House, 2014. | |
[29] | 国家林业局. 森林生态系统服务功能评估规范:LY/T 1721—2008[S]. 北京: 中国标准出版社, 2008. |
National Forestry Adnimistration. Specifications for assessment of forest ecosystem services in China: LY/T 1721—2008[S]. Beijing: Standards Press of China, 2008. |
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