|
桂西北杉木成熟林生态系统碳贮量及其分布格局
|
Abstract:
为了探究桂西北杉木人工林成熟林的碳汇功能,为其生态效益的合理评价和可持续经营提供依据。以广西南丹县杉木成熟林(30年生)为研究对象,通过野外样地调查和室内分析,对其生态系统碳储量及其分布格局进行了研究。结果表明:1) 各器官碳含量介于468.4~502.8 g?kg?1之间,按大小排列次序为干皮 > 干材 > 树叶 > 树枝 > 树根,林分中不同层次植物碳含量为乔木层 > 灌木层 > 草本层,土壤(0~80 cm)平均碳含量为15.16 g?kg?1,随土层加深逐渐下降。2) 杉木成熟林生态系统碳贮量为241.63 t?hm?2,不同部分碳贮量由大到小次序为土壤层(145.61 t?hm?2) > 乔木层(91.36 t?hm?2) > 凋落物层(2.78 t?hm?2 > 灌木层(1.38 t?hm?2) > 草本层(0.50 t?hm?2)。乔木层各器官碳贮量与其生物量成正比例关系,干材的生物量最大,其碳贮量也最高,占乔木层碳贮量的68.14%,树枝、树叶、干皮和树根等碳贮量共占31.86%。3) 杉木成熟林乔木层年净生产力为7.84 t?hm?2?a?1,有机碳年净固定量为3.84 t?hm?2?a?1,年净吸收CO2量为14.08 t?hm?2?a?1。因此,桂西北杉木成熟林具有较强的固碳功能,在区域森林生态系统碳循环中发挥着重要的作用。
In order to explore the carbon sequestration of the mature Cunninghamia lanceolata plantation in northwestern Guangxi, and to provide a basis for rational assessment of its ecological benefits and sustainable management, taking the mature C. lanceolata plantation (30-year-old) of Nandan County in northwestern of Guangxi as the research objects, the carbon content, carbon storage, annual carbon sequestration and distribution characteristics of the C. lanceolata plantation ecosystems were studied by the field plot survey and laboratory chemical analysis method. The results showed that 1) Carbon content of each organ ranged between 468.4 and 502.8 g?kg?1, and it was in the order of bark > stem > leaf > branch > root. The carbon content of different layers within the stand was in the order: tree layer > shrub layer > herb layer. The carbon content in the soil (0~80 cm) was 15.16 g?kg?1, and declines with soil depth. 2) The total carbon storage of mature C. lanceolata plantation ecosystems was estimated to be 241.63 t?hm?2, and carbon storage of each component in this ecosystem was in the order as soil layer > (145.61 t?hm?2) tree layer (91.36 t?hm?2) > litter layer (2.78 t?hm?2) > shrub layer (1.38 t?hm?2) > herb layer (0.50 t?hm?2). The carbon storage of different organs was related to the biomass of corresponding organs, stem accumulated the highest carbon storage, comprised 68.14% of carbon storage in tree layer, the rest in branch, leaf, bark and root etc., seized 31.86%. 3) The annual net productivity of C. lanceolata plantation was 7.84 t?hm?2?a?1, and annual carbon fixation was 3.84 t?hm?2?a?1, and the annual net
[1] | Zhou, L., Li, S., Liu, B., et al. (2019) Tissue-Specific Carbon Concentration, Carbon Stock, and Distribution in Cunninghamia lanceolata (Lamb.) Hook Plantations at Various Developmental Stages in Subtropical China. Annals of Forest Science, 76, Article No. 70. https://doi.org/10.1007/s13595-019-0851-x |
[2] | 谢敏洋, 何斌, 戴军, 等. 桂西北秃杉人工林不同年龄阶段的固碳功能[J]. 林业科学研究, 2020, 33(5): 106-113. |
[3] | 刘世荣, 杨予静, 王晖. 中国人工林经营发展战略与对策: 从追求木材产量的单一目标经营转向提升生态系统服务质量和效益的多目标经营[J]. 生态学报, 2018, 38(1): 1-10. |
[4] | Zhao, M., Yang, J., Zhao, N., et al. (2019) Estimation of China’s Forest Stand Biomass Carbon Sequestration Based on the Continuous Biomass Expansion Factor Model and Seven Forest Inventories from 1977 to 2013. Forest Ecology and Management, 448, 528-534. https://doi.org/10.1016/j.foreco.2019.06.036 |
[5] | 魏晓华, 郑吉, 刘国华, 等. 人工林碳汇潜力新概念及应用[J]. 生态学报, 2015, 35(12): 3881-3885. |
[6] | 郑鸣鸣, 任正标, 王友良, 等. 间伐强度对杉木中龄林生长和结构的影响[J]. 森林与环境学报, 2020, 40(4): 369-376. |
[7] | 王姣娇, 高唤唤, 康宏樟. 杉木人工林碳储量影响因素研究进展[J]. 西北林学院学报, 2018, 33(3): 74-81. |
[8] | 尉海东, 马祥庆. 中亚热带不同发育阶段杉木人工林生态系统碳贮量研究[J]. 江西农业大学学报, 2006, 28(2): 239-243. |
[9] | 刘延惠, 丁访军, 崔迎春, 等. 黔中地区不同林龄杉木人工林碳贮量及其分配特征[J]. 水土保持学报, 2015, 29(4): 278-283. |
[10] | 韦家国, 周刚, 刘凡胜, 等. 秃杉和连栽杉木林生态系统C积累及其分布格局[J]. 亚热带农业研究, 2018, 14(1): 29-33. |
[11] | 黄振格, 何斌, 谢敏洋, 等连栽桉树人工林土壤氮素季节动态特征[J]. 东北林业大学学报, 2020, 48(9): 88-94. |
[12] | 中国土壤学会农业化学专业委员会. 土壤农业化学常规分析方法[M]. 北京: 科学出版社, 1983: 272-273. |
[13] | 曾伟生, 陈新云, 蒲莹, 等. 基于国家森林资源清查数据的不同生物量和碳储量估计方法的对比分析[J]. 林业科学研究, 2018, 31(1): 66-71. |
[14] | 黄弼昌, 何斌, 周燕萍, 等. 速生阶段西南桦人工林碳贮量及其分格局[J]. 中南林业科技大学学报, 2016, 36(2): 79-83 |
[15] | 韦明宝, 王朝健, 杨正文, 等. 桂西北马尾松人工林生态系统碳贮量与分布[J]. 亚热带农业研究, 2019, 15(3): 152-156. |
[16] | 周玉荣, 于振良, 赵士洞. 我国主要森林生态系统碳贮量和碳平衡[J]. 植物生态学报, 2000, 24(5): 518-522. |
[17] | 滕秋梅, 何斌, 梁添富, 等. 桂东南火力楠人工林生态系统碳储量及其分布格局[J]. 农业研究与应用, 2016, 26(4): 7-11. |
[18] | 兰斯安, 杜虎, 曾馥平, 等. 不同林龄杉木人工林碳储量及其分配格局[J]. 应布用生态学报, 2016, 27(4): 1125-1134. |
[19] | 明安刚, 贾宏炎, 田祖为, 等. 不同林龄格木人工林碳储量及其分配特征[J]. 应用生态学报, 2014, 25(4): 940-946. |
[20] | 刘世荣, 王晖, 栾军伟. 中国森林土壤碳储量与土壤碳过程研究进展[J]. 生态学报, 2011, 31(19): 5437-5448. |