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基于印度零碳排放目标的 gamhar(Gmelina arborea Roxb.)农林复合系统的碳固存和信用潜力。

Carbon sequestration and credit potential of gamhar (Gmelina arborea Roxb.) based agroforestry system for zero carbon emission of India.

机构信息

KVK, Jehanabad, Bihar Agricultural University, Sabour, Bhagalpur, Bihar, 813210, India.

Faculty of Forestry, Birsa Agricultural University, Ranchi, Jharkhand, 834006, India.

出版信息

Sci Rep. 2024 Feb 28;14(1):4828. doi: 10.1038/s41598-024-53162-5.

Abstract

The agroforestry system is the best option to achieve the net zero carbon emissions target for India. Keeping this view, carbon sequestration and credit potential of gamhar based agroforestry system has been assessed. The experiment was carried out in randomized block design in seven different treatments with five replications. Gamhar tree biomass accumulation was higher in gamhar based agroforestry system compared to sole gamhar. Among different tree components, stem contributed a maximum to total gamhar tree biomass followed by roots, leaves and branches. The average contributions of stems, roots, leaves and branches in total tree biomass in two annual cycles (2016-17 and 2017-18) varied between 50 and 60, 19.8 and 20, 19.2 and 20, and 10.7 and 12.7 percent, respectively. In case of crops, above ground, below ground and total biomass was significantly higher in sole intercrops than gamhar based agroforestry system. Total (Tree + interrops + Soil) carbon stock, carbon sequestration, carbon credit and carbon price were significantly affected by treatments, and was maximum in Sole Greengram-Mustard. Net carbon emission was also recorded lowest in Sole Greengram-Mustard for which the values were 811.55% and 725.24% and 760.69% lower than Sole Gamhar in 2016-17, 2017-18 and in pooled data, respectively.

摘要

农林复合系统是印度实现净零碳排放目标的最佳选择。基于这一观点,评估了基于 Gamhar 的农林复合系统的碳固存和信用潜力。该实验采用随机区组设计,在七个不同处理中进行了五次重复。与单独的 Gamhar 相比,基于 Gamhar 的农林复合系统中的 Gamhar 树生物量积累更高。在不同的树木组成部分中,树干对总 Gamhar 树生物量的贡献最大,其次是根、叶和枝。在两个年度周期(2016-17 年和 2017-18 年)中,总树生物量中茎、根、叶和枝的平均贡献分别在 50%至 60%、19.8%至 20%、19.2%至 20%和 10.7%至 12.7%之间变化。就作物而言,地上部分、地下部分和总生物量在单独间作中明显高于基于 Gamhar 的农林复合系统。总(树木+间作+土壤)碳储量、碳固存、碳信用和碳价格均受处理的显著影响,在单独绿豆-芥菜中最大。净碳排放也在单独绿豆-芥菜中记录到最低,与单独 Gamhar 相比,2016-17 年、2017-18 年和汇总数据中的值分别低 811.55%、725.24%和 760.69%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/240c/10899571/2ef20c7aed4b/41598_2024_53162_Fig1_HTML.jpg

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