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Effects of Grassland Degradation and Re-vegetation on Carbon and Nitrogen Storage in the Soils of the Headwater Area Nature Reserve on the Qinghai-Tibetan Plateau,China 被引量:16
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作者 SU Xu-kun WU Yu +3 位作者 DONG Shi-kui WEN Lu LI Yuan-yuan WANG Xue-xia 《Journal of Mountain Science》 SCIE CSCD 2015年第3期582-591,共10页
Both overgrazing and climate change contribute to grassland degradation in the alpine regions of China and negatively affect soil carbon and nitrogen pools. We quantified changes in soil organic carbon (SOC) and tot... Both overgrazing and climate change contribute to grassland degradation in the alpine regions of China and negatively affect soil carbon and nitrogen pools. We quantified changes in soil organic carbon (SOC) and total nitrogen (TN) in black soil beach (BSB). We measured SOC and TN in severely degraded and non-degraded grasslands to calculate differences in carbon and nitrogen storage, and field survey results were extrapolated to the entire headwaters area of the Qinghai-Tibetan Plateau (36.3xlos krn~) to determine SOC and TN losses from these grasslands. We also evaluated changes in SOC and TN in severely degraded grasslands that were artificially re-vegetated five, seven and nine years ago. Totally 92.43 Tg C and 7.08 Tg N were lost from the BSB in the headwater area, which was approximately 50% of the original C and N soil pools. Re-vegetation of the degraded grasslands in the headwater area would result in a gain of 32.71 Tg C in the soil after five years, a loss of 5.5a Tg C after seven years and an increase of 44.15 Tg C after nine years. The TN increased by 53.09% and 59.98% after five and nine years, respectively, while it decreased by 4.92% after seven years of re-vegetation. The results indicate that C and N stocks followed a "V" shaped pattern with re- vegetation time. Understanding plant-soil interactions during succession of artificially planting grassland ecosystems is essential for developing scientifically sound management strategies for the effectively re-vegetated BSB. 展开更多
关键词 Black soil beach Grassland degradation Soil loss REVEGETATION Alpine grasslands Soil carbonsequestration Soil nitrogen sequestration
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Enhancing phytolith carbon sequestration in rice ecosystems through basalt powder amendment 被引量:7
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作者 Fengshan Guo Zhaoliang Song +5 位作者 Leigh Sullivan Hailong Wang Xueyan Liu Xudong Wang Zimin Li Yuying Zhao 《Science Bulletin》 SCIE EI CAS CSCD 2015年第6期591-597,M0003,共8页
Global warming as a result of rapid increase in atmospheric COa emission is significantly influencing world's economy and human activities. Carbon sequestra- tion in phytoliths is regarded as a highly stable carbon s... Global warming as a result of rapid increase in atmospheric COa emission is significantly influencing world's economy and human activities. Carbon sequestra- tion in phytoliths is regarded as a highly stable carbon sink mechanism in terrestrial ecosystems to mitigate climate change. However, the response of plant phytolith-occluded carbon (PhytOC) to external silicon amendments remains unclear. In this study, we investigated the effects of basalt powder (BP) amendment on phytolith carbon sequestration in rice (Oryza sativa), a high-PhytOC accumulator. The results showed that the contents of phytolith and PhytOC in rice increased with BP amendment. The PhytOC produc- tion flux in different rice plant parts varied considerably (0.005-0.041 Mg CO_2 ha^-1 a^-1), with the highest flux in the sheath. BP amendment can significantly enhance flux of phytolith carbon sequestration in croplands by 150 %. If the global rice cultivation of 1.55 × 10^8 ha had a similar flux of PhytOC production in this study, 0.61× 10^7 to 1.54 × 10^7 Mg CO_2 would be occluded annually within global rice phytoliths. These findings highlight that exter- nal silicon amendment such as BP amendment represents an effective potential management tool to increase long- term biogeochemical carbon sequestration in crops such as rice and may also be an efficient way to mitigate the global warming indirectly. 展开更多
关键词 PHYTOLITH Carbon sink carbonsequestration Basalt powder amendment RICE
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重大森林恢复计划下的碳增汇效应——基于石柱县两次森林资源二类清查的分析 被引量:3
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作者 廖明蓉 邵景安 +2 位作者 郭跃 黄志霖 吴朝平 《生态学报》 CAS CSCD 北大核心 2014年第16期4707-4719,共13页
利用两次森林资源二类调查数据和林业工程数据,运用换算因子连续函数法,基于林分(小班)尺度测定森林含碳量,估算2002—2012年的10年间样区恢复计划实现的碳增汇贡献。结果表明:(1)近10年样区森林资源碳贮量和碳密度均获得较大程度的增加... 利用两次森林资源二类调查数据和林业工程数据,运用换算因子连续函数法,基于林分(小班)尺度测定森林含碳量,估算2002—2012年的10年间样区恢复计划实现的碳增汇贡献。结果表明:(1)近10年样区森林资源碳贮量和碳密度均获得较大程度的增加,碳贮量增加1.00TgC,平均碳密度增加2.13MgC/hm2;(2)森林碳贮量和碳密度的增加因重大森林恢复计划实施的非均衡性在空间上呈现显著差异,尤其方斗-七曜所夹槽谷区和七曜山南部中山区增幅较快;(3)关键林分因子,碳增汇能力最强的是松、杉、柏及针阔混,累计达1.36TgC,且主要集中于中、幼龄林阶段,累计碳增量0.94TgC;(4)近10年样区重大森林恢复计划共实现碳增汇0.97TgC,占同期森林碳增量的97.66%;平均碳密度增量7.64MgC/hm2,明显高于恢复计划未覆盖范围的森林碳密度增加值,尤其是天然林保护工程碳增量最大,占恢复计划实现碳增汇总量的85.57%;(5)更为重要的,因碳增汇主要发生在中、幼龄林阶段,在中、幼龄林向近、成熟林演化过程中,伴随森林碳密度的增加,仍会展现出较大的碳增汇潜力;(6)研究有助于丰富人们对现已开展的重大森林恢复计划成效的理解和认识,为未来应对和减缓气候变化适应性对策的制定提供科学依据。 展开更多
关键词 重大森林恢复计划 碳增汇效应 关键林分因子 森林资源二类清查 石柱县
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Linking microbial carbon pump capacity and efficacy to soil organic carbon storage and stability under heavy metal pollution 被引量:1
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作者 Xiao Liu Xia Xu +5 位作者 Tian Ma Shiwei Zhou Xiaoli Bi Hongbo He Xudong Zhang Weihuan Li 《Soil Ecology Letters》 CSCD 2023年第2期55-63,共9页
Heavy metal pollution can lead to a great loss of soil organic carbon(SOC).However,the microbial mechanisms that link heavy metal pollution to SOC remain poorly understood.Here,we investigated five apple-orchard soils... Heavy metal pollution can lead to a great loss of soil organic carbon(SOC).However,the microbial mechanisms that link heavy metal pollution to SOC remain poorly understood.Here,we investigated five apple-orchard soils at different distances from a Pb-Zn smelter.After assessing the heavy metal pollution level based on Grade Ⅱ of the national soil environmental quality standard(China),we found SOC stocks and microbial carbon pump(MCP)capacity(i.e.,microbial residue carbon)under medium and heavy pollution levels were significantly lower than those under safe,cordon and light pollution levels.The structural equation model showed causality in the SOC variations linked to pollution level through MCP capacity,which could contribute 77.8% of the variance in SOC storage.This verified MCP capacity can serve as a key parameter for evaluation of SOC storage under heavy metal pollution.Soil MCP efficacy,i.e.,the proportion of microbial residue carbon to SOC,also decreased under medium and heavy pollution.This suggested that,with a heavier pollution level,there was a higher rate of reduction of microbial residue carbon in soil than the rate of reduction of SOC.As MCP efficacy can be a useful assessment of SOC stability,the significantly positive relationship between MCP efficacy and clay content in correlation analysis implied that lower MCP efficacy was correlated with SOC stability under the heavier pollution level.Our study provides valuable insights to identify the mechanisms of microbially mediated C transformation processes that are influenced by heavy metal pollution in agroecosystems. 展开更多
关键词 Microbial residues Soil microbial carbon pump carbonsequestration Heavy metals Agricultural soil
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微生物碳捕获电池阴极室CO_2捕获速率的计算 被引量:1
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作者 姚森 何雅玲 +1 位作者 谢涛 席奂 《工程热物理学报》 EI CAS CSCD 北大核心 2012年第12期2020-2024,共5页
本文对含有Botryococcus Braunii UTEX 572的微生物碳捕获电池阴极室内的光合有效辐射(Photosyntheticallyactive radiation,PAR)分布建立数学模型。采用离散坐标法(Discrete Ordinate Method,DOM)求解一维稳态辐射传递方程(Radiative t... 本文对含有Botryococcus Braunii UTEX 572的微生物碳捕获电池阴极室内的光合有效辐射(Photosyntheticallyactive radiation,PAR)分布建立数学模型。采用离散坐标法(Discrete Ordinate Method,DOM)求解一维稳态辐射传递方程(Radiative transfer equation.RTE),使用SMARTS(the Simple Model for Atmospheric Transmission of Sunshine)模式对边界条件进行计算。在所建模型基础上,对400~800 nm波长范围的阴极室内PAR分布情况进行计算,并结合Botry-ococcusBraunii UTEX 572的生长动力学对CO_2的局部吸收速率进行研究。同时对不同散射处理方法,气泡含量以及藻类浓度对CO_2捕获速率的影响进行对比,为改善光在微生物碳捕获燃料电池阴极室的分布和阴极室优化设计提供依据。 展开更多
关键词 光合有效辐射 辐射传递 离散坐标法 CO2捕获
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立地类型对张广才岭天然白桦林生态系统碳储量的影响 被引量:7
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作者 郑瞳 牟长城 +1 位作者 张毅 李娜娜 《生态学报》 CAS CSCD 北大核心 2016年第19期6284-6294,共11页
运用相对生长方程与碳/氮分析方法,测定了我国温带张广才岭7种立地类型(阳坡上、中、下坡位和阴坡上、中、下坡位及谷地)天然白桦林的生态系统碳储量(植被与土壤)及植被净初级生产力与年净固碳量,揭示立地类型对温带天然白桦林生态系统... 运用相对生长方程与碳/氮分析方法,测定了我国温带张广才岭7种立地类型(阳坡上、中、下坡位和阴坡上、中、下坡位及谷地)天然白桦林的生态系统碳储量(植被与土壤)及植被净初级生产力与年净固碳量,揭示立地类型对温带天然白桦林生态系统碳库及其固碳能力的影响规律。结果表明:1白桦林植被碳储量((76.28±18.11)—(115.57±5.59)t C/hm^2)在阴、阳坡的上坡位和下坡位显著高于谷地35.1%—51.5%(P<0.05),阴、阳坡中坡位高于谷地但差异性不显著(32.5%—33.6%,P>0.05);2其土壤碳储量((81.53±6.15)—(181.90±21.62)t C/hm^2)在阳坡各坡位显著高于阴坡中、下部与谷地24.0%—123.1%(P<0.05),阴坡上、中部显著高于阴坡下部和谷地36.0%—81.2%(P<0.05);3其生态系统碳储量((174.57±20.27)—(282.96±17.92)t C/hm^2)在阳坡各坡位显著高于阴坡中、下坡位与谷地14.1%—62.1%(P<0.05),阴坡上、中坡位显著高于阴坡下坡位与谷地19.5%—48.1%(P<0.05);4其植被净初级生产力((6.98±1.60)—(9.59±0.69)t hm^(-2)a^(-1))在阴、阳坡上坡位显著高于阴坡中坡位34.2%—37.4%(P<0.05),其他4个立地类型高于阴坡中坡位但差异性不显著(8.5%—20.6%,P>0.05);5其年净固碳量((3.26±0.74)—(4.56±0.36)t C hm^(-2)a^(-1))在阳坡上坡位显著高于阴坡中坡位39.9%(P<0.05),其他5个立地类型高于阴坡中坡位但差异性不显著(9.2%—30.4%,P>0.05)。因此,张广才岭天然白桦林的生态系统碳储量及其固碳能力均存在着明显的立地分异规律性,故在评价与管理我国温带白桦林碳汇时应考虑立地类型影响。 展开更多
关键词 张广才岭 白桦林 生态系统碳储量 净初级生产力 年净固碳量 立地影响
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小水电代燃料工程对黔东南人工林生态系统固碳效益的影响 被引量:1
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作者 吕志远 马智杰 +1 位作者 查同刚 王伊琨 《中国水利水电科学研究院学报》 北大核心 2016年第5期392-399,共8页
研究小水电代燃料工程对人工林生态系统的固碳效益的影响,是小水电代燃料工程生态效益和可持续性评价的重要内容。本文选取贵州省麻江县小水电代燃料工程项目区内常绿阔叶次生林、马尾松人工林和柏木人工林为研究对象,以立地条件相近的... 研究小水电代燃料工程对人工林生态系统的固碳效益的影响,是小水电代燃料工程生态效益和可持续性评价的重要内容。本文选取贵州省麻江县小水电代燃料工程项目区内常绿阔叶次生林、马尾松人工林和柏木人工林为研究对象,以立地条件相近的非项目区马尾松人工林和柏木人工林为对照,通过外业调查和实验室测定,对比分析了不同林分生态系统碳储量间的差异。结果如下:(1)项目区内马尾松和柏木人工林的乔木层、林下层和土壤层碳储量均大于各自对照林分,其中在乔木层上碳储量差异显著(P<0.05)。(2)项目区内常绿阔叶次生林、马尾松和柏木人工林生态系统碳储量分别为153.70、88.25和36.69 Mg/hm2,其中次生林显著大于人工林,马尾松和柏木人工林均显著大于各自对照林分(P<0.05)。研究表明:(1)小水电代燃料工程增加了人工林生态系统碳储量,提高了人工林生态系统的固碳效益。(2)研究区内的植被恢复具有较高的固碳潜力。 展开更多
关键词 小水电代燃料工程 人工林 黔东南 固碳效益
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