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Retention of harvest residues promotes the accumulation of topsoil organic carbon by increasing particulate organic carbon in a Chinese fir plantation
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作者 Jiamin Yang Ke Huang +5 位作者 Xin Guan Weidong Zhang Renshan Li Longchi Chen Silong Wang Qingpeng Yang 《Forest Ecosystems》 SCIE CSCD 2024年第5期720-727,共8页
Background As commonly used harvest residue management practices in subtropical plantations,stem only harvesting(SOH)and whole tree harvesting(WTH)are expected to affect soil organic carbon(SOC)content.However,knowled... Background As commonly used harvest residue management practices in subtropical plantations,stem only harvesting(SOH)and whole tree harvesting(WTH)are expected to affect soil organic carbon(SOC)content.However,knowledge on how SOC and its fractions(POC:particulate organic carbon;MAOC:mineral-associated organic carbon)respond to different harvest residue managements is limited.Methods In this study,a randomized block experiment containing SOH and WTH was conducted in a Chinese fir(Cunninghamia lanceolata)plantation.The effect of harvest residue management on SOC and its fractions in topsoil(0–10cm)and subsoil(20–40cm)was determined.Plant inputs(harvest residue retaining mass and fine root biomass)and microbial and mineral properties were also measured.Results The responses of SOC and its fractions to different harvest residue managements varied with soil depth.Specifically,SOH enhanced the content of SOC and POC in topsoil with increases of 15.9%and 29.8%,respectively,compared with WTH.However,SOH had no significant effects on MAOC in topsoil and SOC and its fractions in subsoil.These results indicated that the increase in POC induced by the retention of harvest residue was the primary contributor to SOC accumulation,especially in topsoil.The harvest residue managements affected SOC and its fractions through different pathways in topsoil and subsoil.The plant inputs(the increase in fine root biomass induced by SOH)exerted a principal role in the SOC accumulation in topsoil,whereas mineral and microbial properties played a more important role in regulating SOC dynamics than plants inputs in subsoil.Conclusion The retention of harvest residues can promote SOC accumulation by increasing POC,and is thus suggested as an effective technology to enhance the soil carbon sink for mitigating climate change in plantation management. 展开更多
关键词 Chinese fir plantation Soil organic carbon Particulate organic carbon mineral-associated organic carbon Harvest residue management
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Effects of desert plant communities on soil enzyme activities and soil organic carbon in the proluvial fan in the eastern foothills of the Helan Mountain in Ningxia,China
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作者 SHEN Aihong SHI Yun +8 位作者 MI Wenbao YUE Shaoli SHE Jie ZHANG Fenghong GUO Rui HE Hongyuan WU Tao LI Hongxia ZHAO Na 《Journal of Arid Land》 SCIE CSCD 2024年第5期725-737,共13页
It is of great significance to study the effects of desert plants on soil enzyme activities and soil organic carbon(SOC)for maintaining the stability of the desert ecosystem.In this study,we studied the responses of s... It is of great significance to study the effects of desert plants on soil enzyme activities and soil organic carbon(SOC)for maintaining the stability of the desert ecosystem.In this study,we studied the responses of soil enzyme activities and SOC fractions(particulate organic carbon(POC)and mineral-associated organic carbon(MAOC))to five typical desert plant communities(Convolvulus tragacanthoides,Ephedra rhytidosperma,Stipa breviflora,Stipa tianschanica var.gobica,and Salsola laricifolia communities)in the proluvial fan in the eastern foothills of the Helan Mountain in Ningxia Hui Autonomous Region,China.We recorded the plant community information mainly including the plant coverage and herb and shrub species,and obtained the aboveground biomass and plant species diversity through sample surveys in late July 2023.Soil samples were also collected at depths of 0–10 cm(topsoil)and 10–20 cm(subsoil)to determine the soil physicochemical properties and enzyme activities.The results showed that the plant coverage and aboveground biomass of S.laricifolia community were significantly higher than those of C.tragacanthoides,S.breviflora,and S.tianschanica var.gobica communities(P<0.05).Soil enzyme activities varied among different plant communities.In the topsoil,the enzyme activities of alkaline phosphatase(ALP)andβ-1,4-glucosidas(βG)were significantly higher in E.rhytidosperma and S.tianschanica var.gobica communities than in other plant communities(P<0.05).The topsoil had higher POC and MAOC contents than the subsoil.Specifically,the content of POC in the topsoil was 18.17%–42.73%higher than that in the subsoil.The structural equation model(SEM)indicated that plant species diversity,soil pH,and soil water content(SWC)were the main factors influencing POC and MAOC.The soil pH inhibited the formation of POC and promoted the formation of MAOC.Conversely,SWC stimulated POC production and hindered MAOC formation.Our study aimed to gain insight into the effects of desert plant communities on soil enzyme activities and SOC fractions,as well as the drivers of SOC fractions in the proluvial fan in the eastern foothills of the Helan Mountain and other desert ecosystems. 展开更多
关键词 proluvial fan desert plant community soil enzyme activity particulate organic carbon mineral-associated organic carbon Helan Mountain
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Forest management causes soil carbon loss by reducing particulate organic carbon in Guangxi, Southern China 被引量:1
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作者 Xiaojie Li Qiufang Zhang +2 位作者 Jiguang Feng Demeng Jiang Biao Zhu 《Forest Ecosystems》 SCIE CSCD 2023年第1期73-81,共9页
Background: The loss of soil organic carbon(SOC) following conversion of natural forests to managed plantations has been widely reported. However, how different SOC fractions and microbial necromass C(MNC) respond to ... Background: The loss of soil organic carbon(SOC) following conversion of natural forests to managed plantations has been widely reported. However, how different SOC fractions and microbial necromass C(MNC) respond to forest management practices remains unclear.Methods: We sampled 0–10 cm mineral soil from three different management plantations and one protected forest in Guangxi, Southern China, to explore how forest management practices affect SOC through changing mineralassociated C(MAOC) and particulate organic C(POC), as well as fungal and bacterial necromass C.Results: Compared with the protected forest, SOC and POC in the abandoned, mixed and Eucalyptus plantations significantly decreased, but MAOC showed no significant change, indicating that the loss of SOC was mainly from decreased POC under forest management. Forest management also significantly reduced root biomass, soil extractable organic C, MNC, and total microbial biomass(measured by phospholipid fatty acid), but increased fungi-to-bacteria ratio(F:B) and soil peroxidase activity. Moreover, POC was positively correlated with root biomass, total microbial biomass and MNC, and negatively with F:B and peroxidase activity. These results suggested that root input and microbial properties together regulated soil POC dynamics during forest management.Conclusion: Overall, this study indicates that forest management intervention significantly decreases SOC by reducing POC in Guangxi, Southern China, and suggests that forest protection can help to sequester more soil C in forest ecosystems. 展开更多
关键词 Soil organic carbon Forest management mineral-associated organic carbon Particulate organic carbon Microbial necromass carbon
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Organic-inorganic fertilization promotes paddy soil macroaggregate organic carbon accumulation associated with key bacterial populations in subtropical China
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作者 Jinhua ZHAO Lin CHEN +5 位作者 Guixiang ZHOU Fang LI Jiabao ZHANG Congzhi ZHANG Donghao MA Biao FENG 《Pedosphere》 SCIE CAS CSCD 2024年第5期941-950,共10页
Macroaggregate organic carbon(Macro-OC)accumulation in paddy soils is of great significance in promoting multiple agroecosystem services.However,the effects of different fertilization practices on Macro-OC accumulatio... Macroaggregate organic carbon(Macro-OC)accumulation in paddy soils is of great significance in promoting multiple agroecosystem services.However,the effects of different fertilization practices on Macro-OC accumulation in paddy soils at the regional scale have not been comprehensively investigated.Here,we conducted long-term fertilization field experiments at four sites,Taoyuan,Wangcheng,Jinxian,and Suzhou,in the subtropical area of China to reveal the effects of inorganic and organic-inorganic(OIF)fertilization on Macro-OC accumulation and its relationships with important microbial traits(the abundance ratio of GH48:cbhI genes and the richness of keystone bacterial taxa)in paddy soils.The results showed that long-term fertilization(particularly OIF)significantly increased the content of Macro-OC,which mainly consisted of particulate organic carbon(C).Organic-inorganic fertilization decreased the percentage of O-alkyl C but increased the percentages of alkyl,aromatic,and phenolic C.Organic-inorganic fertilization promoted the abundance of the bacterial cellulose-degrading gene GH48 retrieved from macroaggregates.The orders Anaerolineales,Bacillales,and Clostridiales were identified as keystone bacterial taxa in macroaggregates and were significantly correlated with the physical fraction and chemical structure of Macro-OC.Structural equation modeling revealed that fertilization-induced changes in soil pH and C:N ratio affected the richness of Anaerolineales,Bacillales,and Clostridiales,which was strongly associated with the increase of percentages of aromatic and phenolic C and further facilitated Macro-OC accumulation.Together,these results suggested that OIF promoted Macro-OC accumulation associated with key bacterial populations in paddy soils.The results provide an important basis for boosting soil C accrual in the subtropical rice-growing areas. 展开更多
关键词 bacterial community keystone bacterial taxa mean weight diameter mineral-associated organic carbon particulate organic carbon structural equation modeling
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大气CO_(2)浓度和温度升高对玉米农田黑土碳库及细菌群落的影响
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作者 司马鑫琪 李彦生 +8 位作者 于镇华 刘俊杰 顾海东 刘居东 王光华 吴俊江 苗淑杰 乔云发 金剑 《土壤与作物》 2024年第4期428-438,共11页
为研究气候变化对东北农田黑土碳库和相关微生物组特征的影响,本文以东北春玉米连作的黑土为研究对象,利用原位开顶式气候室(OTC)模拟长期大气CO_(2)浓度和温度升高,利用土壤物理分级技术将土壤有机碳(SOC)分组为颗粒(POC)和矿质结合有... 为研究气候变化对东北农田黑土碳库和相关微生物组特征的影响,本文以东北春玉米连作的黑土为研究对象,利用原位开顶式气候室(OTC)模拟长期大气CO_(2)浓度和温度升高,利用土壤物理分级技术将土壤有机碳(SOC)分组为颗粒(POC)和矿质结合有机碳(MOC),并通过16S rRNA高通量测序分析土壤细菌微生物群落结构,探讨气候变化影响黑土碳库稳定性的微生物作用机制。结果表明,与CK相比,连续12年大气CO_(2)浓度和温度升高没有改变SOC总量,但影响其周转率。温度升高显著增加了细颗粒有机碳(fPOC)的含量,CO_(2)和温度同时升高降低了MOC含量。CO_(2)浓度升高并未影响fPOC和MOC含量。温度或CO_(2)浓度升高显著改变了细菌群落结构,温度升高增加苔藓杆菌属(Bryobacter)的相对丰度,CO_(2)浓度升高增加了革兰氏阴性菌硝化螺旋菌属(Nitrospirae)的丰度。长期大气CO_(2)浓度和温度同时升高增加硝化螺旋菌属(Nitrospirae)的丰度,该菌属丰度的增加可能会进一步影响SOC稳定性。 展开更多
关键词 土壤有机碳 气候变化 土壤颗粒态有机碳 矿物结合态有机碳 微生物群落
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Changes in Soil Organic Carbon After Five Years of Biowaste Compost Application in a Mediterranean Vegetable Cropping System 被引量:1
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作者 Salvatore BAIANO Luigi MORRA 《Pedosphere》 SCIE CAS CSCD 2017年第2期328-337,共10页
Biowaste compost can influence soil organic matter accumulation directly or indirectly. A 5-year experiment was conducted to assess the influence of biowaste compost on the process of soil aggregation and soil organic... Biowaste compost can influence soil organic matter accumulation directly or indirectly. A 5-year experiment was conducted to assess the influence of biowaste compost on the process of soil aggregation and soil organic carbon (SOC) accumulation in a Mediterranean vegetable cropping system. The study involved four treatments: biowaste compost (COM), mineral NPK fertilizers (MIN), biowaste compost with half-dose N fertilizer (COMN), and unfertilized control (CK). The SOC stocks were increased in COM, COMN, and MIN by 20.2, 14.9, and 2.4 Mg ha-1 over CK, respectively. The SOC concentration was significantly related to mean weight diameter of aggregates (MWD) (P 〈 0.05, R^2 = 0.798 4) when CK was excluded from regression analysis. Compared to CK, COM and COMN increased the SOC amount in macroaggregates (〉 250 μm) by 2.7 and 0.6 g kg-1 soil, respectively, while MIN showed a loss of 0.4 g kg-1 soil. The SOC amount in free microaggregates (53-250 ttm) increased by 0.9, 1.6, and 1.0 g kg-1 soil for COM, COMN, and MIN, respectively, while those in the free silt plus clay aggregates (~ 53 ~m) did not vary significantly. However, when separating SOC in particle-size fractions, we found that more stable organic carbon associated with mineral fraction 〈 53 μm (MOM-C) increased significantly by 3.4, 2.2, and 0.7 g kg-1 soil for COM, COMN, and MIN, respectively, over CK, while SOC amount in fine particulate organic matter (POM) fraction (53-250 μm) increased only by 0.3 g kg-1 soil for both COM and COMN, with no difference in coarse POM 〉 250 μm. Therefore, we consider that biowaste compost could be effective in improving soil structure and long-term C sequestration as more stable MOM-C. 展开更多
关键词 AGGREGATES carbon sequestration mineral-associated organic matter particle-size fraction particulate organic matter soil structure
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不同生态带下盐城滩涂湿地土壤颗粒和矿物结合有机碳特征 被引量:8
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作者 全桂香 严金龙 《地球与环境》 CAS CSCD 北大核心 2010年第2期214-218,共5页
通过对比不同生态带下盐城滩涂湿地表层土壤中颗粒有机碳(POC)和矿物结合有机碳(MOC)含量与分布,探讨不同生态带下滩涂植被对土壤环境特别是土壤有机质组分分布及其累积的影响。结果表明:不同生态带的滩涂湿地表层土壤总有机碳(TOC)和总... 通过对比不同生态带下盐城滩涂湿地表层土壤中颗粒有机碳(POC)和矿物结合有机碳(MOC)含量与分布,探讨不同生态带下滩涂植被对土壤环境特别是土壤有机质组分分布及其累积的影响。结果表明:不同生态带的滩涂湿地表层土壤总有机碳(TOC)和总氮(TN)含量分布规律为:芦苇地>互花米草滩>盐蒿滩>光滩,反映了盐城滩涂湿地土壤由海向陆土壤质地由砂到粉砂,最后为粘土的变化规律;互花米草滩对土壤有机质有着比光滩和盐蒿滩更高的富集能力,芦苇地的颗粒有机碳(POCf+POCo)含量为4.17 g/kg,互花米草滩的POC含量为2.14 g/kg,远高于盐蒿滩(1.92 g/kg)和光滩(0.31 g/kg)。互花米草的引种从有机碳物理分级组分上改变了TOC的分配,有利于提高土壤中游离态颗粒有机物、闭蓄态颗粒有机物的含量以及占土壤有机碳的比例。该研究能够为沿海滩涂湿地碳存储和固碳潜力以及评价和保护湿地生态系统提供一定的科学依据。 展开更多
关键词 湿地 生态带 颗粒有机碳 矿物结合有机碳
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长期不同施肥对塿土大团聚体中有机碳组分特征的影响 被引量:22
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作者 谢钧宇 彭博 +2 位作者 王仁杰 张树兰 杨学云 《植物营养与肥料学报》 CAS CSCD 北大核心 2019年第7期1073-1083,共11页
【目的】研究长期施肥对土大团聚体中有机碳组分特征的影响,揭示不同施肥方式下土壤有机碳的固持机制,为合理施肥提供理论依据。【方法】采集土35年长期肥料定位试验不同施肥处理0—10 cm和10—20 cm土样,分析其大团聚体中各组分有... 【目的】研究长期施肥对土大团聚体中有机碳组分特征的影响,揭示不同施肥方式下土壤有机碳的固持机制,为合理施肥提供理论依据。【方法】采集土35年长期肥料定位试验不同施肥处理0—10 cm和10—20 cm土样,分析其大团聚体中各组分有机碳含量的变化。试验处理为:不施肥(CK)、单施化肥(NP)、单施有机肥(M)和有机肥配施化肥(MNP)。【结果】与CK相比,长期NP处理对大团聚体中粗颗粒有机碳(cPOC)、细颗粒有机碳(fPOC)、大团聚体中微团聚体内颗粒有机碳(iPOC)以及矿质结合态有机碳(MOC)组分的有机碳(OC)含量均无显著影响;而M处理以及MNP处理可显著提高两土层cPOC和iPOC组分的OC含量以及0—10 cm土层MOC组分的OC含量,其中,cPOC含量增幅分别为174%~338%和215%~245%,iPOC含量增幅分别为127%~241%和106%~130%,MOC含量增幅达28.9%~34.6%。MNP处理显著提高了0—10 cm土层fPOC组分的OC含量,增幅达482.1%。累积碳投入量与大团聚体中各组分的OC含量呈显著线性相关,尤其是iPOC含量,表明长期施肥过程中土有机碳在大团聚体中固存的差异主要受物理保护的颗粒有机碳组分的影响。【结论】关中地区土长期施化肥对大团聚体中各组分OC含量没有显著影响,而长期单施有机肥能进一步增加大团聚体中各组分OC含量,有机肥配施化肥能显著增加团聚体中各组分OC含量,特别是大团聚体中微团聚体内颗粒有机碳组分的含量,进而增加土的有机碳固持。因此,有机肥配施化肥是提高土有机碳含量的有效措施。 展开更多
关键词 化肥 有机肥 土 大团聚体中微团聚体内颗粒有机碳 矿质结合态有机碳
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中亚热带退化林地土壤有机碳及不同粒径土壤颗粒有机碳的变化 被引量:8
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作者 王娜 朱小叶 +2 位作者 方晰 辜翔 陈金磊 《水土保持学报》 CSCD 北大核心 2018年第3期218-225,234,共9页
采用土壤颗粒分级方法,以湘中丘陵区地域相邻、环境条件基本一致的4种林地:檵木—南烛—满山红灌草丛(LVR)、檵木—杉木—白栎灌木林(LCQ)、马尾松—石栎—檵木针阔混交林(PLL)和石栎-红淡比-青冈常绿阔叶林(LAG)为对象,研究土壤有机碳(... 采用土壤颗粒分级方法,以湘中丘陵区地域相邻、环境条件基本一致的4种林地:檵木—南烛—满山红灌草丛(LVR)、檵木—杉木—白栎灌木林(LCQ)、马尾松—石栎—檵木针阔混交林(PLL)和石栎-红淡比-青冈常绿阔叶林(LAG)为对象,研究土壤有机碳(SOC)及不同粒径土壤颗粒有机碳含量随着林地退化的变化特征,剖析林地退化对中亚热带森林SOC库的影响机制。结果表明:随着林地退化,>2μm砂粉粒百分含量增高,而<2μm黏粒百分含量下降,土壤质地粗砂化;林地SOC含量呈负指数函数下降,LAG林地SOC库以粉粒、黏粒有机碳为分配主体,PLL、LCQ、LVR林地以粉粒、砂粒有机碳为分配主体;随着林地退化,同一土层同一粒径有机碳含量呈下降趋势,砂粒有机碳含量的分配比例明显增加,黏粒有机碳含量的分配比例明显下降,同一土层颗粒有机碳(POC)/矿物结合有机碳(MOC)值增加,SOC固持和保护作用减弱,SOC稳定性下降。群落物种组成、生物量和土壤颗粒组成随着林地退化的变化是导致林地SOC含量和稳定性下降的主要因素。 展开更多
关键词 林地退化 土壤有机碳 POC/moc 湘中丘陵区
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不同撂荒年限的热带农田土壤有机碳组分累积特征——以海南定安县撂荒农田为例 被引量:4
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作者 邢瑶丽 赵志忠 +2 位作者 李燕 赵泽阳 李沁枚 《安徽农业大学学报》 CAS CSCD 2018年第6期1085-1091,共7页
为了解热带地区不同农田土壤有机碳组分累积特征及影响因素,选取海南定安县农田和不同年限撂荒地撂荒地A(撂荒年限<3年)、撂荒地B(3年<撂荒年限<8年)、撂荒地C(8年<撂荒年限<10年)0~30cm土层土壤有机体碳含量进行研究... 为了解热带地区不同农田土壤有机碳组分累积特征及影响因素,选取海南定安县农田和不同年限撂荒地撂荒地A(撂荒年限<3年)、撂荒地B(3年<撂荒年限<8年)、撂荒地C(8年<撂荒年限<10年)0~30cm土层土壤有机体碳含量进行研究。结果表明,均随着撂荒年限的增加,土壤总有机碳含量和土壤矿物结合态有机碳含量呈不断降低的趋势,并且随着土层深度的增加土壤总有机碳的表聚现象逐渐减弱。相关分析表明,土壤有机碳含量和矿物结合态有机碳含量均有显著的相关性(P<0.01)。而土壤颗粒有机碳的含量在0~30 cm土层土壤中含量表现为:农田>撂荒地A(撂荒年限<3年)>撂荒地B(3年<撂荒年限<8年)>撂荒地C(8年<撂荒年限<10年),在同一种土地利用方式下,从不同的土层剖面上来看,农田的土壤颗粒有机碳表层(0~10 cm)>中层(10~20 cm)>下层(20~30 cm)。相关分析表明,土壤颗粒含量和矿物结合态有机碳含量呈极显著的线性相关的关系(P<0.01)。总结得出,随着撂荒地年限的增加(10年内)土壤总有机碳、矿物结合态有机碳和颗粒有机碳的含量均逐渐减少。可见,农田具有较高的固碳潜力。 展开更多
关键词 土壤有机碳(SOC) 矿物质结合态有机碳(moc) 颗粒有机碳(POC)
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Saline-alkali land reclamation boosts topsoil carbon storage by preferentially accumulating plant-derived carbon 被引量:2
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作者 Lin Chen Guixiang Zhou +7 位作者 Biao Feng a Chao Wang Yu Luo Fang Li Congcong Shen Donghao Ma Congzhi Zhang Jiabao Zhang 《Science Bulletin》 SCIE EI CAS CSCD 2024年第18期2948-2958,共11页
Saline–alkali land is an important cultivated land reserve resource for tackling global climate change and ensuring food security, partly because it can store large amounts of carbon(C). However, it is unclear how sa... Saline–alkali land is an important cultivated land reserve resource for tackling global climate change and ensuring food security, partly because it can store large amounts of carbon(C). However, it is unclear how saline–alkali land reclamation(converting saline–alkali land into cultivated land) affects soil C storage.We collected 189 adjacent pairs of salt-affected and cultivated soil samples(0–30 cm deep) from the Songnen Plain, eastern coastal area, Hetao Plain, and northwestern arid area in China. Various soil properties, the soil inorganic C(SIC), organic C(SOC), particulate organic C(POC), and mineral-associated organic C(MAOC) densities, and plant-and microbial-derived C accumulation were determined.Saline–alkali land reclamation inconsistently affected the SIC density but significantly(P < 0.001)increased the SOC density. The SOC, POC, and MAOC densities were predicted well by the integrative soil amelioration index. Saline–alkali land reclamation significantly increased plant-derived C accumulation and the plant-derived C to microbial-derived C ratios in all saline–alkali areas, and less microbial transformation of plant-derived C(i.e., less lignin degradation or oxidation) occurred in cultivated soils than salt-affected soils. The results indicated that saline–alkali land reclamation leads to plant-derived C becoming the dominant contributor of SOC storage. POC storage and MAOC storage were strongly linked to plant-and microbial-derived C accumulation, respectively, caused by saline–alkali land reclamation.Our findings suggest that saline–alkali land reclamation increases C storage in topsoil by preferentially promoting plant-derived C accumulation. 展开更多
关键词 Saline-alkali land Salt-affected soil Particulate organic carbon mineral-associated organic carbon Plant-derived carbon
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