...
首页> 外文期刊>Ambiente e gua - An Interdisciplinary Journal of Applied Science >Physical fractions of organic matter and mineralizable soil carbon in forest fragments of the Atlantic Forest
【24h】

Physical fractions of organic matter and mineralizable soil carbon in forest fragments of the Atlantic Forest

机译:大西洋森林裂缝中有机质和矿化土壤碳的物理分数

获取原文

摘要

This study determined the physical granulometric fractionation evaluated the mineralizable carbon within and around forest fragments of the Atlantic Forest biome located in the state of Paraná. Soil samples were collected at three three internal points of the fragments: the edge (E), the half radius (HR) and the center (CF); and one point in no-tillage system (NTS) areas around the fragments, in four replicates. The contents of total organic carbon (TOC), particulate fraction carbon (C-POM) and mineral fraction (C-MOM) were determined, and the %POM and %MOM and the stocks of POM (StockPOM) and MOM (StockMOM) were calculated, in addition to the indices: carbon stock index (CSI), lability (L), lability index (LI) and carbon management index (CMI), also evaluating CO2 emission, daily and accumulated. The highest TOC levels were observed in the CF point. The highest C-POM contents were observed in the E and CF points of fragment 1, in the CF point of fragment 2, and the highest C-MOM contents were expressed in the CF points of both fragments. CMI showed a distinct pattern among the fragments. The NTS areas showed lower C-CO2 emissions, with 39.8% and 28.3% less total emission compared to CF. The results of physical granulometric fractionation show the CF point favors the quality of SOM and the mineralizable carbon analysis indicated that the conversion of native areas into NTS compromises soil microbial activity.
机译:该研究确定了物理粒状分级评估了位于Paraná状态的大西洋森林生物群系内和周围的可崩解碳。在碎片的三个内部点收集土壤样品:边缘(E),半径(HR)和中心(CF);在四个重复中,碎片周围的无耕作系统(NTS)区域中的一个点。确定总有机碳(TOC),颗粒状碳(C-POM)和矿物级分(C-MOM)的含量,%POM和%妈妈和POM(股票)和妈妈(储存)的股票是计算,除了指数:碳储量指数(CSI),可萎靡(L),可怜的指数(LI)和碳管理指数(CMI),也评估二氧化碳排放,每日和累积。在CF点中观察到最高的TOC水平。在片段1的e和CF点中观察到最高的C-POM含量,在片段2的CF点中,并且在两个片段的CF点中表达最高的C-MOM内容物。 CMI在片段中显示出明显的图案。 NTS区域显示下部C-CO2排放量较低,与CF相比,总排放量减少了39.8%和28.3%。物理粒度分馏的结果表明,CF点有利于SOM的质量,矿化碳分析表明原生区域转化为NTS损害土壤微生物活性。
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号