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Oxalic Acid and Succinic Acid Mediate the Weathering Process of Granite in the Cold-Temperate Forest Regions of Northeast China

机译:草酸和琥珀酸介导在中国东北寒气林区的花岗岩的耐候过程

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摘要

Granite is an important soil-forming rock and is widely distributed in the cold-temperate forest area of northeast China, such as northern Greater Hinggan, where its biochemical weathering plays an important role in the formation of local soils. Due to the special latitude and elevation, lichen plays a crucial role in the biochemical weathering of granite here, of which the role of low molecular organic acids (short for organic acids) is of interest. We simulated the concentrations of oxalic acid (OA) and succinic acid (SA) in the local lichens of Northeast China, applied OA or SA (10, 20, 30, 40, and 50 mmol L-1) to granite powders for 1 (10 min), 10, 20, 30, 40, 50, or 60 days, and studied the effects of organic acids on the bio-weathering process of granite, such as the dissolution regularity of various ions and the morphological changes of rock surfaces. OA and SA both induced the weathering and dissolving of granite, significantly promoted the release of Na+, K+, Al3+, Fe3+, Mg2+, Mn2+, Ca2+, and SiO32- from granite powders. For the ion dissolution, the effect of OA was stronger than that of SA. Infrared analysis showed that both organic acids did not change the structures of their own groups, and the weathering mechanism was mainly the complexation of organic acids. The results of electron microscopy also presented the dissolution of granite powders by organic acids, and the effects were enhanced as the treatment time increased. After organic acid applications, the concentrations of dissolved ions from the granite powder varied with the type and concentration of organic acids, and treatment time. The concentration of each ion usually reached its maximum at 50 or 40 mmol L-1 OA, and 50 mmol L-1 SA (except for Fe3+ of some treatments). At day 1, the concentrations of SiO32-, Al3+, Fe3+, and Mn2+ treated with OA were higher than those of other times. Compared with SA, OA could dissolve more ions from granite powders, especially at day 1. However, the metal ions dissolved by OA were easy to complex with OA, so the concentrations of ions treated by SA were higher than those of OA, and the ions dissolved by OA would enter into the soils more frequently in OA-metal complexes.
机译:花岗岩是一个重要的土壤成型岩石,广泛分布在中国东北的寒气林区,如北方始兴,其生化风化在局部土壤中发挥着重要作用。由于特殊的纬度和高度,地衣在这里的花岗岩的生化风化中发挥着至关重要的作用,其中低分子有机酸(有机酸短的)感兴趣。我们模拟了东北地区局部地衣中的草酸(OA)和琥珀酸(SA)的浓度,施用OA或SA(10,20,30,40和50mmol L-1),以1种花岗岩粉末( 10分钟),10,20,30,40,50或60天,并研究了有机酸对花岗岩生物耐候过程的影响,例如各种离子的溶解规律和岩石表面的形态变化。 OA和SA均诱导花岗岩的风化和溶解,显着促进了Na +,K +,Al3 +,Fe3 +,Mg2 +,Mn2 +,Ca2 +和SiO32的释放。对于离子溶解,OA的效果比SA强。红外分析表明,两种有机酸都没有改变其自身组的结构,并且耐候机理主要是有机酸的络合。电子显微镜的结果还通过有机酸呈现花岗岩粉末的溶解,随着治疗时间的增加而提高了效果。在有机酸应用后,来自花岗岩粉末的溶解离子的浓度随有机酸的类型和浓度和治疗时间而变化。每种离子的浓度通常在50或40mmol l-1 oa的最大值达到最大值,50mmol l-1 sa(一些处理除外除外)。第1天,用OA处理的SiO 32-,Al3 +,Fe3 +和Mn2 +的浓度高于其他时间。与SA相比,OA可以从花岗岩粉末中溶解更多的离子,特别是在第1天。然而,通过OA溶解的金属离子与OA易于复合,因此SA处理的离子浓度高于OA,以及OA溶解的离子将在OA-金属配合物中更频繁地进入土壤。

著录项

  • 来源
    《Eurasian Soil Science》 |2019年第8期|共13页
  • 作者单位

    Northeast Forestry Univ Sch Forestry Minist Educ Key Lab Sustainable Forest Ecosyst Management 26 Hexing Rd Harbin 150040 Heilongjiang Peoples R China;

    Northeast Forestry Univ Sch Forestry Minist Educ Key Lab Sustainable Forest Ecosyst Management 26 Hexing Rd Harbin 150040 Heilongjiang Peoples R China;

    State Forestry Adm Peoples Republ China Greater Khingan Range Forestry Survey &

    Planning 19 Liming Rd Jiagedaqi 165000 Peoples R China;

    Northeast Forestry Univ Sch Forestry Minist Educ Key Lab Sustainable Forest Ecosyst Management 26 Hexing Rd Harbin 150040 Heilongjiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;
  • 关键词

    organic acids; granite; biochemical weathering; ion release; morphological characteristics;

    机译:有机酸;花岗岩;生物化学风化;离子释放;形态特征;
  • 入库时间 2022-08-20 02:45:14

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