1. 中国农业大学土地科学与技术学院, 农业农村部华北耕地保育重点实验室,北京,100193
2. 中国科学院水利部水土保持研究所, 黄土高原土壤侵蚀与旱地农业国家重点实验室, 陕西 杨凌,712100
[ "曹尤淞(1998-),男,在读硕士研究生,主要从事生物结皮的环境生态效应研究。E-mail:S20203213021@cau.edu.cn" ]
网络首发:2022-05-27,
纸质出版:2022
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曹尤淞, 肖波, 江子昊, 等. 生物结皮发育对风沙土盐基离子释放和矿物风化的影响[J]. 水土保持学报, 2022,36(3):77-85.
CAO Yousong, XIAO Bo, JIANG Zihao, et al. Effects of Biocrusts Development on Base Cations Release and Mineral Weathering in Aeolian Sandy Soil[J]. 2022, 36(3): 77-85.
曹尤淞, 肖波, 江子昊, 等. 生物结皮发育对风沙土盐基离子释放和矿物风化的影响[J]. 水土保持学报, 2022,36(3):77-85. DOI: 10.13870/j.cnki.stbcxb.2022.03.012.
CAO Yousong, XIAO Bo, JIANG Zihao, et al. Effects of Biocrusts Development on Base Cations Release and Mineral Weathering in Aeolian Sandy Soil[J]. 2022, 36(3): 77-85. DOI: 10.13870/j.cnki.stbcxb.2022.03.012.
为探明生物结皮发育对风沙土盐基离子释放和矿物风化的影响
以进一步明确生物结皮的风化成土作用。以典型风沙土上发育的生物结皮为对象
通过模拟淋溶试验比较不同类型生物结皮(藻结皮、藻—藓混生结皮和藓结皮)覆盖土壤的盐基离子释放规律
探究盐基离子释放量随淋溶液pH的变化趋势
以及量化生物结皮覆盖土壤的矿物风化速率。结果表明:矿物风化反应阶段不同种类盐基离子的淋出量均较为平缓
生物结皮覆盖土壤的各盐基离子总淋出量表现为Ca2+>K+>Mg2+>Na+
其中藻结皮覆盖土壤的盐基离子总淋出量最高
比无结皮、混生结皮和藓结皮分别增加了112.0%
31.2%
27.1%。淋溶液pH显著影响盐基离子的淋溶释放
且其作用程度因离子种类和结皮类型而异。生物结皮覆盖提升了土壤的易风化矿物含量、风化程度和速率
藻结皮、混生结皮和藓结皮覆盖土壤的风化速率相比无结皮分别提升了61.2%
27.1%
152.6%
并且风化速率随淋溶液pH降低而提升。综上
生物结皮能显著促进风沙土矿物风化
其对风沙土改良和修复具有积极意义。
In order to further understand the weathering and pedogenesis effects of biocrusts
we conducted this study to explore the effects of biocrusts development on base cations release and mineral weathering of aeolian sandy soil. The biocrusts developed on aeolian sandy soil were selected as research subjects
and the simulated leaching experiments were carried out to compare the release regularity of soil base cations under different biocrusts (cyano crust
mixed crust
and moss crust) covering. The variation amount of base cations in leachate with different pH values of leaching solution were explored. We also quantified the weathering rate of soil minerals under biocrusts covering. The results showed that:the leaching amount of base cations in the stage of mineral weathering reaction remained relatively stable. The total amount of different base cations in the leachate of biocrusted soil were Ca2+ > K+ > Mg2+ > Na+. The total amount of base cations in cyano crusted soil leachate was the highest. Compared with bare soil
mixed crust
and moss crust
the total amount of base ions in the leachate of cyano crusted soil increased by 112.0%
31.2% and 27.1%
respectively. Additionally
the pH value of the leaching solution significantly affected the leaching of base cations
and its effect varied with the types of cations and biocrusts. According to the mineral weathering characteristics indicated by the release of base cations
biocrusts covering could increase the content
weathering degree and rate of easily weathered minerals in the soil. Compared with bare soil
the weathering rate of soil covered with cyano crust
mixed crust
and moss crust increased by 61.2%
27.1% and 152.6%
respectively
and the weathering rate increased with the decrease of leaching solution pH value. All the above findings showed that biocrusts covering can significantly promote the mineral weathering process of aeolian sandy soil
which is of positive significance to the improvement and restoration of aeolian sandy soil.
Waroszewski J, Sprafke T, Kabala C, et al. Aeolian silt contribution to soils on mountain slopes (Mt. Sleza, southwest Poland)[J].Quaternary Research,2017,89(3):702-717.
陈隆亨,李福兴,邸醒民,等.中国风砂土[M].北京:科学出版社,1998.
Dai Y J, Dong Z, Li H L, et al. Effects of checkerboard barriers on the distribution of aeolian sandy soil particles and soil organic carbon[J].Geomorphology,2019,338:79-87.
Gao L Q, Hui S, Ming X, et al. Biocrusts resist runoff erosion through direct physical protection and indirect modification of soil properties[J].Journal of Soils and Sediments,2020,20(1):133-142.
Hu R, Wang X P, Xu J S, et al. The mechanism of soil nitrogen transformation under different biocrusts to warming and reduced precipitation:From microbial functional genes to enzyme activity[J].Science of the Total Environment,2020,722:e137849.
Alberto A, Giuseppe C, Luisa M, et al. Impact of biological crusts on soil formation in polar ecosystems[J].Geoderma,2021,401:e115340.
蒙文萍,戴全厚,冉景丞.苔藓植物岩溶作用研究进展[J].植物生态学报,2019,43(5):396-407.
涂娜,严友进,戴全厚,等.喀斯特石漠化典型生境下石生苔藓等固土持水作用[J].生态学报,2021,41(15):1-12.
邵明玉,张连凯,刘朋雨,等.黄土区典型小流域矿物化学风化及碳汇效应[J].地球与环境,2019,47(5):575-585.
黄来明,邵明安,贾小旭,等.土壤风化速率测定方法及其影响因素研究进展[J].地球科学进展,2016,31(10):1021-1031.
赵越,杨金玲,董岳,等.模拟酸雨淋溶下强风化土壤矿物风化计量关系研究[J].土壤学报,2019,56(2):310-319.
余倩,段雷,郝吉明.中国酸沉降:来源/影响与控制[J].环境科学学报,2021,41(3):731-746.
郑梅迎,彭玉龙,刘明宏,等.模拟酸雨下生物炭添加对土壤盐基离子淋失的影响[J].农业环境科学学报,2021,40(1):163-173.
鲍士旦.土壤农化分析[M].北京:中国农业出版社,2000.
吕贻忠,李保国.土壤学[M].北京:中国农业出版社,2006.
庄翔宇,杨金玲,张甘霖,等.亚热带花岗岩地区土壤矿物风化过程中盐基离子的释放特征[J].土壤,2016,48(2):374-380.
Fisk M R, Popa R, Mason O U, et al. Iron-magnesium silicate bioweathering on Earth (and Mars?)[J].Astrobiology,2006,6(1):e48.
Wang L J, Zhang G H, Zhu L J, et al. Biocrust wetting induced change in soil surface roughness as influenced by biocrust type, coverage and wetting patterns[J].Geoderma,2017,306:1-9.
吴雁雯,张金池.微生物碳酸酐酶在岩溶系统碳循环中的作用与应用研究进展[J].生物学杂志,2015,32(3):78-83.
明姣,孔令阳,赵允格,等.青藏高原高寒冻土区生物结皮对浅层土壤水热过程的影响[J].生态学报,2020,40(18):6385-6395.
朱永官,段桂兰,陈保冬,等.土壤-微生物-植物系统中矿物风化与元素循环[J].中国科学:地球科学,2014,44(6):1107-1116.
Liu D, Dong H, Bishop M, et al. Microbial reduction of structural iron in interstratified illite-smectite mineral by a sulfate-reducing bacterium[J].Geobiology,2012,10(2):150-162.
朱厚亚,刘波,张凌云,等.pH值和光照强度对颤藻生长及产嗅特征的影响[J].中国给水排水,2019,35(7):77-80,85.
赵洋,李晓明,李茹雪,等.长尖对齿藓原丝体快速培育的关键影响因子研究[J].植物研究,2017,37(2):185-193.
江娜,宁增平,郭圆,等.环境pH对微生物生物膜吸附重金属的影响研究进展[J].地球与环境,2021,49(2):216-226.
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