The control of soil polarization in Populus simonii and Quercus liaotungensis forests by forage litter on the Loess Plateau, P. R. China

Nhu Trung Luc , Zengwen Liu , Yuanhao Bing , Xiaoxi Zhang , Thi Huong Nguyen

Journal of Forestry Research ›› 2015, Vol. 26 ›› Issue (3) : 687 -695.

PDF
Journal of Forestry Research ›› 2015, Vol. 26 ›› Issue (3) : 687 -695. DOI: 10.1007/s11676-015-0082-4
Original Paper

The control of soil polarization in Populus simonii and Quercus liaotungensis forests by forage litter on the Loess Plateau, P. R. China

Author information +
History +
PDF

Abstract

Soil polarization in pure forest stands affects the stability and sustainable development of the ecosystem. The most effective approaches to the prevention of soil polarization may be the use of forage litter as fertilizer or the direct establishment of tree-grass communities. We investigated monospecific plantations of Populus simonii and Quercus liaotungensis. Such plantations have been established throughout the Loess Plateau of China. A 120-day decomposition incubation experiment with forest humus soil mixed with 7 common leguminous forage litter species was performed to study the uses of forage litter in controlling soil polarization in pure forests. The addition of forage litter of Astragalus adsurgens, Lespedeza bicolor, and Vicia villosa to the soil of pure P. simonii forest clearly improved the soil quality, these forage species are suitable for planting with P. simonii, whereas Melilotus officinalis, Medicago sativa, and Onobrychis viciifolia litter produced obvious deterioration, thus these forages should not be planted with P. simonii. Coronilla varia litter showed no significant influence. The addition of forage litter of M. sativa to the soil of pure Q. liaotungensis forest clearly improved the soil quality, and C. varia and V. villosa also yielded improvements but were slightly less effective than M. sativa litter, these forages are suitable to be planted with Q. liaotungensis. However, L. bicolor showed obvious deterioration, followed by O. viciifolia and A. adsurgens, and M. officinalis had no significant influence. These species should not be planted with Q. liaotungensis.

Keywords

Soil polarization / Forage litter / Populus simonii / Quercus liaotungensis

Cite this article

Download citation ▾
Nhu Trung Luc, Zengwen Liu, Yuanhao Bing, Xiaoxi Zhang, Thi Huong Nguyen. The control of soil polarization in Populus simonii and Quercus liaotungensis forests by forage litter on the Loess Plateau, P. R. China. Journal of Forestry Research, 2015, 26(3): 687-695 DOI:10.1007/s11676-015-0082-4

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Bing YH, Liu ZW, Trung LN, Zhu BC, Zhang XX, Wu YN. Remedying effect of forage litters on soil polarization of pure coniferous forest in semi-humid loess hilly area of North Shaanxi. Acta Pedol Sin, 2014, 51 4 897905.

[2]

Bing YH, Liu ZW, Trung LN, Zhu BC, Zhang XX, Yu Q. Restoring effects of grass litter on the soil polarization of Pinus tabulaeformis and Platycladus orientalis pure forests in the loess gullied area. Acta Agrestia Sin, 2014, 22 3 511517.

[3]

Du F, Shao HB, Shan L, Liang ZS, Shao MA. Secondary succession and its effects on soil moisture and nutrition in abandoned old-fields of hilly region of Loess Plateau, China. Coll Surf B, 2007, 58 278285.

[4]

Guan SY. Soil enzymes and its study methods. 1986, Beijing: Agriculture Press, 267 284

[5]

He Y, Zhou YG, Li XW, Miao Y, Fan C, Chen YL. Seasonal dynamics of soil microbial biomass carbon in Alnus formosana forest-grass compound models. Scientia Silvae Sin, 2013, 49 7 2633.

[6]

Joshi M, Bargali K, Bargali SS. Changes in physico-chemical properties and metabolic activity of soil in poplar plantations replacing natural broad-leaved forests in Kumaun Himalaya. J Arid Environ, 1997, 35 1 161169

[7]

Kourtev PS, Ehrenfeld JG, Huang WZ. Enzyme activities during litter decomposition of two exotic and two native plant species in hardwood forests of New Jersey. Soil Biol Biochem, 2002, 34 9 12071218

[8]

Li J, Chen B, Li XF, Zhao YZ, Ciren YJ, Jiang B. Effects of deep soil desiccation on artificial forestlands in different vegetation zones on the Loess Plateau of China. Acta Ecol Sin, 2008, 28 14291445

[9]

Li XB, Ma L, Chen L, Xu DM, Xie YZ. Research progress and the prospect of grassland litters decomposition. Ecol Environ, 2010, 19 9 22602264.

[10]

Li LJ, Zeng DH, Yu ZY, Fan ZP, Yang D, Liu YX. Impact of litter quality and soil nutrient availability on leaf decomposition rate in a semi-arid grassland of Northeast China. J Arid Environ, 2011, 75 9 787792

[11]

Li Z, Liu GS, Jing HX, Ye XF, Xie CS, Xiang YG, Zhang WP, Yang C, Wang Y, Xi XY. Effects of green manure application combined with chemical fertilizers on microbial biomass C, N and nitrogen supplying characteristics of tobacco planting soils. Acta Prataculturae Sin, 2011, 20 6 126134.

[12]

Liu ZW, Qiang H. Discussion on the problems in the research of nutrient cycle in forest ecosystem. J Nanjing For Univ Nat Sci, 2002, 26 2730.

[13]

Liu SR, Li XM, Niu LM. The degradation of soil fertility in pure larch plantations in the northeastern part of China. Ecol Eng, 1998, 10 7586

[14]

Liu GS, Luo ZB, Wang Y, Li HL, Wang GF, Ma JM. Effect of green manure application on soil properties and soil microbial biomass in tobacco field. J Soil Water Conserv, 2006, 20 1 9598.

[15]

Liu ZW, Duan EJ, Fu G, Cui FF, Gao WJ. A new concept: soil polarization in planted pure forest. Acta Ecol Sin, 2007, 44 6 11191126.

[16]

Liu GS, Li Z, Jing HX, Ye XF, Shi HZ, Wang Y, Yang C, Chang D. Effects of consecutive turnover of green manures on soil microbial biomass and enzyme activity. J Plant Nutr Fertil, 2010, 16 6 14721478.

[17]

Liu ZW, Shi TF, Yang SH, Pan DL, Li ZQ, Luo W. Effects of use broad-leaved tree litters to control polarization of soil under stands of conifer forests in gullied loess plateau. Acta Pedol Sin, 2012, 49(3): 446-453.

[18]

Lu RK (2000) Methods for soil agricultural chemical analysis. Agricultural Science and Technology Press of China, Beijing, pp 22, 28, 5057, 106–109, 205–214

[19]

K, Pan KW, Wang JC, Wan T. Effects of Zanthoxylum bungeanum leaf extract on soil microbe quantity and enzyme activities. China J Appl Ecol, 2006, 17 9 16491654.

[20]

Luo YL, Chen YL, Li XW, Fan C, Liu YX. Soil carbon and nitrogen properties in an Alnus formosana forest-grass complex ecosystem. J Sichuan Agric Univ, 2013, 31 1 1619.

[21]

McVicar TR, Li LT, Van Niel TM, Zhang L, Li R. Developing a decision support tool for China’s re-vegetation program: simulating regional impacts of afforestation on average annual streamflow in the Loess Plateau. For Ecol Manag, 2007, 251 6581

[22]

Mi CH, Liu ZW. Relationship between litter decomposition and soil properties degradation in six typical planted pure forests in Mu Us desert, China. Nat Environ Pollut Technol, 2014, 13 1 7984.

[23]

Mi CH, Liu ZW, Li Q, Mohamad OA. Effect of litter decomposition on soil polarization in three typical planted pure coniferous forests in loess plateau, China. Int J Agric Biol, 2013, 15 687693.

[24]

Nanjing Institute of Soil Science, Chinese Academy of Sciences (1985) Analysis of soil microoganism. Science Press, Beijing, pp 818, 4083

[25]

Osono T, Takeda H. Potassium, calcium, and magnesium dynamics during litter decomposition in a cool temperate forest. J For Res (Tokyo, Japan), 2004, 9 1 2331.

[26]

Qi ZM, Wang KY, Song GY, Yang WQ. Bio-chemical properties of the forest floor in subalpine bamboo communities in western Sichuan. Acta Ecol Sin, 2004, 24 6 12301236.

[27]

Sun Y, Zhao XH, He WX, Gao YJ, Cao WD. Effect of green manure on soil enzyme activity. Acta Agric Boreal Occident Sin, 2011, 20 3 115119.

[28]

Wang XL, Yan XD, Xu YP. The decomposition rule of covered soybean green manure and its effect on soil nutrient content. Soil Fertil China, 2012, 5 5760.

[29]

Zhang Q, Cai CF. Forest soil degradation research and preventive strategy. Ecol Environ, 2004, 13 4 677680.

[30]

Zhang XB, Zheng SX, Shangguan ZP. Nutrient distributions and bio-cycle characteristics in both natural and artificial Pinus tabulaeformis Carr. forests in hilly loess regions. Acta Ecol Sin, 2006, 26 2 373382.

[31]

Zhang LP, Zhang XC, Liu ZW, Sun Q, Wang SB, Sun HY, Yu WF, Liu YJ. Effect of plantation litter decomposition on soil properties. J Northwest Agric For Univ (Natural Science), 2008, 36 9 8792.

[32]

Zhao N, Zhao HB, Yu CW, Cao QH, Li M, Cao WD, Gao YJ. Nutrient releases of leguminous green manures in rainfed lands. Plant Nutr Fertil Sci, 2011, 17 5 11791187.

[33]

Zhao L, Shi DY, Gao XY, An Y. Effects of Medicago sativa green manure on rice yield and soil fertility. Pratacultural Sci, 2012, 29 7 11421147.

AI Summary AI Mindmap
PDF

130

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/