An alternative methodology to determine 210Pb activity soil profiles

2019 ◽  
Vol 208-209 ◽  
pp. 105998
Author(s):  
M.L. Montes ◽  
M.G. Rizzoto ◽  
J. Juri Ayub ◽  
R. Torres Astorga ◽  
M.A. Taylor
2015 ◽  
Vol 2 (2) ◽  
pp. 148-158
Author(s):  
Surianto

Spodosol soil of Typic Placorthod sub-group of East Barito District is one of the problem soils with the presence of hardpan layer, low fertility, low water holding capacity, acid reaction and it is not suitable for oil palm cultivation without any properly specific management of land preparation and implemented best agronomic practices. A study was carried out to evaluate the soil characteristic of a big hole (A profile) and no big hole (B profile) system and comparative oil palm productivity among two planting systems. This study was conducted in Spodosol soil at oil palm plantation (coordinate X = 0281843 and Y = 9764116), East Barito District, Central Kalimantan Province on February 2014, by surveying of placic and ortstein depth and observing soil texture and chemical properties of 2 (two) oil palm's soil profiles that have been planted in five years. Big hole system of commercial oil palm field planting on the Spodosol soil area was designed for the specific purpose of minimizing the potential of a negative effect of shallow effective planting depth for oil palms growing due to the hardpan layer (placic and ortstein) presence as deep as 0.25 - 0.50 m. The big hole system is a planting hole type which was vertical-sided with 2.00 m x 1.50 m on top and bottom side and 3.00 m depth meanwhile the 2:1 drain was vertical-sided also with 1.50 m depth and 300 m length. Oil palm production was recorded from the year 2012 up to 2014. Results indicated that the fractions both big hole profile (A profile) and no big hole profile (B profile) were dominated by sands ranged from 60% to 92% and the highest sands content of non-big hole soil profile were found in A and E horizons (92%). Better distribution of sand and clay fractions content in between layers of big hole soil profiles of A profile sample is more uniform compared to the B profile sample. The mechanical holing and material mixing of soil materials of A soil profile among the upper and lower horizons i.e. A, E, B and C horizons before planting that resulted a better distribution of both soil texture (sands and clay) and chemical properties such as acidity value (pH), C-organic, N, C/N ratio, CEC, P-available and Exchangeable Bases. Investigation showed that exchangeable cations (Ca, Mg, K), were very low in soil layers (A profile) and horizons (B profile) investigated. The low exchangeable cations due to highly leached of bases to the lower layers and horizons. Besides, the palm which was planted on the big hole system showed good adaptation and response positively by growing well of tertiary and quaternary roots that the roots were penetrable into deeper rooting zone as much as >1.00 m depth. The roots can grow well and penetrate much deeper in A profile compared to the undisturbed hardpan layer (B profile). The FFB (fresh fruit bunches) production of the non-big hole block was higher than the big hole block for the first three years of production. This might be due to the high variation of monthly rainfall in-between years of observation from 2009 to 2014. Therefore, the hardness of placic and ortstein as unpenetrable agents by roots and water to prevent water loss and retain the water in the rhizosphere especially in the drier weather. In the high rainfall condition, the 2:1 drain to prevent water saturation in the oil palm rhizosphere by moving some water into the drain. Meanwhile, the disturbed soil horizon (big hole area) was drier than un disturbance immediately due to water removal to deeper layers. We concluded that both big hole and 2:1 drain are a suitable technology for Spodosol soil land especially in preparing palms planting to minimize the negative effect of the hardpan layer for oil palm growth.


2012 ◽  
Vol 63 (4) ◽  
pp. 41-45 ◽  
Author(s):  
Iwona Makuch

Abstract In order to determine the influence of intensive horticulture on the amount of lead and its fraction contents, there were selected soil profiles from following objects to be researched: house gardens and allotment gardens from town areas and arable field on the outskirts of the town. It has not been determined that there is any influence of manner usage on total lead content as well as its distribution in soil profiles. The fractionation composition has created the following series: fraction IV > fraction III > fraction II > fraction I. The manner of usage has influenced the content and distribution the III fraction of lead connected with organic matter. Humus horizons of garden soils is characterized as the highest in its content.


Author(s):  
Lucas Carneiro Araujo ◽  
Pedro Vinícius Sousa Machado ◽  
Brenda Kennedy de Oliveira ◽  
JOSE ALEXANDER ARAUJO

2020 ◽  
Vol 5 (2) ◽  
pp. 206-235
Author(s):  
Yury Korgunyuk

Abstract The article analyzes the weak points of the Manifesto Project’s methodology, such as its emphasis on issue salience, instead of issue positions; bringing the content of manifestos under too broad categories formulated at the beginning of the project; not quite the appropriate technique of factor analysis etc. An alternative methodology is proposed that focuses on party positions on issues which generate the largest polarization in the political space. It also enriches the empirical base of the studies and adjusts the technique of factor analysis. In order to reveal political cleavages inside these dimensions, the so called electoral cleavages (factors of territorial differences in voting for various parties) are taken as a starting point: factor loadings of parties in the electoral and political spaces are compared through correlation and regression analyses. The proposed methodology is applied to an analysis of election results in Russia (2016) and Germany (2017).


1976 ◽  
Vol 5 (1) ◽  
pp. 9-16
Author(s):  
Donald F. Post ◽  
Kenneth A. Barbarick ◽  
James L. Ahlrichs
Keyword(s):  

1975 ◽  
Vol 39 (6) ◽  
pp. 1220-1223
Author(s):  
K. M. Holtzclaw ◽  
J. M. Rible ◽  
P. F. Pratt
Keyword(s):  

1981 ◽  
Vol 45 (2) ◽  
pp. 442-444 ◽  
Author(s):  
A. L. Wood ◽  
J. T. Wilson ◽  
R. L. Cosby ◽  
A. G. Hornsby ◽  
L. B. Baskin

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