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The mixed soil was adjusted to 55% WHCmax using deionized water.
The mineralization of cow dung, chicken manure, vermicompost, rice straw, and rice husk biochar mixed soil was investigated at Bangabandhu Sheikh Mujibur Rahman Agricultural University (BSMRAU), Gazipur, Bangladesh, from January 21 to July 21 , 2016
The highest value of voltage showed around 700 mV when a rice plant with 1% compost mixed soil was used, however it was more than 95% less in the case of no rice plant and without compost.
For isolation of bacteria from the petrochemical contaminated soil/sediments, 1 g of the mixed soil was added to 9 mL of deionized water, and 0.1 mL of this diluted sample was spread by plating on Nutrient Agar medium from the appropriate dilution tubes and then incubated at the room temperature for 24 h.
The mixed soil was characterized by a field capacity (FC) of 59% and a wilting point (WP) of 11% moisture content (mass/mass on the basis of dry weight), supplied with 2 g of a coated fertilizer Basacote Plus6M complemented in oligo-elements (Compo GmbH & Co. KG, Münster, Germany containing 11, 9 and 19% of N, P205 and K20, respectively).
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The root permeated copper slag mixed soil is a effective way to reinforce soft soil and dispose the copper slag.
The mixed soil were placed in 10 plastic trays of dimension 16.5″ × 12.0″ × 3.0″ for different zones separately as shown in Fig. 2.
The influence of weight percentage of copper slag, roots content, and moisture content on the shear strength of mixed soil are investigated.
Secondly, based on the developed measurement equipment, the formulas for calculating the shear strength of the mixed soil is derived by taking a full consideration on the dynamic changes of the effective shear area.
Mechanically mixed soils were placed in the flume tank in equal lifts using the moist tamping method.
The cumulative CO2 emissions from rice straw, vermicompost, and cow dung mixed soils were 4775, 3122, and 3083 mg CO2 kg−1, respectively.
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