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Using A Second-Order Polynomial Model To Determine The Optimum Dregs/Bark Ratio For Industrial-Biosolid Composting: The Initial Conditioning Stage
Oleh:
Zambrano, M.
;
Freer, J.
;
Baeza, J.
;
Villarroel, M.
;
Vidal, G.
Jenis:
Article from Journal - ilmiah internasional
Dalam koleksi:
Waste Management & Research vol. 25 no. 4 (Aug. 2007)
,
page 319-326.
Topik:
dregs
;
bark
;
start-up conditions
;
composting process
;
sludge
;
wmr 1003–6
Fulltext:
319.pdf
(293.91KB)
Isi artikel
Increasing pulp industry production has generated additional solid waste (i.e. biological sludge, dregs, etc.) and therefore an increasing disposal problem. On the other hand, composting is emerging as an interesting alternative for the disposal of residues. The objective of this study was to evaluate the physical and chemical properties of sludge, dregs and bark and the effect on their initial conditioning stage prior to composting, using pine chips as bulking agent. After their characterization, these solid wastes were combined in different mixture proportions defined by a 32 experimental design based on the response surface methodology (RSM), in which 18 observations were required for the independent variables (dregs and bark) and the C : N ratio, moisture content and pH were the dependent variables. The characterization indicated that the dregs have alkaline properties with the presence of some essential plant nutrients, such as phosphorous (0.37%), potassium (0.76%), magnesium (1.4%) and calcium (27%). The combination of the macronutrients (phosphorous: 0.39%, potassium: 0.24%, calcium: 1.7%, magnesium: 0.44%) and micronutrients such as ferrous material (0.47%) and zinc (0.12%) found in the sludge suggest a promising alternative despite the potential problem due to the high pH of the dregs. The RSM design indicated a feasible region that satisfied the optimal dregs : bark ratio of 0.25 without exceeding the addition of 12.5% dregs, due to the alkaline properties of these inorganic wastes and the quadratic influence over the C : N ratio. The experimental results indicated that the composting process of dregs, bark and sludge is technically suitable, although the use of a rapidly available C source needs to be evaluated.
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