| Literature DB >> 23704995 |
Linna Suo1, Xiangyang Sun, Weijie Jiang.
Abstract
The changes in the structural characteristics of biomass residues during pyrolysis and composting were investigated. TheEntities:
Mesh:
Substances:
Year: 2013 PMID: 23704995 PMCID: PMC3660342 DOI: 10.1371/journal.pone.0064550
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1SEM micrographs (×200) of untreated (a) peat, (b) corn cobs, and (c) garden wastes.
Figure 2SEM micrographs (×1000) of the external surface of (a) composted corn cobs (×1000), (b) pyrolysed corn cobs (×1000), and (c) pyrolysed garden wastes.
Physical and chemical properties of the 10 growing media at the beginning of the experiment.
| Growing medium | Air content at water holding capacity | Water holding capacity (% ,v/v) | Bulk density (g cm−3) | Particledensity (g cm−3) | Total porosity (%) | pH | EC (mS cm−1) |
| PC | 30.5g | 62.1c | 0.108ab | 1.45a | 92.6bc | 6.70d | 0.52c |
| C | 28.3e | 63.0d | 0.172e | 1.98i | 91.3a | 7.85h | 1.02g |
| PG | 32.7i | 59.7a | 0.133c | 1.76f | 92.4b | 7.12f | 0.69e |
| C+PG | 29.7f | 61.9bc | 0.160d | 1.91h | 91.6a | 7.55g | 0.82f |
| PC+PG | 31.4h | 61.1b | 0.115b | 1.54c | 92.5b | 6.87e | 0.57d |
| P+C+PG | 24.3bc | 68.1e | 0.131c | 1.73e | 92.4b | 6.60c | 0.69e |
| P+PC | 24.7cd | 68.4e | 0.104a | 1.51b | 93.1cd | 6.49b | 0.46b |
| P+PC+PG | 25.2d | 67.9e | 0.107ab | 1.55d | 93.1cd | 6.81e | 0.48b |
| P+C | 23.6b | 68.8e | 0.135c | 1.77g | 92.4b | 6.80e | 0.70e |
| P (control) | 18.6a | 75.0f | 0.099a | 1.55d | 93.6d | 5.65a | 0.39a |
Composted corn cobs (C), pyrolysed corn cobs (PC), pyrolysed garden wastes (PG), and Pindstrup sphagnum peat moss (P); PC (100%), C (100%), PG (100%), C (70%) + PG (30%), PC (70%) + PG(30%), P (50%) + C (35%) + PG (15%), P (50%) + PC (50%), P (50%) + PC (35%) + PG (15%), and P (50%) + C (50%).
The “air content at water holding capacity” indicates the air-filled porosity at maximum water holding capacity of the media [25].
Within a column, means followed by different letters are significantly different according to Duncan's multiple range test at P<0.05 (n = 3).
Nutrient concentrations of the 10 growing media at the beginning of the experiment.
| Growing medium | TKN | Phosphorus (g kg−1) | K (g kg−1) | Ca (g kg−1) | Mg (mg kg−1) | Zn (mg kg−1) | Fe (mg kg−1) | Mn (mg kg−1) |
| PC | 0.120a | 0.042a | 0.087i | 0.041a | 0.053b | 169c | 186b | 101a |
| C | 0.144bc | 0.073f | 0.044f | 0.053b | 0.048a | 224h | 179a | 145h |
| PG | 0.157cd | 0.087h | 0.024a | 0.086i | 0.069g | 178e | 220e | 138f |
| C+PG | 0.148bc | 0.078g | 0.039d | 0.063e | 0.054b | 210g | 191c | 143g |
| PC+PG | 0.132ab | 0.058d | 0.067h | 0.055c | 0.058c | 171d | 196d | 112c |
| P+C+PG | 0.162cd | 0.065e | 0.035c | 0.070g | 0.065e | 179e | 230h | 121d |
| P+PC | 0.148bc | 0.052b | 0.059g | 0.061d | 0.064e | 158b | 228g | 101a |
| P+PC+PG | 0.154cd | 0.056c | 0.049e | 0.066f | 0.067f | 159b | 233i | 107b |
| P+C | 0.156cd | 0.064e | 0.036c | 0.065f | 0.062d | 185f | 224f | 124e |
| P (control) | 0.172d | 0.056c | 0.027b | 0.077h | 0.075h | 148a | 270j | 101a |
Composted corn cobs (C), pyrolysed corn cobs (PC), pyrolysed garden wastes (PG), and Pindstrup sphagnum peat moss (P); PC (100%), C (100%), PG (100%), C (70%) + PG (30%), PC (70%) + PG (30%), P (50%) + C (35%) + PG (15%), P (50%) + PC (50%), P (50%) + PC (35%) + PG (15%), and P (50%) + C (50%).
TKN: Total Kjeldhal N.
Within a column, means followed by different letters are significantly different according to Duncan's multiple range test at P<0.05 (n = 3).
Figure 3Effect of growing media on the concentration of (A) nitrogen, (B) phosphorus, and (C) potassium in Anthurium andraeanum cv. ‘Pink Lady’ at 15 months after planting.
Composted corn cobs (C), pyrolysed corn cobs (PC), pyrolysed garden wastes (PG), and Pindstrup sphagnum peat moss (P); PC (100%), C (100%), PG (100%), C (70%) + PG (30%), PC (70%) + PG (30%), P (50%) + C (35%) + PG (15%), P (50%) + PC (50%), P (50%) + PC (35%) + PG (15%), and P (50%) + C (50%). Error bar denotes standard error of mean (n = 3). Means for the same plant part followed by the same letter are not significantly different according to Duncan's multiple range tests at P<0.05.
Figure 4Effect of growing media on the concentration of (A) calcium, (B) magnesium, and (C) sodium in Anthurium andraeanum cv. ‘Pink Lady’ at 15 months after planting.
Composted corn cobs (C), pyrolysed corn cobs (PC), pyrolysed garden wastes (PG), and Pindstrup sphagnum peat moss (P); PC (100%), C (100%), PG (100%), C (70%) + PG (30%), PC (70%) + PG (30%), P (50%) + C (35%) + PG (15%), P (50%) + PC (50%), P (50%) + PC (35%) + PG (15%), and P (50%) + C (50%). Error bar denotes standard error of mean (n = 3). Means for the same plant part followed by the same letter are not significantly different according to Duncan's multiple range tests at P<0.05.
Micronutrient content (mg kg−1) of leaves at the end of the experiment as affected by growing medium.
| Growing medium | Fe | Mn | Cu | Zn |
| PC | 69.4c | 107bc | 3.5ab | 81de |
| C | 58.0bc | 72a | 2.2a | 42ab |
| PG | 48.8abc | 111c | 5.4c | 62bcd |
| C+PG | 51.6abc | 79a | 3.2a | 38ab |
| PC+PG | 47.0abc | 114c | 5.2bc | 95e |
| P+C+PG | 33.6a | 91ab | 6.4c | 44ab |
| P+PC | 35.7ab | 73a | 6.5c | 36a |
| P+PC+PG | 29.9a | 75a | 6.6c | 39ab |
| P+C | 45.9abc | 80a | 6.8c | 68cd |
| P(control) | 40.4ab | 73a | 7.0c | 50abc |
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Composted corn cobs (C), pyrolysed corn cobs (PC), pyrolysed garden wastes (PG), and Pindstrup sphagnum peat moss (P); PC (100%), C (100%), PG (100%), C (70%) + PG (30%), PC (70%) + PG (30%), P (50%) + C (35%) + PG (15%), P (50%) + PC (50%), P (50%) + PC (35%) + PG (15%), and P (50%) + C (50%).
Within a column, means followed by different letters are significantly different according to Duncan's multiple range test at P<0.05. The last row indicates the significance of medium according to the ANOVA:
*P<0.05;
**P<0.01 (n = 3).
Effects of growing medium on shoot dry weight (SM), shoot height (SH), crown width (CW), number of leaves (NL), root: shoot ratio (R∶S), peduncle length (PL), flower size (FS), and flower number per plant (NF) at the end of the experiment.
| Growing medium | SM (g/plant) | SH (cm) | CW (cm) | NL (number /plant) | R∶S | PL (cm) | FS (cm) | NF (number /plant) |
| PC | 29.3abc | 28.3ab | 32.0a | 55.2ab | 0.67c | 18.2 | 5.1 | 4.2 |
| C | 24.1a | 26.9ab | 31.9a | 59.0b | 0.60bc | 17.4 | 5.7 | 3.3 |
| PG | 26.4ab | 26.7ab | 31.4a | 51.0ab | 0.59bc | 18.6 | 5.4 | 4.6 |
| C+PG | 42.3d | 25.7a | 31.8a | 44.0a | 0.40a | 18.1 | 4.6 | 2.0 |
| PC+PG | 24.3a | 29.4bc | 31.7a | 48.2ab | 0.57bc | 17.8 | 5.1 | 3.8 |
| P+C+PG | 39.5cd | 37.5f | 37.5b | 54.4ab | 0.50ab | 18.4 | 5.4 | 3.2 |
| P+PC | 36.7bcd | 36.1ef | 37.4b | 54.4ab | 0.54b | 20.5 | 5.8 | 5.2 |
| P+PC+PG | 39.9cd | 32.0cd | 37.3b | 47.8a | 0.52ab | 19.4 | 5.8 | 4.7 |
| P+C | 29.9abc | 33.6de | 34.6ab | 45.4a | 0.52ab | 15.4 | 5.9 | 4.0 |
| P(control) | 38.2cd | 33.8de | 37.3b | 50.0ab | 0.51ab | 19.6 | 5.7 | 4.6 |
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| n.s. | n.s. | n.s. |
Composted corn cobs (C), pyrolysed corn cobs (PC), pyrolysed garden wastes (PG), and Pindstrup sphagnum peat moss (P); PC (100%), C (100%), PG (100%), C (70%) + PG (30%), PC (70%) + PG(30%), P (50%) + C (35%) + PG (15%), P (50%) + PC (50%), P (50%) + PC (35%) + PG (15%), and P (50%) + C (50%).
Within a column, means followed by different letters are significantly different according to Duncan's multiple range test at P<0.05. The last row indicates the significance of medium according to the ANOVA: n.s. = not significant;
*P<0.05;
**P<0.01 (n = 3).
Figure 5Chlorophyll a and chlorophyll b content (mg g−1 FW) and chlorophyll a/b ratio in Anthurium andraeanum cv. ‘Pink Lady’ after growing for 15 months in 10 media.
Composted corn cobs (C), pyrolysed corn cobs (PC), pyrolysed garden wastes (PG), and Pindstrup sphagnum peat moss (P); PC (100%), C (100%), PG (100%), C (70%) + PG (30%), PC (70%) + PG (30%), P (50%) + C (35%) + PG (15%), P (50%) + PC (50%), P (50%) + PC (35%) + PG (15%), and P (50%) + C (50%). Error bar denotes standard error of mean (n = 3). Means for each kind of chlorophyll followed by the same letter are not significantly different according to Duncan's multiple range tests at P<0.05.