| Literature DB >> 28789482 |
Ali Toolabi1, Mohammad Malakootian2,3, Mohammad Taghi Ghaneian4, Ali Esrafili5, Mohammad Hassan Ehrampoush1, Maesome Tabatabaei6, Mohsen AskarShahi7.
Abstract
Contamination of water resources by acetamiprid pesticide is considered one of the main environmental problems. The aim of this study was the optimization of acetamiprid removal from aqueous solutions by TiO2/Fe3O4/SiO2 nanocomposite using the response surface methodology (RSM) with toxicity assessment by Pseudomonas aeruginosa BCRC. To obtain the optimum condition for acetamiprid degradation using RSM and central composite design (CCD). The magnetic TiO2/Fe3O4/SiO2 nanocomposite was synthesized using co-precipitation and sol-gel methods. The surface morphology of the nanocomposite and magnetic properties of the as-synthesized Fe3O4 nanoparticles were characterised by scanning electron microscope and vibrating sample magnetometer, respectively. In this study, toxicity assessment tests have been carried out by determining the activity of dehydrogenase enzyme reducing Resazurin (RR) and colony forming unit (CFU) methods. According to CCD, quadratic optimal model with R2 = 0.99 was used. By analysis of variance, the most effective values of each factor were determined in each experiment. According to the results, the most optimal conditions for removal efficiency of acetamiprid (pH = 7.5, contact time = 65 min, and dose of nanoparticle 550 mg/L) was obtained at 76.55%. Effect concentration (EC50) for RR and CFU test were 1.950 and 2.050 mg/L, respectively. Based on the results obtained from the model, predicted response values showed high congruence with actual response values. And, the model was suitable for the experiment's design conditions.Entities:
Keywords: Acetamiprid; Photocatalytic decomposition; Pseudomonas aeruginosa BCRC; Toxicity assessment
Year: 2017 PMID: 28789482 PMCID: PMC5544660 DOI: 10.1186/s13568-017-0455-5
Source DB: PubMed Journal: AMB Express ISSN: 2191-0855 Impact factor: 3.298
The levels and ranges of variables central composite statistical experiment design
| Factor | Name | Low actual | High actual | Low coded | High coded | Mean | Std. dev |
|---|---|---|---|---|---|---|---|
| A | pH | 5.25 | 9.75 | −1.000 | 1.000 | 7.500 | 2.012 |
| B | Contact time (min) | 37.50 | 92.50 | −1.000 | 1.000 | 65.000 | 24.597 |
| C | Acetamipraid (mg/L) | 10.75 | 30.25 | −1.000 | 1.000 | 20.500 | 8.721 |
| D | Dose of NPa (mg/L) | 325.00 | 775.00 | −1.000 | 1.000 | 550.000 | 201.246 |
a Nanoparticles
Fig. 1SEM images of a, b Fe3O4, c, d Fe3O4/SiO2/TiO2
Fig. 2VSM result of naked Fe3O4/SiO2/TiO2
Fig. 3Three-dimensional response removal of acetamiprid with interactions between factors. a The effect of dose of nanoparticles (mg/L) and concentrations of acetamiprid (mg/L). b The effect of concentrations of acetamiprid (mg/L) and pH. c The effect of contact time (min) and pH. d The effect of contact time (min) and concentrations of acetamiprid (mg/L). e The effect of contact time (min) and dose of nanoparticles (mg/L). f The effect of dose of nanoparticles (mg/L) and pH
Results of the experimental runs designed according to the CCD
| Run | Factor A: pH | Factor B: contact time (min) | Factor C: concentration of acetamiprid (mg/L) | Factor D: dosage of nanoparticles (mg/L) | Removal efficiency (%) | Predicted value |
|---|---|---|---|---|---|---|
| 1 | 5.250 | 92.50 | 10.75 | 325.0 | 64.80 | 64.80 |
| 2 | 9.750 | 37.50 | 10.75 | 325.0 | 59.42 | 59.41 |
| 3 | 5.250 | 92.50 | 10.75 | 325.0 | 67.51 | 67.53 |
| 4 | 9.750 | 65.00 | 10.75 | 325.0 | 59.85 | 59.84 |
| 5 | 5.250 | 92.50 | 30.25 | 325.0 | 58.80 | 58.79 |
| 6 | 9.750 | 37.50 | 30.25 | 325.0 | 52.85 | 52.85 |
| 7 | 5.250 | 92.50 | 30.25 | 325.0 | 60.69 | 60.69 |
| 8 | 9.750 | 65.00 | 30.25 | 325.0 | 52.44 | 52.45 |
| 9 | 5.250 | 10.00 | 10.75 | 775.0 | 73.61 | 73.61 |
| 10 | 9.750 | 92.50 | 10.75 | 775.0 | 68.12 | 68.12 |
| 11 | 5.250 | 92.50 | 10.75 | 775.0 | 73.00 | 72.99 |
| 12 | 9.750 | 65.00 | 10.75 | 775.0 | 65.20 | 65.21 |
| 13 | 5.250 | 37.50 | 30.25 | 775.0 | 65.97 | 65.97 |
| 14 | 9.750 | 65.00 | 30.25 | 775.0 | 59.95 | 59.93 |
| 15 | 5.250 | 37.50 | 30.25 | 775.0 | 64.50 | 64.52 |
| 16 | 9.750 | 37.50 | 30.25 | 775.0 | 56.19 | 56.18 |
| 17 | 3.000 | 65.00 | 20.50 | 550.0 | 61.75 | 61.74 |
| 18 | 12.00 | 92.50 | 20.50 | 550.0 | 48.00 | 48.01 |
| 19 | 7.500 | 65.00 | 20.50 | 550.0 | 61.58 | 61.59 |
| 20 | 7.500 | 120.00 | 20.50 | 550.0 | 60.59 | 60.57 |
| 21 | 7.500 | 65.00 | 1.000 | 550.0 | 76.55 | 76.54 |
| 22 | 7.500 | 37.50 | 40.00 | 550.0 | 61.50 | 61.50 |
| 23 | 7.500 | 37.50 | 20.50 | 100.0 | 59.48 | 59.48 |
| 24 | 7.500 | 65.00 | 20.50 | 1000. | 72.02 | 72.02 |
| 25 | 7.500 | 65.00 | 20.50 | 550.0 | 71.55 | 72.63 |
| 26 | 7.500 | 37.50 | 20.50 | 550.0 | 73.00 | 72.63 |
| 27 | 7.500 | 65.00 | 20.50 | 550.0 | 70.54 | 72.63 |
| 28 | 7.500 | 92.50 | 20.50 | 550.0 | 72.80 | 72.63 |
| 29 | 7.500 | 65.00 | 20.50 | 550.0 | 74.43 | 72.63 |
| 30 | 7.50 | 65.00 | 20.50 | 550.0 | 73.46 | 72.63 |
The result of acetamiprid effect concentration in Resazurin reduction and colony forming unit
| Parameters | Type of test | Value | p value |
|---|---|---|---|
| EC10 (mg/L) | RR | 0.895 | <0.05 |
| CFU | 0.901 | <0.05 | |
| EC20 (mg/L) | RR | 1.180 | <0.05 |
| CFU | 1.020 | <0.05 | |
| EC30 (mg/L) | RR | 1.380 | <0.05 |
| CFU | 1.410 | <0.05 | |
| EC40 (mg/L) | RR | 1.745 | <0.05 |
| CFU | 1.884 | <0.05 | |
| EC50 (mg/L) | RR | 1.950 | <0.05 |
| CFU | 2.050 | <0.05 | |
| EC60 (mg/L) | RR | 2.160 | <0.05 |
| CFU | 2.250 | <0.05 | |
| EC70 (mg/L) | RR | 2.468 | <0.05 |
| CFU | 2.578 | <0.05 | |
| EC80 (mg/L) | RR | 2.753 | <0.05 |
| CFU | 2.800 | <0.05 | |
| EC90 (mg/L) | RR | 3.110 | <0.05 |
| CFU | 3.230 | <0.05 | |
| NOECa (mg/L) | RR | 0.521 | <0.05 |
| CFU | 0.630 | <0.05 | |
| 100% mortality (mg/L) | RR | 4.180 | <0.05 |
| CFU | 4.280 | <0.05 |
a No observed effect concentration
ANOVA for response surface quadratic model: analysis of variance table (partial sum of squares—Type III)
| Source | Sum of squares | df | Mean square | F value |
| Prob > F |
|---|---|---|---|---|---|---|
| Model | 1581 | 14 | 112.9 | 175.85 | <0.0001 | Significant |
| A-pH | 282.6 | 1 | 282.6 | 440.2 | <0.0001 | – |
| B-contact time | 1.561 | 1 | 1.561 | 2.430 | 0.1398 | – |
| C-Concentration of acetamiprid | 339.2 | 1 | 339.2 | 528.2 | <0.0001 | – |
| D-dose of N.P | 236.0 | 1 | 236.0 | 367.5 | <0.0001 | – |
| AB | 5.267 | 1 | 5.267 | 8.203 | 0.01183 | – |
| AC | 0.3025 | 1 | 0.3025 | 0.4711 | 0.5030 | – |
| AD | 0.009025 | 1 | 0.009025 | 0.01406 | 0.9072 | – |
| BC | 0.7056 | 1 | 0.7056 | 1.099 | 0.3111 | – |
| BD | 11.19 | 1 | 11.19 | 17.43 | 0.06001 | – |
| CD | 2.657 | 1 | 2.657 | 4.138 | <0.0001 | – |
| A2 | 540.5 | 1 | 540.5 | 841.8 | <0.0001 | – |
| B2 | 228.6 | 1 | 228.6 | 356.0 | <0.0001 | – |
| C2 | 22.30 | 1 | 22.30 | 34.73 | <0.0001 | – |
| D2 | 81.18 | 1 | 81.18 | 126.4 | <0.0001 | – |
| Residual | 9.632 | 15 | 0.6421 | – | – | – |
| Lack of fit | 0.002383 | 10 | 0.0002383 | 0.0001238 | 1.0000 | Not significant |
| Pure error | 9.629 | 5 | 1.926 | – | – | – |
| Cor total | 1590 | 29 | – | – | – | – |
Results of the experimental ORP, COD and absorption of Resazurin
| Run | Effluent of acetamiprid (mg/L) | Absorption of Resazurin | ORP (mv) | COD initial (mg/L) | COD residuals (mg/L) |
|---|---|---|---|---|---|
| 1 | 3.784 | 0.066 | 221.6 | 48 | 6.72 |
| 2 | 4.362 | 0.069 | 221.0 | 48 | 7.68 |
| 3 | 3.492 | 0.063 | 222.6 | 48 | 5.28 |
| 4 | 4.316 | 0.068 | 221.8 | 48 | 7.00 |
| 5 | 12.461 | 0.110 | 214.0 | 142 | 28.40 |
| 6 | 14.262 | 0.118 | 213.2 | 142 | 29.00 |
| 7 | 11.891 | 0.101 | 215.0 | 142 | 27.20 |
| 8 | 14.386 | 0.119 | 209.8 | 142 | 29.00 |
| 9 | 2.847 | 0.040 | 232.0 | 48 | 4.68 |
| 10 | 3.427 | 0.064 | 224.2 | 48 | 5.30 |
| 11 | 2.902 | 0.043 | 232.7 | 48 | 4.80 |
| 12 | 3.741 | 0.061 | 223.9 | 48 | 6.55 |
| 13 | 10.294 | 0.095 | 215.4 | 142 | 29.10 |
| 14 | 12.115 | 0.108 | 214.1 | 142 | 30.00 |
| 15 | 10.738 | 0.099 | 215.2 | 142 | 29.4 |
| 16 | 13.252 | 0.115 | 210.0 | 142 | 31.10 |
| 17 | 7.841 | 0.085 | 215.7 | 96 | 16.32 |
| 18 | 10.661 | 0.097 | 215.3 | 96 | 17.34 |
| 19 | 7.176 | 0.083 | 216.2 | 96 | 15.20 |
| 20 | 8.079 | 0.087 | 215.8 | 96 | 15.50 |
| 21 | 0.214 | 0.013 | 243.0 | 4.2 | 0.21 |
| 22 | 15.391 | 0.121 | 207.0 | 168 | 33.60 |
| 23 | 8.306 | 0.088 | 216.0 | 96 | 17.30 |
| 24 | 5.731 | 0.080 | 216.3 | 96 | 14.56 |
| 25 | 5.422 | 0.071 | 220.5 | 96 | 14.79 |
| 26 | 5.432 | 0.076 | 220.0 | 96 | 15.00 |
| 27 | 5.424 | 0.071 | 220.5 | 96 | 14.80 |
| 28 | 5.422 | 0.070 | 220.5 | 96 | 15.00 |
| 29 | 5.446 | 0.079 | 220.4 | 96 | 14.86 |
| 30 | 5.440 | 0.077 | 220.5 | 96 | 15.00 |