synovial fluid 24 well microtiter plate  (ATCC)


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    ATCC synovial fluid 24 well microtiter plate
    Synovial Fluid 24 Well Microtiter Plate, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    microtiter plates  (ATCC)


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    ATCC microtiter plates
    Microtiter Plates, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    microtiter plate assay  (ATCC)


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    ATCC microtiter plate assay
    Microtiter Plate Assay, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    microtiter plates  (ATCC)


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    ATCC microtiter plates
    Microtiter Plates, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    microtiter plate biofilms  (ATCC)


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    ATCC microtiter plate biofilms
    Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. <t>Biofilms</t> were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.
    Microtiter Plate Biofilms, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    microtiter plate biofilms - by Bioz Stars, 2024-04
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    1) Product Images from "Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus"

    Article Title: Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus

    Journal: Applied and Environmental Microbiology

    doi: 10.1128/aem.01062-23

    Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. Biofilms were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.
    Figure Legend Snippet: Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. Biofilms were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.

    Techniques Used: Crystal Violet Assay, Incubation, Standard Deviation

    Biofilm viability assay result for phages with varying degrees of efficacy at degrading viability of Lm19111 biofilms. (A) CKA8, (B) CKA14, and (C) CKA15. Initial phage titers ranged from 8 to 5 log PFU/mL, with increments of 1 log PFU/mL. Red color is indicative of the presence of respiring Lm19111 causing reduction of tetrazolium. Biofilm cultivation and phage treatment were performed as for crystal violet assay.
    Figure Legend Snippet: Biofilm viability assay result for phages with varying degrees of efficacy at degrading viability of Lm19111 biofilms. (A) CKA8, (B) CKA14, and (C) CKA15. Initial phage titers ranged from 8 to 5 log PFU/mL, with increments of 1 log PFU/mL. Red color is indicative of the presence of respiring Lm19111 causing reduction of tetrazolium. Biofilm cultivation and phage treatment were performed as for crystal violet assay.

    Techniques Used: Viability Assay, Crystal Violet Assay

    Confocal imaging of live-dead stained mature (5-day-old) Lm19111 biofilms. (A) untreated. (B–F) Treated with 3–7 log PFU/mL of CKA15 for 16 h. (G) Violin plot showing viable biovolume of Lm19111 biofilms across different concentrations of phage CKA15. Each point represents a single field of view. The experiment was done in 3 biological replicates with 10 technical replicates per biological replicate.
    Figure Legend Snippet: Confocal imaging of live-dead stained mature (5-day-old) Lm19111 biofilms. (A) untreated. (B–F) Treated with 3–7 log PFU/mL of CKA15 for 16 h. (G) Violin plot showing viable biovolume of Lm19111 biofilms across different concentrations of phage CKA15. Each point represents a single field of view. The experiment was done in 3 biological replicates with 10 technical replicates per biological replicate.

    Techniques Used: Imaging, Staining

    Comparison of biofilm formation of WT Lm19111 and two bacteriophage insensitive mutants assessed by crystal violet assay at different temperatures. The A590 values were normalized against the OD600 of the planktonic fraction of the wells to account for differences in growth rate. Error bars represent standard deviation of the mean from three biological replicates. Biofilms were grown in TSB-GN at different temperatures. (A) 30°C, (B) 22.5°C, and (C) 15°C.
    Figure Legend Snippet: Comparison of biofilm formation of WT Lm19111 and two bacteriophage insensitive mutants assessed by crystal violet assay at different temperatures. The A590 values were normalized against the OD600 of the planktonic fraction of the wells to account for differences in growth rate. Error bars represent standard deviation of the mean from three biological replicates. Biofilms were grown in TSB-GN at different temperatures. (A) 30°C, (B) 22.5°C, and (C) 15°C.

    Techniques Used: Comparison, Crystal Violet Assay, Standard Deviation

    Effect of two treatments at 109 PFU/mL of CKA15 on mature Lm19111 biofilms grown under SDPCs in CDC bioreactors. Contact time for adsorption was 2 h in tap water. Time indicates time elapsed since first treatment. Error bars represent standard deviation of the mean of three biological replicates.
    Figure Legend Snippet: Effect of two treatments at 109 PFU/mL of CKA15 on mature Lm19111 biofilms grown under SDPCs in CDC bioreactors. Contact time for adsorption was 2 h in tap water. Time indicates time elapsed since first treatment. Error bars represent standard deviation of the mean of three biological replicates.

    Techniques Used: Adsorption, Standard Deviation

    microtiter plate biofilms  (ATCC)


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    ATCC microtiter plate biofilms
    Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. <t>Biofilms</t> were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.
    Microtiter Plate Biofilms, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/microtiter plate biofilms/product/ATCC
    Average 86 stars, based on 1 article reviews
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    microtiter plate biofilms - by Bioz Stars, 2024-04
    86/100 stars

    Images

    1) Product Images from "Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus"

    Article Title: Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus

    Journal: Applied and Environmental Microbiology

    doi: 10.1128/aem.01062-23

    Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. Biofilms were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.
    Figure Legend Snippet: Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. Biofilms were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.

    Techniques Used: Crystal Violet Assay, Incubation, Standard Deviation

    Biofilm viability assay result for phages with varying degrees of efficacy at degrading viability of Lm19111 biofilms. (A) CKA8, (B) CKA14, and (C) CKA15. Initial phage titers ranged from 8 to 5 log PFU/mL, with increments of 1 log PFU/mL. Red color is indicative of the presence of respiring Lm19111 causing reduction of tetrazolium. Biofilm cultivation and phage treatment were performed as for crystal violet assay.
    Figure Legend Snippet: Biofilm viability assay result for phages with varying degrees of efficacy at degrading viability of Lm19111 biofilms. (A) CKA8, (B) CKA14, and (C) CKA15. Initial phage titers ranged from 8 to 5 log PFU/mL, with increments of 1 log PFU/mL. Red color is indicative of the presence of respiring Lm19111 causing reduction of tetrazolium. Biofilm cultivation and phage treatment were performed as for crystal violet assay.

    Techniques Used: Viability Assay, Crystal Violet Assay

    Confocal imaging of live-dead stained mature (5-day-old) Lm19111 biofilms. (A) untreated. (B–F) Treated with 3–7 log PFU/mL of CKA15 for 16 h. (G) Violin plot showing viable biovolume of Lm19111 biofilms across different concentrations of phage CKA15. Each point represents a single field of view. The experiment was done in 3 biological replicates with 10 technical replicates per biological replicate.
    Figure Legend Snippet: Confocal imaging of live-dead stained mature (5-day-old) Lm19111 biofilms. (A) untreated. (B–F) Treated with 3–7 log PFU/mL of CKA15 for 16 h. (G) Violin plot showing viable biovolume of Lm19111 biofilms across different concentrations of phage CKA15. Each point represents a single field of view. The experiment was done in 3 biological replicates with 10 technical replicates per biological replicate.

    Techniques Used: Imaging, Staining

    Comparison of biofilm formation of WT Lm19111 and two bacteriophage insensitive mutants assessed by crystal violet assay at different temperatures. The A590 values were normalized against the OD600 of the planktonic fraction of the wells to account for differences in growth rate. Error bars represent standard deviation of the mean from three biological replicates. Biofilms were grown in TSB-GN at different temperatures. (A) 30°C, (B) 22.5°C, and (C) 15°C.
    Figure Legend Snippet: Comparison of biofilm formation of WT Lm19111 and two bacteriophage insensitive mutants assessed by crystal violet assay at different temperatures. The A590 values were normalized against the OD600 of the planktonic fraction of the wells to account for differences in growth rate. Error bars represent standard deviation of the mean from three biological replicates. Biofilms were grown in TSB-GN at different temperatures. (A) 30°C, (B) 22.5°C, and (C) 15°C.

    Techniques Used: Comparison, Crystal Violet Assay, Standard Deviation

    Effect of two treatments at 109 PFU/mL of CKA15 on mature Lm19111 biofilms grown under SDPCs in CDC bioreactors. Contact time for adsorption was 2 h in tap water. Time indicates time elapsed since first treatment. Error bars represent standard deviation of the mean of three biological replicates.
    Figure Legend Snippet: Effect of two treatments at 109 PFU/mL of CKA15 on mature Lm19111 biofilms grown under SDPCs in CDC bioreactors. Contact time for adsorption was 2 h in tap water. Time indicates time elapsed since first treatment. Error bars represent standard deviation of the mean of three biological replicates.

    Techniques Used: Adsorption, Standard Deviation

    well microtiter plate  (ATCC)


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    ATCC well microtiter plate
    Well Microtiter Plate, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    microtiter plates  (ATCC)


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    ATCC microtiter plates
    Microtiter Plates, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    96 well microtiter plate  (ATCC)


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    ATCC 96 well microtiter plate
    96 Well Microtiter Plate, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    96 well microtiter plate  (ATCC)


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    ATCC 96 well microtiter plate
    96 Well Microtiter Plate, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC synovial fluid 24 well microtiter plate
    Synovial Fluid 24 Well Microtiter Plate, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC microtiter plate assay
    Microtiter Plate Assay, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC microtiter plate biofilms
    Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. <t>Biofilms</t> were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.
    Microtiter Plate Biofilms, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/microtiter plate biofilms/product/ATCC
    Average 86 stars, based on 1 article reviews
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    ATCC well microtiter plate
    Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. <t>Biofilms</t> were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.
    Well Microtiter Plate, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC 96 well microtiter plate
    Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. <t>Biofilms</t> were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.
    96 Well Microtiter Plate, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. Biofilms were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.

    Journal: Applied and Environmental Microbiology

    Article Title: Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus

    doi: 10.1128/aem.01062-23

    Figure Lengend Snippet: Effect of different phage concentrations on Lm19111 biofilm biomass assessed by the crystal violet assay. Biofilms were grown at 22.5°C for 48 h, treated with different concentrations of phage in the biofilm growth medium, and incubated for an additional 24 h. Error bars represent standard deviation of the mean from three biological replicates. (A) CKA4, (B) CKA8, (C) CKA11, (D)CKA14, (E) CKA15, (F) CKA16, (G) CKA17, (H) CKA18, and (I) P100.

    Article Snippet: We screened nine closely related Listeria phages, including the commercially available Listex P100, for host range and ability to degrade microtiter plate biofilms of L. monocytogenes ATCC 19111 (serovar 1/2a).

    Techniques: Crystal Violet Assay, Incubation, Standard Deviation

    Biofilm viability assay result for phages with varying degrees of efficacy at degrading viability of Lm19111 biofilms. (A) CKA8, (B) CKA14, and (C) CKA15. Initial phage titers ranged from 8 to 5 log PFU/mL, with increments of 1 log PFU/mL. Red color is indicative of the presence of respiring Lm19111 causing reduction of tetrazolium. Biofilm cultivation and phage treatment were performed as for crystal violet assay.

    Journal: Applied and Environmental Microbiology

    Article Title: Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus

    doi: 10.1128/aem.01062-23

    Figure Lengend Snippet: Biofilm viability assay result for phages with varying degrees of efficacy at degrading viability of Lm19111 biofilms. (A) CKA8, (B) CKA14, and (C) CKA15. Initial phage titers ranged from 8 to 5 log PFU/mL, with increments of 1 log PFU/mL. Red color is indicative of the presence of respiring Lm19111 causing reduction of tetrazolium. Biofilm cultivation and phage treatment were performed as for crystal violet assay.

    Article Snippet: We screened nine closely related Listeria phages, including the commercially available Listex P100, for host range and ability to degrade microtiter plate biofilms of L. monocytogenes ATCC 19111 (serovar 1/2a).

    Techniques: Viability Assay, Crystal Violet Assay

    Confocal imaging of live-dead stained mature (5-day-old) Lm19111 biofilms. (A) untreated. (B–F) Treated with 3–7 log PFU/mL of CKA15 for 16 h. (G) Violin plot showing viable biovolume of Lm19111 biofilms across different concentrations of phage CKA15. Each point represents a single field of view. The experiment was done in 3 biological replicates with 10 technical replicates per biological replicate.

    Journal: Applied and Environmental Microbiology

    Article Title: Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus

    doi: 10.1128/aem.01062-23

    Figure Lengend Snippet: Confocal imaging of live-dead stained mature (5-day-old) Lm19111 biofilms. (A) untreated. (B–F) Treated with 3–7 log PFU/mL of CKA15 for 16 h. (G) Violin plot showing viable biovolume of Lm19111 biofilms across different concentrations of phage CKA15. Each point represents a single field of view. The experiment was done in 3 biological replicates with 10 technical replicates per biological replicate.

    Article Snippet: We screened nine closely related Listeria phages, including the commercially available Listex P100, for host range and ability to degrade microtiter plate biofilms of L. monocytogenes ATCC 19111 (serovar 1/2a).

    Techniques: Imaging, Staining

    Comparison of biofilm formation of WT Lm19111 and two bacteriophage insensitive mutants assessed by crystal violet assay at different temperatures. The A590 values were normalized against the OD600 of the planktonic fraction of the wells to account for differences in growth rate. Error bars represent standard deviation of the mean from three biological replicates. Biofilms were grown in TSB-GN at different temperatures. (A) 30°C, (B) 22.5°C, and (C) 15°C.

    Journal: Applied and Environmental Microbiology

    Article Title: Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus

    doi: 10.1128/aem.01062-23

    Figure Lengend Snippet: Comparison of biofilm formation of WT Lm19111 and two bacteriophage insensitive mutants assessed by crystal violet assay at different temperatures. The A590 values were normalized against the OD600 of the planktonic fraction of the wells to account for differences in growth rate. Error bars represent standard deviation of the mean from three biological replicates. Biofilms were grown in TSB-GN at different temperatures. (A) 30°C, (B) 22.5°C, and (C) 15°C.

    Article Snippet: We screened nine closely related Listeria phages, including the commercially available Listex P100, for host range and ability to degrade microtiter plate biofilms of L. monocytogenes ATCC 19111 (serovar 1/2a).

    Techniques: Comparison, Crystal Violet Assay, Standard Deviation

    Effect of two treatments at 109 PFU/mL of CKA15 on mature Lm19111 biofilms grown under SDPCs in CDC bioreactors. Contact time for adsorption was 2 h in tap water. Time indicates time elapsed since first treatment. Error bars represent standard deviation of the mean of three biological replicates.

    Journal: Applied and Environmental Microbiology

    Article Title: Degradation of Listeria monocytogenes biofilm by phages belonging to the genus Pecentumvirus

    doi: 10.1128/aem.01062-23

    Figure Lengend Snippet: Effect of two treatments at 109 PFU/mL of CKA15 on mature Lm19111 biofilms grown under SDPCs in CDC bioreactors. Contact time for adsorption was 2 h in tap water. Time indicates time elapsed since first treatment. Error bars represent standard deviation of the mean of three biological replicates.

    Article Snippet: We screened nine closely related Listeria phages, including the commercially available Listex P100, for host range and ability to degrade microtiter plate biofilms of L. monocytogenes ATCC 19111 (serovar 1/2a).

    Techniques: Adsorption, Standard Deviation