<?xml version="1.0" encoding="UTF-8"?>
<?xml-stylesheet type="text/xsl" href="https://biccel.com/wp-sitemap.xsl" ?>
<urlset xmlns="http://www.sitemaps.org/schemas/sitemap/0.9"><url><loc>https://biccel.com/publication/co2-adsorption-2/</loc><lastmod>2025-06-29T11:57:29+09:00</lastmod></url><url><loc>https://biccel.com/publication/ecomparative-transcriptome-analysis-of-haematococcus-pluvialis-on-astaxanthin-biosynthesis-in-response-to-irradiation-with-red-or-blue-led-wavelength/</loc><lastmod>2025-06-29T11:55:45+09:00</lastmod></url><url><loc>https://biccel.com/publication/3-adsorptive-removal-of-harmful-algal-species-microcystis-aeruginosa-directly-from-aqueous-solution-using-polyethylenimine-coated-polysulfone-biomass-composite-fiber/</loc><lastmod>2025-06-29T11:59:22+09:00</lastmod></url><url><loc>https://biccel.com/publication/4-enhancement-of-microalga-haematococcus-pluvialis-growth-and-astaxanthin-production-by-electrical-treatment/</loc><lastmod>2025-06-29T12:00:42+09:00</lastmod></url><url><loc>https://biccel.com/publication/5-enhancement-of-growth-and-paramylon-production-of-euglena-gracilis-by-co-cultivation-with-pseudoalteromonas-sp-mebic-03485/</loc><lastmod>2025-06-29T12:02:13+09:00</lastmod></url><url><loc>https://biccel.com/publication/6-improvement-of-euglena-gracilis-paramylon-production-through-a-cocultivation-strategy-with-the-indole-3-acetic-acid-producing-bacterium-vibrio-natriegens/</loc><lastmod>2025-06-29T14:58:25+09:00</lastmod></url><url><loc>https://biccel.com/publication/7-rapid-and-accurate-quantification-of-paramylon-produced-from-euglena-gracilis-using-an-ssdna-aptamer/</loc><lastmod>2025-06-29T13:12:27+09:00</lastmod></url><url><loc>https://biccel.com/publication/8-mechanical-stress-induced-astaxanthin-accumulation-of-h-pluvialis-on-a-chip/</loc><lastmod>2025-06-29T12:22:41+09:00</lastmod></url><url><loc>https://biccel.com/publication/9-production-and-characterization-of-melanin-pigments-derived-from-amorphotheca-resinae/</loc><lastmod>2025-06-29T12:23:53+09:00</lastmod></url><url><loc>https://biccel.com/publication/10-co-cultivation-of-euglena-gracilis-and-pseudoalteromonas-sp-mebic-03607-for-paramylon-production/</loc><lastmod>2025-06-29T12:24:49+09:00</lastmod></url><url><loc>https://biccel.com/publication/11-fungal-melanin-as-a-biocompatible-broad-spectrum-sunscreen-with-high-antioxidant-activity/</loc><lastmod>2025-06-29T12:27:14+09:00</lastmod></url><url><loc>https://biccel.com/publication/12-selection-and-characterization-of-toxic-aspergillus-spore-specific-dna-aptamer-using-spore-selex/</loc><lastmod>2025-06-29T12:39:49+09:00</lastmod></url><url><loc>https://biccel.com/publication/13-application-of-electrical-treatment-on-euglena-gracilis-for-increasing-paramylon-production/</loc><lastmod>2025-06-29T12:41:13+09:00</lastmod></url><url><loc>https://biccel.com/publication/14-quantitative-study-on-lipid-productivity-of-euglena-gracilis-and-its-biodiesel-production-according-to-the-cultivation-conditions/</loc><lastmod>2025-06-29T13:12:03+09:00</lastmod></url><url><loc>https://biccel.com/publication/15-utilization-of-extracellular-fungal-melanin-as-an-eco-friendly-biosorbent-for-treatment-of-metal-contaminated-effluents/</loc><lastmod>2025-06-29T12:49:00+09:00</lastmod></url><url><loc>https://biccel.com/publication/16-in-vivo-monitoring-of-intracellular-metabolite-in-a-microalgal-cell-using-an-aptamer-graphene-oxide-nanosheet-complex/</loc><lastmod>2025-06-29T12:47:49+09:00</lastmod></url><url><loc>https://biccel.com/publication/17-a-strategic-approach-to-apply-bacterial-substances-for-increasing-metabolite-productions-of-euglena-gracilis-in-the-bioreactor/</loc><lastmod>2025-06-29T12:51:30+09:00</lastmod></url><url><loc>https://biccel.com/publication/18-mixotrophic-cultivation-of-a-native-cyanobacterium-pseudanabaena-mucicola-go0704-to-produce-phycobiliprotein-and-biodiesel/</loc><lastmod>2025-06-29T12:53:15+09:00</lastmod></url><url><loc>https://biccel.com/publication/19-fluorogenic-on-off-nanosensor-based-on-dual-quenching-effect-for-imaging-intracellular-metabolite-of-various-microalgae/</loc><lastmod>2025-06-29T12:55:08+09:00</lastmod></url><url><loc>https://biccel.com/publication/20-simultaneous-probing-of-dual-intracellular-metabolites-atp-and-paramylon-in-live-microalgae-using-graphene-oxide-aptamer-nanocomplex/</loc><lastmod>2025-06-29T12:57:27+09:00</lastmod></url><url><loc>https://biccel.com/publication/21-zero-waste-strategy-by-means-of-valorization-of-bread-waste/</loc><lastmod>2025-06-29T13:11:26+09:00</lastmod></url><url><loc>https://biccel.com/publication/22-use-of-rare-earth-element-ree-contaminated-acidic-water-as-euglena-gracilis-growth-stimulator-a-strategy-for-bioremediation-and-simultaneous-increase-in-biodiesel-productivity/</loc><lastmod>2025-06-29T13:00:46+09:00</lastmod></url><url><loc>https://biccel.com/publication/23-biodiesel-from-microalgae-recent-progress-and-key-challenges/</loc><lastmod>2025-06-29T13:11:01+09:00</lastmod></url><url><loc>https://biccel.com/publication/24-elucidating-the-mechanisms-underlying-the-cytotoxic-effects-of-nano-micro-sized-graphene-oxide-on-the-microalgae-by-comparing-the-physiological-and-morphological-changes-in-different-trophic-mod/</loc><lastmod>2025-06-29T13:04:08+09:00</lastmod></url><url><loc>https://biccel.com/publication/25-volatile-fatty-acid-treated-mixotrophic-cultivation-of-lipid-carbohydrate-rich-cyanobacterial-species-pseudanabaena-mucicola-go0704-for-the-enhancement-of-biofuel-production/</loc><lastmod>2025-06-29T13:10:17+09:00</lastmod></url><url><loc>https://biccel.com/publication/26-the-cytotoxicity-of-nano-and-micro-sized-graphene-oxides-on-microalgae-depends-on-the-characteristics-of-cell-wall-and-flagella/</loc><lastmod>2025-06-29T13:09:44+09:00</lastmod></url><url><loc>https://biccel.com/publication/27-valorization-of-cattle-manure-via-a-thermo-chemical-process/</loc><lastmod>2025-06-29T13:13:52+09:00</lastmod></url><url><loc>https://biccel.com/publication/28-utilising-polyester-and-steel-slag%e2%80%90derived-metal-carbon-composites-as-catalysts-in-biodiesel-production/</loc><lastmod>2025-06-29T13:15:58+09:00</lastmod></url><url><loc>https://biccel.com/publication/29-controlling-the-compositional-matrix-of-pyrogenic-products-using-carbon-dioxide-in-the-pyrolysis-of-agricultural-plastic-waste/</loc><lastmod>2025-06-29T13:17:10+09:00</lastmod></url><url><loc>https://biccel.com/publication/30-effects-of-micro-sized-biodegradable-plastics-on-microcystis-aeruginosa/</loc><lastmod>2025-06-29T13:18:19+09:00</lastmod></url><url><loc>https://biccel.com/publication/31-uptake-of-spherical-nucleic-acid-sna-in-ochromonas-danica-a-new-potential-biotechnological-tool/</loc><lastmod>2025-06-29T13:20:47+09:00</lastmod></url><url><loc>https://biccel.com/publication/32-direct-conversion-of-apricot-seeds-into-biodiesel/</loc><lastmod>2025-06-29T13:21:54+09:00</lastmod></url><url><loc>https://biccel.com/publication/33-developing-a-sorptive-material-of-cadmium-from-pyrolysis-of-hen-manure/</loc><lastmod>2025-06-29T13:23:27+09:00</lastmod></url><url><loc>https://biccel.com/publication/34-thermochemical-conversion-of-silkworm-by-product-into-syngas/</loc><lastmod>2025-06-29T13:28:37+09:00</lastmod></url><url><loc>https://biccel.com/publication/35-reactivity-of-carbon-dioxide-during-pyrolysis-of-paper-plastic-composite/</loc><lastmod>2025-06-29T13:27:56+09:00</lastmod></url><url><loc>https://biccel.com/publication/36-direct-conversion-of-cottonseeds-into-biodiesel/</loc><lastmod>2025-06-29T13:29:47+09:00</lastmod></url><url><loc>https://biccel.com/publication/37-lipid-analyses-of-oil-bearing-biomass-using-a-thermally-induced-derivatization-method/</loc><lastmod>2025-06-29T13:30:54+09:00</lastmod></url><url><loc>https://biccel.com/publication/38-advancement-of-biocrude-valorization-to-fuels-a-comprehensive-review/</loc><lastmod>2025-06-29T13:32:00+09:00</lastmod></url><url><loc>https://biccel.com/publication/39-thermo-chemical-processes-for-the-sustainable-utilization-of-oil-bearing-biomass-a-case-study-on-apricot-seed-valorization/</loc><lastmod>2025-06-29T13:33:08+09:00</lastmod></url><url><loc>https://biccel.com/publication/40-sustainable-management-of-medical-plastic-waste-through-carbon-dioxide-assisted-pyrolysis/</loc><lastmod>2025-06-29T13:34:14+09:00</lastmod></url><url><loc>https://biccel.com/publication/41-quantification-of-cooking-oil-fumes-using-non-catalytic-transesterification-a-reliable-method-for-indoor-air-quality-assessment/</loc><lastmod>2025-06-29T13:35:12+09:00</lastmod></url><url><loc>https://biccel.com/publication/42-sustainable-organic-waste-valorisation-a-zero-waste-approach/</loc><lastmod>2025-06-29T13:36:28+09:00</lastmod></url><url><loc>https://biccel.com/publication/43-strategic-approach-for-converting-fat-rich-food-waste-into-high-quality-biodiesel-using-black-soldier-fly-larvae-for-sustainable-bioenergy/</loc><lastmod>2025-06-29T13:37:37+09:00</lastmod></url><url><loc>https://biccel.com/publication/44-establishment-of-circular-economy-by-utilising-textile-industry-waste-as-an-adsorbent-for-textile-dye-removal/</loc><lastmod>2025-06-29T13:39:59+09:00</lastmod></url><url><loc>https://biccel.com/publication/45-feed-shifting-strategy-for-increasing-biodiesel-production-from-black-soldier-fly-larvae/</loc><lastmod>2025-06-29T13:41:28+09:00</lastmod></url><url><loc>https://biccel.com/publication/46-production-of-biodiesel-from-non-edible-industrial-oilseeds-via-non-catalytic-transesterification/</loc><lastmod>2025-06-29T13:44:22+09:00</lastmod></url><url><loc>https://biccel.com/publication/47-synergistic-integration-of-entomological-and-thermochemical-approaches-for-the-sustainable-energy-production-from-organic-waste/</loc><lastmod>2025-06-29T13:46:19+09:00</lastmod></url><url><loc>https://biccel.com/publication/48-use-of-defatted-cottonseed-derived-biochar-for-biodiesel-production-a-closed-loop-approach/</loc><lastmod>2025-06-29T13:48:47+09:00</lastmod></url><url><loc>https://biccel.com/publication/49-insect-derived-biochar-for-co2-adsorption-under-humid-conditions-elucidating-adsorption-mechanisms-and-competitive-interactions-with-water-molecules/</loc><lastmod>2025-06-29T13:50:12+09:00</lastmod></url><url><loc>https://biccel.com/publication/50-suppression-of-carbon-footprint-through-the-co2-assisted-pyrolysis-of-livestock-waste/</loc><lastmod>2025-06-29T13:51:40+09:00</lastmod></url><url><loc>https://biccel.com/publication/51-co2-mediated-pyrolysis-for-syngas-generation-from-wood-plastic-composite-waste/</loc><lastmod>2025-06-29T13:55:00+09:00</lastmod></url><url><loc>https://biccel.com/publication/52-direct-conversion-process-for-enhancing-biodiesel-production-from-insect-biomass-waste/</loc><lastmod>2025-06-29T13:54:44+09:00</lastmod></url><url><loc>https://biccel.com/publication/53-use-of-biochar-as-a-catalyst-for-biodiesel-production/</loc><lastmod>2025-06-29T13:56:22+09:00</lastmod></url><url><loc>https://biccel.com/publication/54-bioenergy-production-from-yeast-through-a-thermo-chemical-platform/</loc><lastmod>2025-06-29T14:31:29+09:00</lastmod></url><url><loc>https://biccel.com/publication/55-carbon-dioxide-mediated-catalytic-pyrolysis-of-lignin-in-syngas-production/</loc><lastmod>2025-06-29T14:32:39+09:00</lastmod></url><url><loc>https://biccel.com/publication/56-thermochemical-valorization-of-pesticide-contaminated-cocoa-bean-shells-enhancing-sustainable-energy-recovery-and-minimizing-toxic-byproducts/</loc><lastmod>2025-06-29T14:34:15+09:00</lastmod></url><url><loc>https://biccel.com/publication/57-recovery-of-chemicals-and-energy-through-thermo-chemical-processing-of-plastic-waste/</loc><lastmod>2025-06-29T14:35:46+09:00</lastmod></url><url><loc>https://biccel.com/publication/58-circular-economy-approach-to-valorizing-horticultural-waste-via-thermochemical-process/</loc><lastmod>2025-06-29T14:37:03+09:00</lastmod></url><url><loc>https://biccel.com/publication/59-changing-biomass-into-carbon-negative-through-dual-step-approach-co2-assisted-pyrolysis-and-biochar-based-co2-adsorption/</loc><lastmod>2025-06-29T14:38:23+09:00</lastmod></url><url><loc>https://biccel.com/publication/60-enhancing-sustainability-in-meat-production-through-insect-biorefinery/</loc><lastmod>2025-06-29T14:40:08+09:00</lastmod></url><url><loc>https://biccel.com/publication/61-a-review-of-sustainable-metal-recovery-from-e-waste-via-bioleaching-current-status-and-strategies-for-improvement/</loc><lastmod>2025-06-29T14:41:51+09:00</lastmod></url><url><loc>https://biccel.com/publication/62-sustainable-production-of-bioplastic-using-halomonas-sp-enhancing-process-sustainability-by-minimizing-waste-generation/</loc><lastmod>2025-06-29T14:42:52+09:00</lastmod></url><url><loc>https://biccel.com/publication/63-modifying-carbon-feedback-by-transforming-arctic-soil-into-biochar/</loc><lastmod>2025-06-29T14:43:58+09:00</lastmod></url><url><loc>https://biccel.com/publication/64-reducing-co2-emissions-in-brewing-industry-through-sustainable-valorisation-of-brewers-spent-grain-using-co2-assisted-pyrolysis/</loc><lastmod>2025-06-29T14:45:00+09:00</lastmod></url><url><loc>https://biccel.com/publication/65-on-site-microfluidic-aptasensor-for-rapid-and-highly-selective-detection-of-microcystin-lr/</loc><lastmod>2025-06-29T14:47:31+09:00</lastmod></url><url><loc>https://biccel.com/publication/66-sustainable-biodiesel-synthesis-via-non-catalytic-transesterification-of-biomass-waste-derived-oil-and-ethanol/</loc><lastmod>2025-06-29T14:50:13+09:00</lastmod></url></urlset>
