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Bio-Oil Skincare Oil - with Vitamin A & E - 4.2 fl oz. Bio-Oil. 4.6 out of 5 stars with 380 ratings. 380. $19.99. Spend $20 get a $5 gift card on select beauty care items. Free 2-day shipping with $35 orders. In stock at Wenatchee. Ready within 2 hours with pickup Brands 3M 3M Futuro 3M Nexcare Altrix Range Avene Azclear Bio Oil Carbonyl Iron Clinicians Cranclense Dermaid Douglas Haircare Ego Cream Egoderm Egopsoryl Egozite Elastastrap Hair Science Hairy Lemon Iron Melts Lanate MOOV Medico Pak Percutane Phloe Pinetarsol Puria QV Resolve SOOV Sebirinse Sebizole Silic 15 Sinus Rinse Smith and Nephew Solve. The bio-oil feed was also added with DTBS at a concentration of 0.45 g/kg bio-oil, to approximate 150 ppm S. A simplified illustration of the complete hydroprocessing flow is shown in Fig. 2. Bio-oil was fed at pressure into the reactor using a syringe pump (Isco Teledyne 500 D)

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  1. Use Bio-Oil: to smooth hair. For those with a frizz-prone hair texture, Bio-Oil is a good option to smooth those baby hairs or fly-aways, and even to hydrate parched ends. 15. Use Bio-Oil: for.
  2. At Douglas we work with innovative partners from around the world to research & develop, manufacture, market and distribute prescription and over-the-counter pharmaceutical, nutraceutical, and consumer healthcare products. Douglas is a place where curiosity thrives, where people inspire each other and where every opinion is valued
  3. Pyrolysis oil, sometimes also known as bio-crude or bio-oil, is a synthetic fuel under investigation as substitute for petroleum.It is obtained by heating dried biomass without oxygen in a reactor at a temperature of about 500 °C with subsequent cooling. Pyrolysis oil is a kind of tar and normally contains levels of oxygen too high to be considered a pure hydrocarbon
  4. Detail mechanisms of bio-oil corrosion on materials and the species formed under ambient and reaction conditions Demonstration Need for demonstration at-scale to attract investors and financing Lack of robust data set to show and convince refineries that bio-oil is compatible with their systems (>1000 hr continuous operatio
  5. Mijn Douglas Beauty Card Merken BECCA Cosmetics Bella Aurora bellessence Ben & Anna Benecos Benefit Cosmetics Beschadigde verpakking Betty Barclay Beyoncé BeYu Bio-Oil Biodermal Biolage Biosilk Biotherm Biotulin Birkholz Björk & Berries bkr black Up BLISS Lashes Blumarine BLUSHHOUR Bobbi Brown BodyBoom Boho Green Make-Up Bohoboco.
  6. Hydrothermal liquefaction (HTL) is a thermal depolymerization process used to convert wet biomass, and other macromolecules, into crude-like oil under moderate temperature and high pressure. The crude-like oil has high energy density with a lower heating value of 33.8-36.9 MJ/kg and 5-20 wt% oxygen and renewable chemicals.. The reaction usually involves homogeneous and/or heterogeneous.
  7. @article{osti_1440636, title = {Electrochemical Upgrading of Bio-Oil}, author = {Elangovan, S. and Larsen, Dennis and Bay, Insoo and Mitchell, Evan and Hartvigsen, Joseph and Millett, Byron and Elwell, Jessica and Santosa, Daniel and Elliott, Douglas C.}, abstractNote = {Bio-oil produced by fast pyrolysis of biomass is a potential source of low carbon, renewable hydrocarbon fuel

Bio-oil (product liquids from fast pyrolysis of biomass) is a complex mixture of oxygenates derived from the thermal breakdown of the biopolymers in biomass. In the case of lignocellulosic biomass, the structures of three major components, cellulose, hemicellulose and lignin, are well-represented by the bio-oil components. To study the chemical mechanisms of catalytic hydroprocessing of bio. Biomass & Bioenergy is an international journal publishing original research papers and short communications, review articles and case studies on biological resources, chemical and biological processes, and biomass products for new renewable sources of energy and materials. The scope of the Read mor Microwave pyrolysis of Douglas fir sawdust pellet was investigated to determine the effects of reaction temperature and time on the yields of bio-oil, syngas, and charcoal using a central composite design (CCD) and response surface analysis Bio-Oil Skincare Oil, Body Oil for Scars and Stretchmarks, Serum Hydrates Skin, Non-Greasy, Dermatologist Recommended, Non-Comedogenic, 4.2 Ounce, For All Skin Types, with Vitamin A, E. . This belly oil is the perfect choice for new and expecting moms to reduce the appearance of stretch marks, scars, and uneven skin tone around the belly

Hot-vapor-filtered bio-oils were produced from two different biomass feedstocks, oak and switchgrass, and the oils were evaluated in hydroprocessing tests for the production of liquid hydrocarbon products. Hot-vapor filtering reduced bio-oil yields and increased gas yields. The yields of fuel carbon as bio-oil were reduced by 10% by hot-vapor filtering for both feedstocks. The unfiltered bio. The separated bio-oil had similar oxygen-containing functional groups in different phases. Biomass pyrolysis using Douglas fir pellet and characterization of the bio-oil chemical compounds were conducted, followed by bio-oil liquid-liquid extractions with several solvents (e.g., hexane, petroleum ether, and chloroform) Upgraded bio-oil was dominated by phenols (37.23 area%) and hydrocarbons (42.56 area%) at higher biochar catalyst loadings. The biochar catalyst may be as a cheap catalyst in biomass conversion and bio-oil upgrading. The two step-reaction model fits well for Douglas fir sawdust torrefaction with the activatio

Upgrading Biomass Pyrolysis Bio-oil to Renewable Fuel

Comparison of oil-tea shell and Douglas-fir sawdust for

  1. In this work, the seeds of açaí (Euterpe oleracea, Mart), a rich lignin-cellulose residue, has been submitted to pyrolysis to produce a bio-oil-like fossil fuels. The pyrolysis carried out in a reactor of 143 L, 450°C, and 1.0 atm. The morphology of Açaí seeds in nature and after pyrolysis is characterized by SEM, EDX, and XRD. The experiments show that bio-oil, gas, and coke yields were.
  2. Douglas G. Naae has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO). The surfactant compositions are based on lignin bio-oil with a phenol hydroxyl group as the main.
  3. Citation: Shouyun Cheng, Lin Wei, Xianhui Zhao, Yinbin Huang, Douglas Raynie, Changling Qiu, John Kiratu, Yong Yu. Directly catalytic upgrading bio-oil vapor produced by prairie cordgrass pyrolysis over Ni/HZSM-5 using a two stage reactor[J]. AIMS Energy, 2015, 3(2): 227-240. doi: 10.3934/energy.2015.2.22
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  5. Bu et al. studied the bio‐oil yields (on wet basis) obtained from microwave‐assisted pyrolysis of Douglas fir at different pyrolysis temperatures (316-484°C). When the pyrolysis temperature increased from 316 to 400°C, the bio‐oil yield increased from 32.3 to 38.8 wt.%

Production of high yields of pyrolysis bio-oil, and their upgrading into drop-in fuels, still requires research on potential feedstock and catalyst development. We have also produced (and chemically characterized) pyrolysis bio-oil from both Douglas-fir and poplar feedstocks (see photo of pyrolysis unit, right). We developed protocols for. ditions to maximize phenolics content in bio-oil, the chemical compositions of bio-oil from activated carbon (GAC 830 PLUS) as a catalyst were identified and quantified by a GC/MS. The bio-oil samples were prepared from catalytic pyrolysis of Douglas fir by microwave heating from 589 to 673 K with different reaction time and amount of catalyst Bio-oil yield from raw and torrefied Douglas fir at the various duration and temperature [101, 107]. Table 8 summarizes a qualitative analysis of benefits of feedstock thermal pretreatment on logistical and quality of bio-oil properties. Column 1 lists major properties that a feedstock would gain as a result of thermal pretreatment Bio-Oil helps to improve the appearance of new or old scars, whether from surgery, accidents, burns, scratches or conditions such as acne or chickenpox. Vitamin E increases the moisture content of the skin, improving the overall texture and tone of the scar and surrounding skin. Lavender and rosemary oils also act as a mild antiseptic assisting.

Synthesis and characterization of sulfonated activated

Kym Douglas is also the proud mother to her 19-year-old son Hunter, who is studying business at USC. A dog lover, she and Jerry have 2 dogs, a lab named (Tom) Brady and a Maltese, Bella Bliss. Douglas can often be found using her kitchen as a beauty lab where you will find her whipping up a face mask or lotion from things she finds in her. Bio-oil (product liquids from fast pyrolysis of biomass) is a complex mixture of oxygenates derived from the thermal breakdown of the bio-polymers in biomass. In the case of lignocellulosic biomass, the structures of three major components, cellulose, hemicellulose and lignin, are well represented by the bio-oil components

Thermal decomposition behavior and kinetics for pyrolysis

The pyrolysis showed bio-oil yields from 4.37 to 13.09 (wt.%), decreasing with reactor volume. The acid value of bio-oils varied from 68.31 to 70.26 mg KOH/g. The distillation of bio-oil produced gasoline, light kerosene, and kerosene-like fuel fractions, and the yields were 16.16, 19.56, and 41.89 (wt.%), respectively Bio-oil derived by fast pyrolysis of biomass represents a potentially attractive source of hydrocarbon transportation fuels. Raw bio-oil however is completely unsuitable for application as a fuel due primarily to high organic oxygen content, which imparts a number of undesirable properties including high acidity and low stability. These problems can be overcome by catalytic hydrodeoxygenation. 33) Souyun Cheng, Lin Wei*, Xianhui Zhao, Yinbin Huang, Douglas Raynie, Changling Qiu, J. Kiratu, and Yong Yu, 2015. Directly catalytic upgrading bio-oil vapor produced by prairie cordgrass pyrolysis over Ni/HZSM-5 using a two-stage reactor. AIMS Energy, Volume 3, Issue 2, pp. 227-240. DOI: 10.3934/energy.2015.2.227. 34) Yinbin Huang, Lin Wei*, Za Catalytic hydroprocessing has been applied to biomass fast pyrolysis liquid product (bio-oil) in a bench-scale continuous-flow fixed-bed reactor system. The intent of the research was to develop process technology to convert the bio-oil into a petroleum refinery feedstock to supplement fossil energy resources and to displace imported feedstock The direct catalytic cracking of biomass pyrolysis vapour into aromatics derived from Douglas fir sawdust pellets was tested using an upfront microwave pyrolysis process coupled with a packed-bed catalysis process using a ZSM-5 Zeolite catalyst.A central composite experimental design (CCD) was used to optimize the bio-oil and syngas yields.The effects of temperature and inverse weight hourly.

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  1. The aim of this work was to evaluate biomethane production by anaerobic digestion using aqueous phase from Fast Pyrolysis of Douglas Fir Wood as substrate. The effect of biomass acid treatment and condensation temperature on the bio-oil chemical composition and aqueous phase separation with a fractional condensation system coupled to Auger reactor during pyrolysis at 500 °C was reported
  2. First published on 13th February 2018. In situ and ex situ catalytic upgrading of pyrolysis vapors from Douglas fir pellets in the presence of activated carbon (AC) prepared by chemical activation was studied in a microwave pyrolyzer. The in situ catalytic upgrading configuration gave lower bio-oil yields (10.25-25.5 wt%) than ex situ catalytic upgrading configuration (20.03-32 wt%)
  3. Making crude bio-oil would have the effect of densifying the material to a liquid form that is easier to transport for further processing. Ronald Gelderman and Douglas Malo and research.
  4. The bio-oil obtained by pyrolysis of Açaí (Euterpe oleracea Mart.) seeds at 450 ºC, 1.0 atmosphere, in technical scale, submitted to fractional distillation to produce biofuels-like fractions
  5. Bio-oil is an unstable intermediate and needs to be upgraded before its use. This study focused selectivity of obtained bio-oils were investigated during microwave pyrolysis of Douglas fir pellet. The catalysts recycling test of the selected catalysts indicated that the AC catalysts can be used for 3-4 times with high concentration of.
  6. Thermal decomposition behavior and kinetics for pyrolysis and catalytic pyrolysis of Douglas fir. Lu Wang * ab, Hanwu Lei * b, Jian Liu a and Quan Bu c a School of Biological and Medical Engineering, Hefei University of Technology, Hefei 230009, China. E-mail: wanglu@hfut.edu.cn; Tel: +86-551-62901331 b Bioproducts, Sciences and Engineering Laboratory, Department of Biological Systems.

Catalytic hydroprocessing of white pine pyrolysis bio-oil over cobalt-molybdenum (CoMo) carbide supported on biochar was carried out in a continuous fixed-bed reactor at a temperature between 350 and 425 °C, hydrogen pressure between 7 and 12.5 MPa, and liquid hourly space velocity (LHSV) of 0.1-1.0 h−1 with a hydrogen flow rate of 500 mL/min. The results showed that the CoMo carbide. Two bio-oil samples were distributed to the laboratories for stability testing and further analysis. The stability test was defined in a method provided with the bio-oil samples. Viscosity measurement was a key input. The change in viscosity of a sealed sample of bio-oil held for 24 h at 80 °C was the defining element of stability

Table 4.2. Characterization of bio-oil from Douglas fir by GC-MS analysis and the content of Hydrolysable sugars by IEC Table 5.1. Strains, primers and plasmids used in this study Table 5.2. Codon optimization of L. starkeyi YZ-215 lgk gene for Y. lipolytica. Codon optimization was performed by Genewiz. The top and bottom rows show th These results can be helpful in understanding the variation in bio-oil production methods and their effects on bio-oil product composition., author = Elliott, {Douglas C.} and Dietrich Meier and Anja Oasmaa and {van de Beld}, Bert and Anthony Bridgwater and Magnus Marklund

The pyrolysis bio-oil mass yield was 61% from MPBK wood, and subsequent upgrading of the bio-oil gave an average mass yield of 41% to liquid fuel blend stocks. Hydrogen was consumed at an average of 0.042 g/g of bio-oil fed, with a final oxygen content in the product fuel ranging from 0.3 to 1.6% over the course of the test bio-oil Specialist Skincare 1 X 200Ml. by Bio-Oil. Write a review. Douglas Cohall. 4.0 out of 5 stars Four Stars. Reviewed in the United States on November 4, 2017. Verified Purchase. Good product Helpful. Report abuse Questions? Get fast answers from reviewers Ask.

Stabilization of Softwood-Derived Pyrolysis Oils for

Abstract. The bio-oil obtained by pyrolysis of Açaí (Euterpe oleracea Mart.) seeds at 450 ºC, 1.0 atmosphere, in technical scale, submitted to fractional distillation to produce biofuels-like fractions. The distillation of bio-oil carried out in a laboratory distillation column (Vigreux) of 30 cm. The physical-chemistry properties (density. energies Article Production of Fuel-Like Fractions by Fractional Distillation of Bio-Oil from Açaí (Euterpe oleracea Mart.) Seeds Pyrolysis Douglas Alberto Rocha de Castro 1, Haroldo Jorge da Silva Ribeiro 1, Lauro Henrique Hamoy Guerreiro 2, Lucas Pinto Bernar 1, Sami Jonatan Bremer 3, Marcelo Costa Santo 1, Hélio da Silva Almeida 4,5, Sergio Duvoisin, Jr. 6, Luiz Eduardo Pizarro Borges 7.

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Douglas County plans to set up a test project next summer to convert forest slash and other wood waste into a No. 3 grade heating oil, Douglas County Commissioner Joe Laurance told members of the Douglas Timber Operators on Thursday. Speaking at a breakfast meeting, Laurance said the project would involve the superheating of Douglas fir sawdust pellets were purchased from experiments with 4 axial points (α = 1.41) and 3 replications at the Bear Mountain Forest Products, Inc. (USA). The pellets were made center points was employed for the optimization of microwave from 100% natural Douglas fir wood sawdust. The pellets had an torrefaction (see Tables 2 and 3)

Pyrolysis oil - Wikipedi

Phenolic oils were produced from fast pyrolysis of two different biomass feedstocks, red oak and corn stover, and evaluated in hydroprocessing tests for production of liquid hydrocarbon products. The phenolic oils were produced with a bio-oil fractionating process in combination with a simple water wash of the heavy ends from the fractionating process. Phenolic oils derived from the pyrolysis. Clay Harper - Sales Manager at Anderson Buick GMC of Douglas, Save A Lot, The Rustic Rose, Coffee County Health Department, Georgia Forestry Commission, Arthur H Murphy CPA PC, McKinnon Cattle, Wellroot Family Services, Tuscan Sky Spa, All American Youth Barrel Race, LaLa's Southern Sweets & More, Elite Landscape Solutions, Unity United.

Bio-Oil 60ml. Bio-Oil is a specialist skincare oil for the face and body, specifically form.. Price : NZ$ 14.95. RRP : NZ$ 22.55. YOU SAVE NZ$ 7.60 ABSTRACT Microwave pyrolysis of Douglas fir sawdust pellet was investigated to determine the effects of reaction temperature and time on the yields of bio-oil, biogas, and biochar using a central composition design (CCD) and response surface analysis ChemInform Abstract: A Review and Perspective of Recent Bio‐Oil Hydrotreating Research ChemInform Abstract: A Review and Perspective of Recent Bio‐Oil Hydrotreating Research Zacher, Alan H.; Olarte, Mariefel V.; Santosa, Daniel M.; Elliott, Douglas C.; Jones, Susanne B. 2016-01-25 00:00:00 ChemInform Abstract [107 refs.] Niacinato-400 60Cap. de Douglas Laboratorie Check Out our Selection & Order Now. Free UK Delivery on Eligible Orders

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Douglas App. Folge uns. Alle Preise werden inkl. der gesetzlichen Mehrwertsteuer angegeben. Versandkostenfreie Lieferung ab € 24,95 Bestellsumme, sonst € 3,95 innerhalb Deutschlands. Die Kosten für andere Lieferarten als den Standardversand innerhalb Deutschlands findest du. Bio-Oil researches and develops specialist skincare products, using oil to achieve superior product performance. The brand is known as Bio-Oil® in all countries other than Austria, Czech Republic, France, Germany, Slovakia and Switzerland where the name Bi-Oil® is used and in Japan where the name Bioil® is used Douglas C. Elliott* and Huamin Wang Pacific Northwest National Laboratory, P.O. Box 999, MSIN P8-60, Richland, Washington 99352, United States bio-oil components into hydrocarbon liquids.3 Much of the recent work in bio-oil hydrotreating has been performed usin Bio-oil is a complex mixture of sugars, esters, furans, acids, ketones, alcohols, phenols, guaiacols etc.17 Bio-oil has a high oxygen content and is acidic, viscous, reactive, and thermally Douglas fir pellets were placed in a 500 mL quartz flask inside of the microwave oven. The pyrolysis volatile vapour from th The pathway for catalytic hydrodeoxygenation (HDO) of biomass-derived fast pyrolysis oil represents a compelling route for production of liquid transportation fuels. This is a review of the published research and patent literature in bio-oil HDO over the last 6 years performed with actual bio-oils and identifiable strategy for production of an.

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Bio-oil with its smoky smell and dark brown color is named differently in literature, like pyrolysis oil, bio-oil, bio-crude-oil, bio-fuel-oil, wood liquids, wood oil, liquid smoke and liquid wood. It is composed of a very complex mixture of oxygenated hydrocarbons including phenols, aldehydes, alcohols and carboxylic acids Bio-oil: A Wonder Oil. Bio-oil is a dark brown liquid and has a similar composition to biomass. It is composed of a complex mixture of oxygenated hydrocarbons with an Bio-oil has a much higher density than woody materials (three to six times, depending on form), which reduces storage and transport costs Hydrothermal liquefaction for bio oil and chemicals -an overview march 2019 1. Significant distance towards actual industrial implementation. Douglas C.Elliott Pacific Northwest National Laboratory 17. Biorefinery & Bio-Based Chemical, 6th - 7th March 2019 Amsterdam, The Netherlands 17 Continuous HTL Systems Energy ratio vs. bio-crude. In this work, the hydrodeoxygenation (HDO) of raw pine pyrolysis bio oil was investigated at 200 °C using Pd/Zn synergistic catalysis under hydrogen pressures of 200, 300, and 400 psi, separately. The resulting product included gas, liquid, and coke. The gas was characterized using a gas chromatography In situ and ex situ catalytic upgrading of pyrolysis vapors from Douglas fir pellets in the presence of activated carbon (AC) prepared by chemical activation was studied in a microwave pyrolyzer. The in situ catalytic upgrading configuration gave lower bio-oil yields (10.25-25.5 wt%) than ex situ catalytic upgrading configuration (20.03-32 wt%). The bio-oil yield from the in situ upgrading.

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Hydrocarbon bio-oil production from pyrolysis bio-oil using non-sulfide Ni-Zn/Al2O3 catalyst. Fuel Processing Technology,162,78-86. Impact factor: 3.956. Shouyun Cheng, Lin Wei∗, James Julson, Kasiviswanathan Muthukumarappan, Parashu Ram Kharel, Yuhe Cao, Eric Boakye, Douglas Raynie, Zhengrong Gu, 2017 Bio Oil. Bio Oil - You find here 38 suppliers from Germany Spain Poland and Switzerland. Please obtain more information on spare parts, servicing, maintenance, Repair, repair or accessories directly from the registered companies. R. Tübben Oportet-Kühlschmiertechnik GmbH. kompressol.com bio-oil of no more than 20 wt % were slightly higher than that of the pure RF resin. On the whole, RF-Soy), wood species (keruing, southern pine and Douglas-fir), and curing temperatures (ambient, 26 to 35 C; elevated, 43 to 49 C) on the strength and durability of a finger-joint was conducted by Vrazel et al. [3]. The results showed. Abstract This study aims to investigate the effects of transition metal modified ZSM-5 on biomass (rice straw) pyrolysis via microwave-assisted pyrolysis (MAP) for bio-oil production. XRD and TPD was used to analyze differences between the prepared catalysts. In the experiments, the prepared catalysts were used in ex-situ reactor. The yield of bio-oil from MAP of rice straw using transition.

500 °C, the pyrolysis of Douglas fir and loblolly pine bark generated 48.2% and 45.2% of the total oil, respectively, of which the light oils (bio-oil in the first condenser) were 14.1% and 20.7%, and the heavy oils (bio-oil condensed mainly near the end of the pyrolysis tube) were 34.1% and 24.4%, respectively (Pan et al. 2013). Generally. Rice husk is a prospective bio-oil feedstock due to its plentiful supply, but its unfavorable characteristics like high moisture content, high ash content, and low energy density tend to jeopardize both the yield and quality of bio-oil produced by fast pyrolysis. Lately, various pretreatments, namely, washing, torrefaction (dry and wet), and their combined pretreatments, have been researched. Foundation bei Douglas kaufen. Du wünschst dir einen strahlenden Teint? Bei Douglas findest du verschiedene Foundations, die deiner Haut einen frischen Glow verleihen. Stöbere in unserem Sortiment und lass dir deinen Favoriten bequem nach Hause liefern. Um dein Make-up abzurunden, halten wir bei Douglas weitere Schmink-Essentials bereit

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View Douglas Stevens' profile on LinkedIn, the world's largest professional community. Douglas has 1 job listed on their profile. Petro Bio Oil Consulting, Tallahassee, Florida 32312, United. We report a sustainable strategy to cleanly address biomass waste with high-value utilization. Phenol-rich bio-oil is selectively produced by direct pyrolysis of biomass waste corn straw (CS) without use of any catalyst in a microwave device. The effects of temperature and power on the yield and composition of pyrolysis products are investigated in detail. Under microwave irradiation, a very.

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The pH value of crude bio-oil is 2.6, similar to other reported values of crude bio-oil from pinewood (Mohan et al. 2006, Pittman et al. 2012). The low pH of bio-oil could be attributed to the carboxylic acids (such as acetic acid) contained in the bio-oil (see GC-MC results in Table 3). The viscosity of the bio-oil is 1,468 cP The growing world population continually increases the demand for energy. Currently, the main source of energy production is fossil fuels, which are harmful to the environment and are finite. An exploration of renewable energy to supplement or replace fossil fuels is of great importance. Modern techniques for producing renewable bio-oil consist of converting biomass into bio-oil through. Ashwagandha Cultivation . Ashwagandha prefers light, sandy soil with an acidity level between 7.5 and 8 pH. Its natural habitat is located around 2,000 feet above sea level, but it will grow in low lying areas with proper care