Innovative Algae Dewatering Technology
نویسندگان
چکیده
Abstract This paper describes a novel technology for dewatering of bio materials, such as algae, for biofuel production and other applications. This hydrodynamic separation (HDS) technology uses customized fluid flow patterns to focus suspended particulates into a well-defined band near a side wall of a curved channel, and where they can be separated off with a suitably designed flow splitter. The novel and innovative capability of this system is its ability to separate particles of any density, including neutrally buoyant particles such as algae and other biological and/or organic matter, from a liquid without the use of a physical barrier. Advantages of this technology over conventional practice include: small foot print, low energy requirement, rapid process, and continuous flow operation. We explored the dewatering of different algae species including Spirulina, Chlorella Vulgaris, and S. dimorphus. Larger algae or algae that naturally form larger aggregates can be concentrated very efficiently without the use of any added chemicals and harvesting efficiencies up to 97% have been demonstrated. This makes HDS very attractive for the dewatering of algae from concentrations typical for open ponds (<0.1%) to above 1 % dry weight, where the addition of flocculants, which is needed for most other dewatering technologies, is costly and may add constraints to the reuse of the clean stream.
منابع مشابه
PROJECT SELECTIONS FOR DOE PHASE III XLERATOR SMALL BUSINESS PROGRAM Biomass Technologies: Harvesting/Dewatering Technology for Algal Biofuels Renewable Algal Energy, LLC (Kingsport, Tenn.) - Algal Biodiesel via Innovative Harvesting and Aquaculture Systems
Renewable Algal Energy, LLC (Kingsport, Tenn.) Algal Biodiesel via Innovative Harvesting and Aquaculture Systems Renewable Algal Energy LLC, will leverage its experience in algal aquaculture, harvesting, and extraction, to demonstrate at small commercial-scale, improved, low cost, energy-efficient methods for harvesting and dewatering algae that contribute to an algal oil product that is cost-c...
متن کاملReduction of water and energy requirement of algae cultivation using an algae biofilm photobioreactor.
This paper reports the construction and performance of an algae biofilm photobioreactor that offers a significant reduction of the energy and water requirements of cultivation. The green alga Botryococcus braunii was cultivated as a biofilm. The system achieved a direct biomass harvest concentration of 96.4 kg/m(3) with a total lipid content 26.8% by dry weight and a productivity of 0.71 g/m(2)...
متن کاملHAR Microfluidic Device to Concentrate Microalgae
In this project the efforts were geared towards building and testing a high aspect ratio (HAR) microfluidic device to concentrate microalgae in a continuous flow microfluidic chip. This project was made possible through funding from USDA, SBIR phase-I grant to Phycal, Inc. Algae are a promising candidate for large-scale production of biofuels, an important source of renewable energy. However, a...
متن کاملSludge Dewatering by Impulse Drying
An innovative and energy efficient sludge dewatering technology has been developed. The technology, impulse drying, involves briefly contacting the sludge under pressure with a heated surface. A unique feature of impulse drying is that the majority of moisture removal occurs as lipid water. A pilotand laboratory-scale demonstration was performed on low ash primary paper mill sludge. The pilot-s...
متن کاملMicroalgae (Scenedesmus obliquus) dewatering using forward osmosis membrane: Influence of draw solution chemistry
Article history: Received 9 October 2015 Received in revised form 8 December 2015 Accepted 22 January 2016 Available online xxxx Forward osmosis (FO) is gaining increasing interests for its potential applications in biofuel generation. In this study, bench-scale experiments were conducted to investigate the FO performance for microalgae dewatering which is one of the technical challenges in alg...
متن کامل