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廉价无毒的微藻絮凝作用与理论相悖;突破了大规模藻类生产的主要障碍。

Inexpensive non-toxic flocculation of microalgae contradicts theories; overcoming a major hurdle to bulk algal production.

机构信息

TransAlgae Ltd., 2 Pekeris St., Weizmann Science Park, Rehovot, Israel.

出版信息

Biotechnol Adv. 2012 Sep-Oct;30(5):1023-30. doi: 10.1016/j.biotechadv.2012.01.011. Epub 2012 Jan 28.

DOI:10.1016/j.biotechadv.2012.01.011
PMID:22306161
Abstract

There are two major energy and cost constraints to bulk production of single cell microalgae for biofuels or feed: expensive culture systems with high capital costs and high energy requirements for mixing and gas exchange; and the cost of harvesting using high-speed continuous centrifugation for dewatering. This report deals with the latter; harvesting by flocculation where theory states that alkaline flocculants neutralize the repelling surface charge of algal cells, allowing them to coalesce into a floc. It had been assumed that with such electrostatic flocculation, the more cells to be flocculated, the more flocculant needed, in a linear stoichiometric fashion, rendering flocculation overly expensive. Counter to theory of electrostatic flocculation, we find that the amount of alkaline flocculant needed is a function of the logarithm of cell density, with dense cultures requiring an order of magnitude less base than dilute suspensions, with flocculation occurring at a lower pH. Various other theories abound that flocculation can be due to multi-valent cross-linking, or co-precipitation with phosphate or with magnesium and calcium, but are clearly not relevant with the flocculants we used. Monovalent bases that cannot cross-link or precipitate phosphate work with the same log-linear stoichiometry as the divalent bases, obviating those theories, leaving electrostatic flocculation as the only tenable theory of flocculation with the materials used. The cost of flocculation of dense cultures with this procedure should be below $1.00/T algae for mixed calcium:magnesium hydroxides.

摘要

大规模生产单细胞微藻用于生物燃料或饲料存在两个主要的能源和成本限制

昂贵的培养系统,具有高资本成本和高混合能源需求以及用于脱水的高速连续离心收获的成本。本报告涉及后者;絮凝收获,理论上表明碱性絮凝剂中和藻类细胞的排斥表面电荷,允许它们聚合并形成絮体。人们一直认为,对于这种静电絮凝,需要絮凝的细胞越多,所需的絮凝剂就越多,呈线性化学计量关系,使絮凝成本过高。与静电絮凝的理论相反,我们发现所需碱性絮凝剂的量是细胞密度对数的函数,密集培养物所需的基础比稀悬浮液少一个数量级,并且在较低的 pH 值下发生絮凝。还有许多其他理论认为絮凝可能是由于多价交联,或与磷酸盐或镁和钙共沉淀,但显然与我们使用的絮凝剂无关。不能交联或沉淀磷酸盐的单价碱与二价碱具有相同的对数线性化学计量关系,排除了这些理论,使静电絮凝成为使用这些材料进行絮凝的唯一可行理论。使用此方法对密集培养物进行絮凝的成本应为每 1 吨藻类$1.00 以下,对于混合钙:镁氢氧化物。

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