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Cadmium transfer and distribution in a multi-species biofilm and the impact on naphthalene removal

机译:镉在多种生物膜中的转移和分布及其对萘去除的影响

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摘要

Biofilm technology is being introduced into bioremediation of contaminated soils and underground water, in the form of biofilm barriers. However, the low availability of polycyclic aromatic hydrocarbons (PAHs) and toxicity of the frequently accompanying heavy metals may limit its application. The objective of this study was to investigate the mass transfer and distribution of cadmium (Cd) into the biofilm matrix and the impact caused by it. The influences of pH value, presence of an alternative substrate and increased dissolved oxygen were examined. As the pH value increased, cadmium sorption in the biofilm increased and naphthalene removal decreased. Ten mg/L of cadmium was enough to show a significant impact on biofilm when the pH was above 7.5. The cadmium minimum inhibition capacity was determined to be 5 mu gCd/mgVS. Acetate, added as an alternative substrate, competed with naphthalene and did not demonstrate the ability to reduce cadmium toxicity. Hydrogen peroxide, added to supplement the dissolved oxygen, accelerated the cadmium uptake/efflux cycle, making the biofilm more vulnerable to cadmium attack. Cadmium was shown to transfer faster than naphthalene into biofilm, and the removal of naphthalene in the presence of cadmium was retarded and reduced.
机译:生物膜技术正以生物膜屏障的形式被引入污染土壤和地下水的生物修复中。但是,多环芳烃(PAH)的低可用性以及经常伴随的重金属的毒性可能会限制其应用。这项研究的目的是研究镉(Cd)在生物膜基质中的传质与分布及其对生物膜的影响。检查了pH值,替代底物的存在和溶解氧增加的影响。随着pH值的增加,生物膜中的镉吸附增加,而萘的去除减少。当pH值高于7.5时,十毫克/升的镉足以显示对生物膜的显着影响。镉的最小抑制能力经测定为5μgCd/ mgVS。作为替代底物添加的乙酸盐与萘竞争,并且未显示出降低镉毒性的能力。添加过氧化氢以补充溶解的氧气,加速了镉的吸收/流出循环,使生物膜更容易受到镉的攻击。研究表明,镉比萘更快地转移到生物膜中,并且在镉存在下萘的去除受到阻碍和减少。

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