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鉴定适合于乳品工业环保型原位清洗的真菌蛋白酶。

Identification of fungal proteases potentially suitable for environmentally friendly cleaning-in-place in the dairy industry.

机构信息

Department of Chemical and Environmental Sciences, University of Limerick, Ireland.

出版信息

Chemosphere. 2012 Jun;88(2):211-8. doi: 10.1016/j.chemosphere.2012.03.022. Epub 2012 Mar 31.

Abstract

Fourteen fungi were screened for ability to produce proteases with activity on milk protein. The proteases produced were assessed on a lab-scale in terms of their potential suitability for cleaning-in-place (CIP) in the dairy industry. Cleaning performance was assessed by determining the ability of the enzymes to remove an industrial-like milk fouling deposit from stainless steel. Based on the results observed, the extracellular protease activity produced by Schizophyllum commune was selected as most suitable for potential CIP application. A CIP procedure involving a sodium carbonate rinse followed by enzymatic cleaning with this fungal enzyme activity was developed. Satisfactory cleaning, judged by quantification of residual organic matter and protein on the stainless steel surface after cleaning, was achieved using the developed CIP procedure at 40°C. This CIP procedure, based on biodegradable enzymes working at low temperature is more environmentally favourable than conventional CIP methods using caustic based cleaning solutions at 70-80°C. Potential environmental benefits of the developed enzymatic CIP procedure include reduced energy consumption, decreased chemical usage and a reduced requirement for pH neutralisation of the resultant waste prior to release.

摘要

筛选了 14 种真菌,以评估它们产生能作用于牛奶蛋白的蛋白酶的能力。在实验室规模上,根据它们在乳制品行业中就地清洁(CIP)的潜在适用性来评估蛋白酶的性能。通过确定酶去除不锈钢上类似工业的牛奶污垢沉积物的能力来评估清洁性能。根据观察到的结果,选择裂褶菌产生的细胞外蛋白酶活性作为最适合潜在 CIP 应用的酶。开发了一种涉及碳酸钠冲洗,然后用这种真菌酶活性进行酶清洁的 CIP 程序。使用开发的 CIP 程序在 40°C 下可以达到令人满意的清洁效果,通过清洁后不锈钢表面残留有机物和蛋白质的定量来判断。与使用 70-80°C 的碱性清洁溶液的传统 CIP 方法相比,基于在低温下工作的可生物降解酶的这种 CIP 程序在环境方面更具优势。开发的酶 CIP 程序的潜在环境效益包括降低能源消耗、减少化学品使用以及减少废物在释放前对 pH 值进行中和的需求。

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