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ویرایش: 1
نویسندگان: Valencia Vazquez. Roberto
سری:
ISBN (شابک) : 9781439828373, 9789085049180
ناشر: CRC Press
سال نشر: 2008
تعداد صفحات: 159
زبان: English
فرمت فایل : PDF (درصورت درخواست کاربر به PDF، EPUB یا AZW3 تبدیل می شود)
حجم فایل: 4 مگابایت
در صورت تبدیل فایل کتاب Enhanced stabilisation of municipal solid waste in bioreactor landfills: UNESCO-IHE PhD Thesis به فرمت های PDF، EPUB، AZW3، MOBI و یا DJVU می توانید به پشتیبان اطلاع دهید تا فایل مورد نظر را تبدیل نمایند.
توجه داشته باشید کتاب تثبیت پیشرفته زباله های جامد شهری در محل های دفن زباله بیوراکتور: پایان نامه دکتری یونسکو-IHE نسخه زبان اصلی می باشد و کتاب ترجمه شده به فارسی نمی باشد. وبسایت اینترنشنال لایبرری ارائه دهنده کتاب های زبان اصلی می باشد و هیچ گونه کتاب ترجمه شده یا نوشته شده به فارسی را ارائه نمی دهد.
زبالههای جامد شهری که در محلهای دفن زباله دفن میشوند، زمانی که موانع در درازمدت از بین بروند، آلودگی به شکل گاز محل دفن زباله و شیرابه تولید میکنند. محل های دفن زباله بیوراکتور یک راه حل جایگزین برای جلوگیری از چنین اثرات منفی و دستیابی به پسماند پایدارتر، به اصطلاح کیفیت ذخیره سازی نهایی (FSQ) باقیمانده ها است. با این حال، تا کنون مشکل فنی اصلی که اپراتورهای دفن زباله در عملیات دفن زباله بیوراکتور با آن مواجه بودند، توزیع مایع همگن در داخل توده زباله است.
هدف اصلی این پایان نامه دستیابی به یک FSQ بود. وضعیت زباله، از طریق آزمایشهای آزمایشگاهی و آزمایشی در مقیاس آزمایشی، که با معیارهای پذیرش زباله (WAC) دستورالعمل اروپایی دفن زباله برای زبالههای بیاثر مطابقت دارد. این پایان نامه بر تعامل و اصلاح عوامل کنترل کننده فرآیند تثبیت زباله در محل دفن زباله بیوراکتور متمرکز بود. نتایج نشان داد که در طی یک سال از عملیات می توان به تثبیت بیولوژیکی دست یافت، اما وضعیت FSQ را نمی توان به دست آورد. با این حال، باقی مانده نزدیک به مطابقت با چنین معیارهای دقیق بود. بافر و افزودن سپتاژ با کاهش فاز تاخیری تولید بیوگاز و خطرات مرتبط با آلودگی پاتوژن، تأثیر مثبتی بر فرآیند تثبیت زباله داشت. همچنین استفاده از مواد درشت تأثیر مثبتی بر فرآیند تثبیت ضایعات، به ویژه به عنوان مخلوطهای همگن داشت. وجود باکتری Anammox - که برای اولین بار در یک محل دفن زباله بیوراکتور فعال است - نشان می دهد که می تواند نقش اساسی در حذف نیتروژن داشته باشد، که به عنوان پارامتر اصلی برای به خطر انداختن دستیابی به وضعیت FSQ شناسایی شده است. P>
در نتیجه، این تحقیق شکافهای موجود در دانش ما را کاهش داد و جایگزینهای فنی عملی را برای کنترل و هدایت فرآیندهای رخداده در محل دفن زباله بیوراکتور با هدف دستیابی به وضعیت FSQ باقیماندهها ارائه کرد. /P>
Municipal solid waste entombed in landfills will produce pollution in the form of landfill gas and leachate when the barriers fail in the long term. Bioreactor landfills are an alternative solution to avoid such negative impacts and to achieve a more stable residue, the so-called Final Storage Quality (FSQ) of residues. However, until now the main technical problem faced by landfill operators in bioreactor landfill operation is homogenous liquid distribution within the waste mass.
The main objective of this thesis was to achieve a FSQ status of waste, through laboratory and pilot-scale experiments, that complies with the Waste Acceptance Criteria (WAC) of the European Landfill Directive for inert waste. This thesis focused on the interaction and modification of the factors controlling the waste stabilisation process in a bioreactor landfill. The results revealed that within a year of operation biological stabilisation can be achieved, but not FSQ status. However, residues were close to comply with such stringent criteria. Buffer and septage addition had a positive effect on the waste stabilisation process by reducing biogas production lag-phase and risks associated with pathogen contamination. Also the use of coarse materials had a positive impact on the waste stabilisation process, especially as homogenous mixtures. The presence of Anammox bacteria - shown for the first time to be active in a bioreactor landfill - suggested that it could have contributed substantially to the removal of nitrogen, which has been identified as the main parameter to jeopardise the achievement of FSQ status.
In conclusion, this research reduced our current gaps-in-knowledge and offered feasible technical alternatives to control and steer the processes occurring in a bioreactor landfill aiming to achieve FSQ status of residues.
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